The document discusses different types of water aerators used for aquaculture including natural aerators, gravity aerators, surface aerators, turbine aerators, vertical pump aerators, diffused aerators, and electric paddlewheel aerators. It provides details on how each type of aerator works and their advantages and disadvantages. The document also discusses best practices for aeration management in aquaculture ponds, such as using nightly aeration or positioning aerators where dissolved oxygen levels are highest.
To study working of each component of hydro power plant?Salman Jailani
This document describes the components and working of a hydroelectric power plant. It explains that potential energy from water stored behind a dam is converted to kinetic energy as the water flows through turbines, which spin generators to produce electricity. The main components are the dam, spillways, penstock, turbine, generator, and tailrace. Water is stored in a reservoir and regulated through gates and spillways before passing through a penstock to spin the turbine and generate electricity.
A hydroelectric power plant harnesses the kinetic energy of flowing water to generate electricity. It consists of a dam that creates a reservoir of water, turbines that convert the energy of falling water into mechanical energy, and generators that transform mechanical energy into electrical energy. The plant is ideally located near a river in hilly areas where a large dam and reservoir can be built. Hydroelectric power is a renewable source of energy that produces no emissions. However, it has high upfront costs and power generation depends on water availability, which can fluctuate with weather patterns.
Image result for hydro power plant in india
India is the 7th largest producer of hydroelectric power in the world ranking third worldwide in the total number of dams. As of 31 March 2016, India's installed utility-scale hydroelectric capacity was 42,783 MW, or 14.35% of its total utility power generation capacity.
Hydroelectric power is power harnessed from converting the energy coming from running water. The mechanical energy is transferred from a rotating turbine to a generator, which produces energy. Hydro power is a shorthand term that can be used in place of hydroelectric power, both mechanical and electric.
The document describes the key elements of a hydraulic power plant. It discusses how water is captured from catchment areas and stored in reservoirs behind dams. The potential energy of the stored water is increased by the height of the dam. Water then flows through penstocks and turbines, converting the hydraulic energy to mechanical energy that spins generators to produce electricity. Key components include the dam, reservoir, penstocks, surge tanks, turbines, generators, and powerhouse. The document also notes advantages like low operating costs and disadvantages like high initial costs and dependence on natural water flows.
The document discusses hydroelectric power systems and their components. It explains that hydroelectric power harnesses the kinetic energy of flowing water to turn turbines that generate electricity. It describes the main components of hydropower dams including penstocks, surge tanks, turbines, power houses, draft tubes and tail races. It also discusses different types of hydroelectric schemes based on water head, including low, medium and high head plants.
The document discusses hydroelectric power generation and the key components of a hydroelectric power plant. It explains that hydroelectric power harnesses the kinetic energy of flowing water to generate electricity. The major components discussed include the reservoir, dam, penstocks, turbines, generator, and powerhouse. It describes how water accumulated behind a dam gains potential energy due to height and then flows through penstocks and turbines to generate electricity in the powerhouse before being discharged downstream.
This document provides an overview of hydro power plants, including their basic components, working principle, types, factors for site selection, advantages, and disadvantages. The main components of hydro power plants are dams, water reservoirs, intake gates, penstocks, water turbines, and generators. Dams and reservoirs provide potential energy by storing water at a height, which is then converted to kinetic and mechanical energy by turbines to power generators and produce electricity. Site selection depends on available water sources, storage capacity, water head, distance to load centers, and land type. Hydro power has advantages of no fuel costs and lower emissions, but high initial costs and dependence on water availability.
The document discusses different types of water aerators used for aquaculture including natural aerators, gravity aerators, surface aerators, turbine aerators, vertical pump aerators, diffused aerators, and electric paddlewheel aerators. It provides details on how each type of aerator works and their advantages and disadvantages. The document also discusses best practices for aeration management in aquaculture ponds, such as using nightly aeration or positioning aerators where dissolved oxygen levels are highest.
To study working of each component of hydro power plant?Salman Jailani
This document describes the components and working of a hydroelectric power plant. It explains that potential energy from water stored behind a dam is converted to kinetic energy as the water flows through turbines, which spin generators to produce electricity. The main components are the dam, spillways, penstock, turbine, generator, and tailrace. Water is stored in a reservoir and regulated through gates and spillways before passing through a penstock to spin the turbine and generate electricity.
A hydroelectric power plant harnesses the kinetic energy of flowing water to generate electricity. It consists of a dam that creates a reservoir of water, turbines that convert the energy of falling water into mechanical energy, and generators that transform mechanical energy into electrical energy. The plant is ideally located near a river in hilly areas where a large dam and reservoir can be built. Hydroelectric power is a renewable source of energy that produces no emissions. However, it has high upfront costs and power generation depends on water availability, which can fluctuate with weather patterns.
Image result for hydro power plant in india
India is the 7th largest producer of hydroelectric power in the world ranking third worldwide in the total number of dams. As of 31 March 2016, India's installed utility-scale hydroelectric capacity was 42,783 MW, or 14.35% of its total utility power generation capacity.
Hydroelectric power is power harnessed from converting the energy coming from running water. The mechanical energy is transferred from a rotating turbine to a generator, which produces energy. Hydro power is a shorthand term that can be used in place of hydroelectric power, both mechanical and electric.
The document describes the key elements of a hydraulic power plant. It discusses how water is captured from catchment areas and stored in reservoirs behind dams. The potential energy of the stored water is increased by the height of the dam. Water then flows through penstocks and turbines, converting the hydraulic energy to mechanical energy that spins generators to produce electricity. Key components include the dam, reservoir, penstocks, surge tanks, turbines, generators, and powerhouse. The document also notes advantages like low operating costs and disadvantages like high initial costs and dependence on natural water flows.
The document discusses hydroelectric power systems and their components. It explains that hydroelectric power harnesses the kinetic energy of flowing water to turn turbines that generate electricity. It describes the main components of hydropower dams including penstocks, surge tanks, turbines, power houses, draft tubes and tail races. It also discusses different types of hydroelectric schemes based on water head, including low, medium and high head plants.
The document discusses hydroelectric power generation and the key components of a hydroelectric power plant. It explains that hydroelectric power harnesses the kinetic energy of flowing water to generate electricity. The major components discussed include the reservoir, dam, penstocks, turbines, generator, and powerhouse. It describes how water accumulated behind a dam gains potential energy due to height and then flows through penstocks and turbines to generate electricity in the powerhouse before being discharged downstream.
This document provides an overview of hydro power plants, including their basic components, working principle, types, factors for site selection, advantages, and disadvantages. The main components of hydro power plants are dams, water reservoirs, intake gates, penstocks, water turbines, and generators. Dams and reservoirs provide potential energy by storing water at a height, which is then converted to kinetic and mechanical energy by turbines to power generators and produce electricity. Site selection depends on available water sources, storage capacity, water head, distance to load centers, and land type. Hydro power has advantages of no fuel costs and lower emissions, but high initial costs and dependence on water availability.
* Catchment area = 200 sq.km = 200,000,000 sq.m
* Average rainfall = 130 cm = 1.3 m
* Runoff = 70% of rainfall = 0.7 * 1.3 = 0.91 m
* Water available per year = Rainfall * Runoff * Catchment area
= 1.3 * 0.91 * 200,000,000 = 234,000,000 cubic meters
* Head available = 380 m
* Density of water = 1000 kg/cubic meter
* Gravity acceleration = 10 m/sec^2
* Power = Mass of water * Gravity height * Head / Time
= 234,000,000 * 1000 * 10 *
The document discusses hydroelectric power plants. It describes how hydroelectric power plants utilize the potential energy of water at high elevations to generate electricity. It covers site selection factors such as water availability, ability to store water, land costs and transportation access. The document outlines the typical components of hydroelectric power plants including reservoirs, penstocks, turbines, generators, and electrical equipment. It also classifies hydroelectric plants and discusses their advantages and disadvantages as well as potential environmental issues.
This document discusses the key components of hydropower projects including penstocks, power houses, and tailraces. It describes the different types of penstocks such as exposed, embedded, and underground and their advantages and disadvantages. A power house contains the mechanical and electrical equipment needed to convert the kinetic energy of water into electricity. Tailraces return water back to the river after it has passed through turbines in the power house.
Hydro power plants utilize the potential energy of stored water behind a dam to generate electricity. Water flows from the reservoir through penstocks to spin turbines connected to generators, converting the kinetic energy to electrical energy. Key components include the catchment area, dam/reservoir, penstocks, turbines, generators, and powerhouse. Hydro power provides clean energy but has high initial costs and depends on water availability.
1. Hydroelectric power plants harness the kinetic energy of flowing water by using a turbine connected to an electric generator. Water is stored in a reservoir behind a dam and then flows through a penstock to spin the turbine blades.
2. The turbine spins a shaft connected to a generator to produce electricity. Common types of turbines include Pelton, Francis, and Kaplan turbines which are suited for different water flows and heads.
3. In addition to generating electricity, pumped storage plants can pump water back up to the reservoir during low demand to be available for power generation during peak loads. Hydroelectric power is a renewable source that produces no emissions.
This document discusses hydroelectric power plants. It begins by defining hydroelectricity as electricity generated through the use of falling or flowing water. It then provides background on the sources of power generation and the concept of hydroelectric power plants. The document goes on to describe the major components of hydroelectric power plants including the reservoir, dam, turbines, and generators. It also discusses the working, sizes, history and advantages of hydroelectric power plants, as well as examples in Pakistan.
This document provides an overview of hydro power plant components and types. It discusses the three types of power houses: surface, semi-underground, and underground. Surface power houses have components on the surface but are limited by topography. Semi-underground power houses combine advantages of surface and underground. Underground power houses are located entirely inside mountains with access tunnels. The document also summarizes the main components of hydro power stations including dams/barrages, water conductor systems, and power houses as well as different types of hydro power projects.
1) Hydroelectric power plants utilize the kinetic energy of flowing water to generate electricity. Water turns turbines which spin generators to produce electricity.
2) There are several types of hydroelectric turbines suited for different water head and flow conditions including Pelton, Francis, and Kaplan turbines. Pelton turbines work best for high head applications while Francis and Kaplan are used for lower heads and higher flows.
3) The key components of a hydroelectric power plant include an intake, penstock, turbine, generator, and tailrace. Water is diverted from a source through the intake and penstock before passing through the turbine which spins the generator to produce electricity which is then transmitted through power lines.
This presentation includes introduction to run off river (ROR) plant and pumped storage plants, comparison between traditional and run off river plant, Classification of ROR Plants, Advantages and disadvantages of ROR Plants, Introduction to Pumped Storage Power (PSP) Plants, Classification of PSP, and Advantages and disadvantages of PSP
A water hammer is a pressure surge or wave caused when a fluid, usually a liquid but sometimes also a gas, in motion is forced to stop or change direction suddenly; a momentum change. this phenomenon commonly occurs when a valve closes suddenly at an end of a pipeline system, and a pressure wave propagates in the pipe
Hydroelectric power plants harness the potential energy of water by damming rivers and streams. Water flows through penstocks into turbines which spin generators to produce electricity. Key components include the reservoir, dam, penstocks, surge tank, spillway, turbines, and generators. Hydroelectric power is a renewable and efficient source of energy with low operating costs but high initial costs and potential environmental impacts.
Installation of Hydraulic Ram Pump - Thapathali Campus, KathmanduFatin62c
The document proposes installing a hydraulic ram pump (hydram) in a village in Nepal to provide a renewable source of water. A hydram uses the energy of falling water to pump a portion of the water to a higher elevation, requiring no other energy source. The project aims to design, manufacture, install, and test a hydram to demonstrate the technology for rural villages. Specific objectives are to identify an installation site, design and manufacture a hydram, construct a testing facility, install the hydram, and test its performance. The total proposed cost is 100,000 Nepali rupees. Industrial engineering students will implement the project as part of their studies.
The document summarizes the key components of a drainage system, including:
1. The drainage system conveys sewage, rainwater, and other liquid waste from fixtures through pipes to an external point of disposal, and includes house sewers, house drains, soil and waste stacks, fixture branches, and traps.
2. Essential components are the house sewer, house drain, house trap, fresh air inlet, soil and waste stacks, fixture branches, traps, and vents. Special devices include interceptors, sumps, ejectors, backwater valves, roof drains, and floor drains.
3. Pipes are sized based on the number and type of fixtures drained, with
This document summarizes different types of hydroelectric power plants and turbines. It describes impulse and reaction turbines, including Pelton, Francis, and Kaplan turbines. It provides diagrams of hydroelectric and pump storage plants. Key concepts covered include gross and net heads, discharge, water power, brake power, efficiency, and speed. Fundamental equations for hydroelectric systems are given. Common terms are defined. Sample problems demonstrate calculations for hydroelectric plant design and performance analysis.
This document summarizes a micro hydro power plant project with unmanned power distribution. The project uses common components like a water tank, flywheel turbine, water level detector, pump, motor and generator to harness energy from flowing water without human operation. It has potential applications for small-scale power generation for homes or industries using water sources like small rivers or canals. The system could help provide electricity in rural areas and reduce reliance on non-renewable energy sources.
The document discusses hydroelectric (hydel) power plants. It describes the basic working principle where potential energy from water stored behind a dam is converted to kinetic energy and used to turn turbines which generate electricity. It then outlines the key components of a typical hydroelectric power plant including the water reservoir, dam, spillways, surge tank, penstock, turbines, generators and transmission lines. It also classifies hydel plants based on water head and lists some common turbine types used. Advantages like renewable energy source and lower operating costs are highlighted along with disadvantages such as high initial costs and reduced power in drought seasons.
The outline of the presentation: Site Selection For HP Plant; and Components of HP Plant; Catchment Area; Reservoir; Dam; Fore bay; Sluice Gate; Spillway; Intake Structure; Penstock; Surge Tank; Power House;Turbines; Generators; Draft Tube; Tail Race
The document summarizes pumped storage power plants, which use excess electricity at night to pump water to a higher reservoir, then release the water through turbines to generate electricity during periods of high demand. Key points include: pumped storage plants store energy by pumping water to an upper reservoir using cheap off-peak power, then releasing the water to generate peak power; they provide flexibility to power grids and improve the efficiency of thermal and nuclear base load generation; major examples from around the world include the 1,872 MW Ludington plant in the US and the 360 MW Ffestiniog plant in the UK.
IRJET- Heat Extraction from Chimney and Pollution ControlIRJET Journal
1. The document discusses a system to control toxic gases from diesel engine exhaust and extract heat from the exhaust gases.
2. The system uses a chimney with a water jacket inside, along with perforated plates and activated charcoal, to reduce toxic levels in the exhaust gases. It also uses the heat from the gases to increase the temperature of water.
3. The heated water can then be used for applications like increasing the efficiency of boilers or saving power required to heat water. This extracts useful heat from the exhaust gases while reducing pollution.
The document describes the design and development of a floating oil skimmer with remote control. It aims to improve the separation efficiency of oil from water to reduce pollution. The skimmer uses a polyurethane belt attached to pulleys that rotates through the water, absorbing oil on its surface. Nylon scrapers then scrape the oil off into a collection tank. The design aims to efficiently remove oil spills with a compact, inexpensive and self-operating mechanism.
* Catchment area = 200 sq.km = 200,000,000 sq.m
* Average rainfall = 130 cm = 1.3 m
* Runoff = 70% of rainfall = 0.7 * 1.3 = 0.91 m
* Water available per year = Rainfall * Runoff * Catchment area
= 1.3 * 0.91 * 200,000,000 = 234,000,000 cubic meters
* Head available = 380 m
* Density of water = 1000 kg/cubic meter
* Gravity acceleration = 10 m/sec^2
* Power = Mass of water * Gravity height * Head / Time
= 234,000,000 * 1000 * 10 *
The document discusses hydroelectric power plants. It describes how hydroelectric power plants utilize the potential energy of water at high elevations to generate electricity. It covers site selection factors such as water availability, ability to store water, land costs and transportation access. The document outlines the typical components of hydroelectric power plants including reservoirs, penstocks, turbines, generators, and electrical equipment. It also classifies hydroelectric plants and discusses their advantages and disadvantages as well as potential environmental issues.
This document discusses the key components of hydropower projects including penstocks, power houses, and tailraces. It describes the different types of penstocks such as exposed, embedded, and underground and their advantages and disadvantages. A power house contains the mechanical and electrical equipment needed to convert the kinetic energy of water into electricity. Tailraces return water back to the river after it has passed through turbines in the power house.
Hydro power plants utilize the potential energy of stored water behind a dam to generate electricity. Water flows from the reservoir through penstocks to spin turbines connected to generators, converting the kinetic energy to electrical energy. Key components include the catchment area, dam/reservoir, penstocks, turbines, generators, and powerhouse. Hydro power provides clean energy but has high initial costs and depends on water availability.
1. Hydroelectric power plants harness the kinetic energy of flowing water by using a turbine connected to an electric generator. Water is stored in a reservoir behind a dam and then flows through a penstock to spin the turbine blades.
2. The turbine spins a shaft connected to a generator to produce electricity. Common types of turbines include Pelton, Francis, and Kaplan turbines which are suited for different water flows and heads.
3. In addition to generating electricity, pumped storage plants can pump water back up to the reservoir during low demand to be available for power generation during peak loads. Hydroelectric power is a renewable source that produces no emissions.
This document discusses hydroelectric power plants. It begins by defining hydroelectricity as electricity generated through the use of falling or flowing water. It then provides background on the sources of power generation and the concept of hydroelectric power plants. The document goes on to describe the major components of hydroelectric power plants including the reservoir, dam, turbines, and generators. It also discusses the working, sizes, history and advantages of hydroelectric power plants, as well as examples in Pakistan.
This document provides an overview of hydro power plant components and types. It discusses the three types of power houses: surface, semi-underground, and underground. Surface power houses have components on the surface but are limited by topography. Semi-underground power houses combine advantages of surface and underground. Underground power houses are located entirely inside mountains with access tunnels. The document also summarizes the main components of hydro power stations including dams/barrages, water conductor systems, and power houses as well as different types of hydro power projects.
1) Hydroelectric power plants utilize the kinetic energy of flowing water to generate electricity. Water turns turbines which spin generators to produce electricity.
2) There are several types of hydroelectric turbines suited for different water head and flow conditions including Pelton, Francis, and Kaplan turbines. Pelton turbines work best for high head applications while Francis and Kaplan are used for lower heads and higher flows.
3) The key components of a hydroelectric power plant include an intake, penstock, turbine, generator, and tailrace. Water is diverted from a source through the intake and penstock before passing through the turbine which spins the generator to produce electricity which is then transmitted through power lines.
This presentation includes introduction to run off river (ROR) plant and pumped storage plants, comparison between traditional and run off river plant, Classification of ROR Plants, Advantages and disadvantages of ROR Plants, Introduction to Pumped Storage Power (PSP) Plants, Classification of PSP, and Advantages and disadvantages of PSP
A water hammer is a pressure surge or wave caused when a fluid, usually a liquid but sometimes also a gas, in motion is forced to stop or change direction suddenly; a momentum change. this phenomenon commonly occurs when a valve closes suddenly at an end of a pipeline system, and a pressure wave propagates in the pipe
Hydroelectric power plants harness the potential energy of water by damming rivers and streams. Water flows through penstocks into turbines which spin generators to produce electricity. Key components include the reservoir, dam, penstocks, surge tank, spillway, turbines, and generators. Hydroelectric power is a renewable and efficient source of energy with low operating costs but high initial costs and potential environmental impacts.
Installation of Hydraulic Ram Pump - Thapathali Campus, KathmanduFatin62c
The document proposes installing a hydraulic ram pump (hydram) in a village in Nepal to provide a renewable source of water. A hydram uses the energy of falling water to pump a portion of the water to a higher elevation, requiring no other energy source. The project aims to design, manufacture, install, and test a hydram to demonstrate the technology for rural villages. Specific objectives are to identify an installation site, design and manufacture a hydram, construct a testing facility, install the hydram, and test its performance. The total proposed cost is 100,000 Nepali rupees. Industrial engineering students will implement the project as part of their studies.
The document summarizes the key components of a drainage system, including:
1. The drainage system conveys sewage, rainwater, and other liquid waste from fixtures through pipes to an external point of disposal, and includes house sewers, house drains, soil and waste stacks, fixture branches, and traps.
2. Essential components are the house sewer, house drain, house trap, fresh air inlet, soil and waste stacks, fixture branches, traps, and vents. Special devices include interceptors, sumps, ejectors, backwater valves, roof drains, and floor drains.
3. Pipes are sized based on the number and type of fixtures drained, with
This document summarizes different types of hydroelectric power plants and turbines. It describes impulse and reaction turbines, including Pelton, Francis, and Kaplan turbines. It provides diagrams of hydroelectric and pump storage plants. Key concepts covered include gross and net heads, discharge, water power, brake power, efficiency, and speed. Fundamental equations for hydroelectric systems are given. Common terms are defined. Sample problems demonstrate calculations for hydroelectric plant design and performance analysis.
This document summarizes a micro hydro power plant project with unmanned power distribution. The project uses common components like a water tank, flywheel turbine, water level detector, pump, motor and generator to harness energy from flowing water without human operation. It has potential applications for small-scale power generation for homes or industries using water sources like small rivers or canals. The system could help provide electricity in rural areas and reduce reliance on non-renewable energy sources.
The document discusses hydroelectric (hydel) power plants. It describes the basic working principle where potential energy from water stored behind a dam is converted to kinetic energy and used to turn turbines which generate electricity. It then outlines the key components of a typical hydroelectric power plant including the water reservoir, dam, spillways, surge tank, penstock, turbines, generators and transmission lines. It also classifies hydel plants based on water head and lists some common turbine types used. Advantages like renewable energy source and lower operating costs are highlighted along with disadvantages such as high initial costs and reduced power in drought seasons.
The outline of the presentation: Site Selection For HP Plant; and Components of HP Plant; Catchment Area; Reservoir; Dam; Fore bay; Sluice Gate; Spillway; Intake Structure; Penstock; Surge Tank; Power House;Turbines; Generators; Draft Tube; Tail Race
The document summarizes pumped storage power plants, which use excess electricity at night to pump water to a higher reservoir, then release the water through turbines to generate electricity during periods of high demand. Key points include: pumped storage plants store energy by pumping water to an upper reservoir using cheap off-peak power, then releasing the water to generate peak power; they provide flexibility to power grids and improve the efficiency of thermal and nuclear base load generation; major examples from around the world include the 1,872 MW Ludington plant in the US and the 360 MW Ffestiniog plant in the UK.
IRJET- Heat Extraction from Chimney and Pollution ControlIRJET Journal
1. The document discusses a system to control toxic gases from diesel engine exhaust and extract heat from the exhaust gases.
2. The system uses a chimney with a water jacket inside, along with perforated plates and activated charcoal, to reduce toxic levels in the exhaust gases. It also uses the heat from the gases to increase the temperature of water.
3. The heated water can then be used for applications like increasing the efficiency of boilers or saving power required to heat water. This extracts useful heat from the exhaust gases while reducing pollution.
The document describes the design and development of a floating oil skimmer with remote control. It aims to improve the separation efficiency of oil from water to reduce pollution. The skimmer uses a polyurethane belt attached to pulleys that rotates through the water, absorbing oil on its surface. Nylon scrapers then scrape the oil off into a collection tank. The design aims to efficiently remove oil spills with a compact, inexpensive and self-operating mechanism.
IRJET- Modification and Performance Analysis of Aqua SilencerIRJET Journal
The document discusses a study on modifying an aqua silencer to improve its performance in reducing emissions and noise from diesel engines. An aqua silencer works by passing exhaust gases through a perforated tube submerged in water, which breaks the gases into smaller bubbles and allows chemicals in the water to react with and absorb pollutants. The researchers modified the design of the aqua silencer and replaced the lime water with charcoal water. Testing showed the modified aqua silencer significantly reduced levels of carbon monoxide, hydrocarbons, carbon dioxide, and noise compared to a conventional silencer, with minimal impact on fuel efficiency. The aqua silencer is presented as a low-cost way to help control vehicle emissions and
Fabrication of Semi-Automatic Water Cleaning SystemIRJET Journal
This document describes the design and fabrication of a semi-automatic water cleaning system. The system uses a conveyor belt mechanism powered by an electric motor to collect waste from water surfaces and deposit it into a collection container. The objectives of the system are to reduce the time, labor, and costs required for manual cleaning of water bodies while also improving water quality and protecting aquatic wildlife. The system consists of a floating frame made of PVC pipes that supports the conveyor belt, motor, and collection container. It is remotely controlled and can efficiently remove debris from rivers, lakes, and other bodies of water in an environmentally friendly manner. Testing showed the system successfully collected waste while requiring less manual effort compared to traditional cleaning methods.
IRJET- Implementation and Automation of Air BlasterIRJET Journal
The document discusses the implementation and automation of air blasters. Air blasters are devices used to prevent clogging in silos, bins, and hoppers by releasing compressed air. They traditionally used two-way valves operated manually by laborers, which could cause errors in synchronization. To address this, the authors propose automating air blasters using solenoid valves controlled by an Arduino circuit and Bluetooth. This allows wireless control and creates a highly coordinated display. Air blasters have various applications in industries and events to clear clogs, aerate materials, and add visual effects with confetti or smoke. The automated design aims to improve reliability and safety while reducing costs.
IRJET- A Proposed Design of Semi Automatic Cleaning System for High Power...IRJET Journal
This document describes a proposed design for a semi-automatic cleaning system for high power transmission line insulators. It begins with an introduction to insulators and why cleaning is important. It then discusses existing manual and automated cleaning methods and their limitations. The proposed design is then described in detail, including the main components of a base gripper, lead screw, washer base with microfiber rollers, and how it would function to clean cup and pin type insulators located less than 20 meters high in an efficient, cost-effective manner using dry cleaning. Calculations are provided to analyze the design and simulations were conducted to test load conditions. The conclusion is that the new system aims to prevent insulator failures caused by pollution in a safer
IRJET - A Review Paper on Aqua SilencerIRJET Journal
The document discusses the aqua silencer, which is used to reduce noise and control emissions from automobile exhaust. It works by passing exhaust through a perforated tube coated in activated carbon and immersed in water. This helps filter pollutants and reduces noise levels compared to traditional silencers. The aqua silencer construction includes a perforated tube, outer shell, non-return valve, charcoal layer, and connecting pipes. It is effective at reducing emissions like carbon monoxide and has advantages like low cost and easy installation compared to catalytic converters. However, it requires more space and regular lime water refilling compared to conventional silencers.
Design and Febrication of Water Filtration VehicleIRJET Journal
The document describes the design and fabrication of a water filtration vehicle (WFV) that is pedal powered. The WFV uses a peristaltic pump operated by pedal power to pump water through a carbon filter for purification. It is intended to provide clean drinking water in remote areas where water sources are far from villages. The WFV aims to reduce the labor required for women and children to transport water long distances by hand. The pedal powered system is designed to be low-cost, reliable, and easy to use with no required maintenance or experience. Experimental results showed the WFV can pump a considerable amount of water and provide head pressure.
IRJET- Design and Fabrication of Aerodynamic Aqua SilencerIRJET Journal
The document describes the design and fabrication of an aerodynamic aqua silencer. It aims to reduce pollution from vehicle emissions by controlling toxic levels through chemical reactions in the silencer. The system uses a perforated tube with varying hole diameters to break gas bubbles into smaller ones. These gases then pass through an activated charcoal layer that absorbs harmful gases before being released into the atmosphere. The objectives are to redesign the aqua silencer to be more suitable for application levels, control emissions through chemical reactions, and reduce emissions by 10-20% compared to existing systems. The modified design aims to address limitations of existing rectangular silencers by making an aerodynamic foil shape and replacing lime water with a new chemical that causes
International Refereed Journal of Engineering and Science (IRJES)irjes
The core of the vision IRJES is to disseminate new knowledge and technology for the benefit of all, ranging from academic research and professional communities to industry professionals in a range of topics in computer science and engineering. It also provides a place for high-caliber researchers, practitioners and PhD students to present ongoing research and development in these areas.
The document discusses two types of machines: a quicklime digester and an S-type powder separator. The quicklime digester digests quicklime into lime milk or powder through a double helix digestion process. It has high efficiency and is used in various industries. The S-type powder separator separates powder mixtures using a rotating cage and fan blades to separate particles into different grades with high accuracy. It has a circulating air system and can improve product quality. Technical specifications are provided for both machines.
The Shoaiba Barge SWRO plant in Saudi Arabia is the world's only sea-based desalination plant. It consists of two barges each with a capacity of 26,000 cubic meters per day. The plant uses ultrafiltration pre-treatment and a two-pass reverse osmosis system with FILMTECTM membranes. Since starting operation in May 2008, the first barge has consistently produced high quality water while operating pressures and salt passage have remained stable with only minor decreases in permeate flow observed. Routine membrane cleaning will be required to maintain performance levels.
The document describes an RX precise vacuum filter that uses ceramic tubes with micro-holes to separate solids and liquids with high efficiency. It works by forming a filter cake under vacuum pressure that allows liquid to drain through while retaining solids. Key parts include the ceramic plates, distributing valve, scraper, and vacuum system. It provides high filtration precision at low energy consumption.
APP 1.5, APP 1.8, APP 2.2, APP 2.5, APP 3.0 and APP 3.5 pumps are designed to supply low viscosity and corrosive fluids under high pressure, e.g. in seawater reverse osmosis
filtration applications and for high-pressure saltwater pumping.
The pumps are based on the axial piston principle enabling a very light and compact design. The design ensures that lubrication of the moving parts in the pumps is provided by
the fluid itself. No oil lubrication is thus required
Read more at - http://www.danfoss.in/
This document describes a drainage water cleaner machine designed to clean drainage systems of waste such as plastic and thermocol. It consists of a motor, sprockets, chains, bearings and adjustable plates to automatically collect floating waste in drainage channels. The system aims to reduce human labor and increase waste collection rates. Key components are selected based on factors like strength, weight and cost. The expected applications are in municipal corporations and plastic industries to separate waste from water before treatment.
1. The internship report summarizes the intern's 1-month internship at Cotton Web Pvt. Ltd, a jeans manufacturing and exporting company.
2. During the internship, the intern gained technical experience related to mechanical engineering by learning about the company's boiler, generator, and waste management systems.
3. The intern also gained non-technical experience regarding the professional operations and relationships within different levels of the industry.
This document provides information about Muyang MY series single-screw extruders. It discusses the application of these extruders in producing pet food and aquafeed. It compares single-screw and twin-screw extruders. The document also covers technical parameters like capacities for different models, process parameters for floating and sinking aquafeed production, and configuration requirements. Production references are given and wear parts like the extruding rotor are described.
IRJET- Design and Fabrication of Bunds Purging MachineIRJET Journal
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Aquaculture machinery & machine aerators ,equipment by alibaba machinery
1. Aquaculture Machinery & Machine Aerators
,Equipment By Alibaba Machinery
Smeartra MachineryAugust 16, 2021
HOT sale !
smeartra-amb.business.site : https://bit.ly/3CobPaT
LEARN MORE : https://bit.ly/3xCRj3s
#smeartra
2. .............................................................................................
.......
Most of the products are in stock ,
could not put all products on website.
.............................................................................................
.......
Get Click Read More : Aquaculture Machinery & Machine Aerators ,Equipment
(01) 30NM3 4bar high purity fish farm oxygen generator meter
The user is responsible for providing the required equipment: water, electricity, compressed
air and equipment installation site, and must meet the following requirements
OXYGEN FILLING SYSTEM
● Model : CNCBO-30
● Capacity : 30Nm3/h
● Oxygen purity : 93%+-3%
● Oxygen gas dew point : less than -40degree C
● Oxygen outlet pressure : more than 0.4mpa
● Effectrive gas consumption : more than 7.2Nm3/min
● Rated intake pressure : more than 0.8mpa
● The maximum oil content of feed gas : less than 0.01ppm
● Maximum pressure loss : less than 0.15mpa
● Inlet temperature : less than 50 degree C
● Power : 220/50Hz, 160W
4. CG
1. Air buffer tank 1set
2. O2storage tank 1set
(02) Efficient aeration equipment microporous and macroporous aerators for
wastewater treatment equipment
Plate microporous aerator
...........................................................
The plate series aerator is composed of chassis, air distribution plate, synthetic rubber
diaphragm, compression ring, air guide plate, connecting base and connecting parts of air
distribution pipe. The base is made of ABS plastic. The base and the compression ring are
threaded. The EPDM rubber diaphragm is covered on the air equalizing plate. Under the
action of the fixing ring, it can ensure that there is no air leakage around the diaphragm. The
rubber diaphragm has evenly distributed holes. This kind of rubber diaphragm is processed
by many special processes. Its performance is stable and it is resistant to medium
concentration acid, alkali, oil and other media. It is the first one to be put into use Aerator in
engineering operation.
Quick Details
....................................
● Condition : New
● Warranty : 1 Year
● Local Service Location : None
● Showroom Location : None
● Video outgoing-inspection : Provided
● Machinery Test Report : Not Available
● Marketing Type : New Product 2020
5. ● Warranty of core components : 1 Year
● Core Components : diaphragm
● Place of Origin : China
● After-sales Service Provided : Video technical support, Free spare parts, Online
support
● Key Selling Points : Long Service Life
● Product name : microporous aerator
● Usage : water treatment
● Membrane material : EPDM Rubber
● Material : ABS
● Size : 7''/9''/12''
(03) 2017 Hot Sale Fish Pond Aerator Pump For Fish Tank Aerators
Product Application
.........................................................
When the motor starts running, impellers will rotate and touche water surface, it will press
air into water and therefore increase some oxygen in water.
The most importance is working impellers can make sufficient water splash and strong
water current. Large amount of splash will take air into water and enrich obviously dissolved
oxygen in water. Meantime, water waves and current will eliminate harmful substances like
ammounia, nitrite, hydrogen sulfide, etc out of water and finally clean water.
All brand new materials produced components to make sure our customers receive high
quality items. It can be used both on freshwater and seawater.
Main Features
6. 1. High efficiency and saving over 20% electric energy than traditional models.
2. Mechanical seal is available to against oil leak pollution.
3. Built-in protector is available to avoid motor being burnt accidentally.
4. The floating boat produced by us is made of good engineering plastic HDPE. It has
great buoyancy and high strength.
5. The impeller is made of New PP. The spoke and vane is shaped with plastic only one
time.
6. The flexible gearing is fixed by the stainless wheel bolt.
7. High oxygenation rate: 2.6kgs/h.
8. Easy installation and maintenance.
9. Stainless steel frame is sturdy with no deformation and high durability.
Quick Details
...........................................
● Place of Origin : Zhejiang, China
● Brand Name : sunshine
● Model Number : ss-2hp-1
● Use : Shrimp, eel, crab, fish farming
● Warranty period : 1year
● duration of service : 5-10year
● Date of delivery : 2day
● Motor : 1HP/2HP/3HP
● Voltage : (3PH)220V380V400V415V440V
● Phase : 3 Phase 1 Phase
● Certification :CE
● Type : Aquaculture Machinery
● Key word : Wheel Paddle Aerator
(04) Oxygen Farm Fish aquaculture For Pond 2hp Paddlewheel Aerator
7. Quick Details
....................................
● motor Power : 2HP(1.5KW)
● Aerobic capacity : 2.6~2.9kg/h
● Power Efficiency : ≥1.25kg/(kw·h)
● Impeller speed : 100r/min
● Voltage : 220V380V400V415V440V
● Load water surface : ≥1m³
● Loading Area : 4.046-20.234m³
● Frequency : 50HZ60HZ
● Noise : Less than 61dB
● Size : (L•W•H)1550mm•1650mm•890mm
● Condition : New
● Warranty : 1 Year
● Local Service Location : None
● Showroom Location : None
● Video outgoing-inspection : Provided
● Machinery Test Report : Provided
● Marketing Type : Hot Product 2021
● Warranty of core components : 1 years
● Core Components : Bearing, Gearbox, Motor, Gear
● Place of Origin : Zhejiang,China
● Brand Name : Yuning
● Model Number : TB-2
● After-sales Service Provided : Video technical support, Field maintenance and
repair service, Free spare parts, Online support, Field installation, commissioning
and training
● Key Selling Points : Easy to Operate
● Product name : Fish Pond Farm Equipment
● Application : Oxygen Increasing
● Power : 1HP
8. ● Speed : 1440RPM
● Aerobic Capacity : 1.9kg(O2)/H
● Voltage : 110v/220v/380v/440v
● Floater : HDPE
● Motor : copper wire
● Gearbox : Cast Iron 4/9 Spline
(05) Micro nano bubble aration tube for fish farming
Products Description
.............................................
The micropore rubber bubble diffuser aeration hose for aquaculture is specially designed to
create fine bubbles that rise slowly in the water. These fine bubbles have higher surface
area which remain in the water for longer periods, such kind of aerator is anti-blocking,
anti-corrosive and anti-aging, enabling more efficient oxygen transfer into the water. All you
need is an efficient clean air blower.
Super microporous aeration by new micro molecular material tube, atomization effect
ranked first in all types of aeration tube, Its working principle is: by air compressor pump
pressure, so that uniform aeration tube to expand and reach the design value, A lot of air
bubbles (diameter: 20 ~ 30um) coming out from the wall, in the water in the smoke state,
Rise very slowly, dissolved oxygen effect is remarkable, to dramatically improve the oxygen
content in the water, Increasing the mobility of water, improve the density of aquaculture
Main Application
...................................................................
1. Oxygenation and aeration in sewage treatment process
9. 2. Aeration in improving the water quality of rivers and lakes
3. Oxygenation aeration in aquaculture.
Quick Details
.....................................
● Condition : New
● Warranty : 1 Year
● Local Service Location : Egypt, Turkey, Viet Nam, Philippines, Brazil, Peru, Saudi
Arabia, Pakistan, India, Mexico, Russia, Spain, Thailand, Japan, Malaysia, Australia,
Morocco, Kenya, Argentina, South Korea, Chile, UAE, Colombia, Algeria, Sri Lanka,
Romania, Bangladesh, Nigeria
● Showroom Location : Egypt, Viet Nam, Philippines, Brazil, Saudi Arabia, Pakistan,
India, Mexico, Russia, Thailand, Kenya, Argentina, South Korea, UAE, Colombia,
Algeria, Sri Lanka, Romania, Bangladesh, South Africa, Kazakhstan, Malaysia
● Video outgoing-inspection : Provided
● Machinery Test Report : Provided
● Marketing Type : New Product 2020
● Warranty of core components : 1 Year
● Core Components : Engine, Bearing, Gearbox, Motor, Gear
● Place of Origin : ZHE
● Brand Name : YN
● Model Number : YC-1.5
● After-sales Service Provided : Video technical support, Field maintenance and
repair service, Free spare parts, Online support, Field installation, commissioning
and training
● Key Selling Points : High Productivity
● Name : Fish Pond Aquaculture Aerator
(06) 1HP Taiwan Type High Efficiency YC-0.75 Spray Aerator
10. Product Application
With the continuous development of aquaculture fisheries, intensive high-yielding
aquaculture technology has been widely used, fishery farming increased significantly. In the
process of aquaculture production increase, aerator has become an essential equipment to
achieve high-yield fisheries intensive, plays an important role in the development of fishery
economy. Reasonable use of oxygen machine can effectively increase the dissolved oxygen
in the pool water, accelerate the pond water body material circulation, reduce or eliminate
harmful substances, and promote plankton breeding. For the prevention and mitigation of
fish floating head, to prevent flooding and improve pond water quality conditions, increase
the amount of fish fed and increase yield and so have a good role in promoting.
Advantages
1. Arcuate-bevel gears are used instead of worm gears, thereby economizing on
energy with high efficiency , and saving over 20% electric energy over traditional
models.
2. The arcuate-bevel gear is made of chromium-manganese-titanium alloyed steel with
carbonitriding on the surface, adding rigidity and providing longer service life.
3. Mechanical seal is used to ensure no oil leakage pollution.
4. Protector is installed inside the machine to avoid motor being burnt accidentally..
5. High efficiency oxygen transferring ability with 2.6kgs O2/h.
6. Have good water current circulation as the making of large area water wave.
7. Easy assortment, operation and maintenance
8. Durable service life.
Quick Details
..........................................
● Place of Origin : Zhejiang, China
● Brand Name : Jinhulong
● Model Number : YL-2P
11. ● Key word : pond aerator
(07) 215mm disc rubber microporous aerator
he variable microporous aerator is designed as a slightly raised arched surface, and the
diaphragm has a special imported rubber (EPDM) with an anti adhesion surface, which is
made by special processing. The diaphragm hole is opened by a German imported CNC
cutter, ensuring the quality and accuracy of the hole. When the aerator is aerated with
oxygen, four air supply tanks are designed on the main panel, so that the incoming air can
be buffered through the check valve and then directly sent to the center of the aerator head
to ensure that the diaphragm can be opened easily with low resistance at one time. The
diaphragm is mechanically assembled with rib anti lock to ensure that the diaphragm is not
easy to fall off. During air intake, the micropores on the air distribution membrane expand by
themselves to ensure air passing through. When the aeration is stopped, the variable
micropores on the gas distribution membrane are closed. Because the variable micropores
on the gas distribution membrane expand and contract by themselves, the micropores
passing through the aerator are not blocked. Secondly, the bottom plate of the aerator is
provided with a check valve device to prevent the mixed liquid from entering the gas
distribution branch pipe when the gas supply of the pipeline system is stopped, so as to
prevent the mixed liquid from entering the branch pipe and being blocked. The incoming air
does not need special filtration, the intermittent aeration is not blocked, the aeration is
uniform, and the oxygen transfer efficiency is high.
It is mainly used for water treatment of sedimentation tank, sewage treatment tank,
accelerated sedimentation tank and clarifier
in water plant. This product has the advantages of fast settling speed, reduction of settling
time, improvement of water yield and
water purification efficiency, and good effluent quality. It is an effective way to tap the
potential of water plants and sewage
12. Product Description
...................................
● NAME : 215
● Working ventilation(m³/h): 1.5-3
● Design ventilation(m³/h) : 2
● Service area(㎡): 0.25-0.45
● Oxygen utilization rate(%): ≥30
● Oxygenation capacity(kgO2/h): 0.13-0.35
● Bubble diameter(mm): 1-3
● Submerged depth(m) : 4-8
● Theoretical dynamic efficiency(kgO2/kwh): 6.5
08) Long Arm Diesel Engine Paddle Wheel Aerator with Aquaculture Aerator Machine
Diesel For Fish Farming
DIESEL ENGINE PADDLE WHEEL AERATOR
Can customized in 8 wheels to 22 wheels or more wheels with diesel engine, suitable for a
place which is lack of electric support . Diesel engine brand is CHANGFA ,also can choose
another brand . Paddle wheel aerator all the spare parts all in high level ,like materials are
stainless steel 304 solid shaft and impeller shaft, even the screws. Can used in sea water.
The diesel engine power is from 16hp tp 22hp ,so the speed can reached to 2200 r/min ,the
impeller speed can reached to 15r/min. Aeration performance is over ,7.8kg /h oxygen, but
noise is lower than 78dB
Diesel Engine Paddle Wheel Aerator
13. ......................................................................
Model : QD12-12 /QD16-16
Motor Power : 12HP-20HP
Voltage : 220V / 380V / 400V / 415V / 440V
Frequancy : 50HZ / 60HZ
Weight : 360KG/400KG
Size : 1.2CBM/1.5CBM
Diesel engine aerator common set :
1. 12 wheels aerator work with 12 HP diesel engine
2. 16 wheels aerator work with 16 HP diesel engine
Common choose for diesel engine :
1. Electric start with fan cooling type ,can add LED light,(need start up with battery)
2. Hand rolling start with water cooling type
Quick Details
................................................
Condition : New
Warranty : 1 Year
Local Service Location : None
14. Showroom Location : None
Video outgoing-inspection : Provided
Machinery Test Report : Provided
Marketing Type : Hot Product 2021
Warranty of core components : 1 years
Core Components : Bearing, Gearbox, Motor, Gear
Place of Origin : Zhejiang,China
Brand Name : Yuning
Model Number : QD12-12
After-sales Service Provided : Video technical support, Field maintenance and repair
service, Free spare parts, Online support, Field installation, commissioning and training
Key Selling Points : Easy to Operate
Product name : Fish Pond Farm Equipment
Application : Oxygen Increasing
Power : 1HP
Speed : 1440RPM
Aerobic Capacity : 1.9kg(O2)/H
15. Voltage : 110v/220v/380v/440v
Floater : HDPE
Motor : copper wire
Gearbox : Cast Iron 4/9 Spline
(09) Hot sale 2021 solar paddle wheel pond aerator for shrimp fish farming
Products Description
..........................................
The solar de-layer aerator is composed of photovoltaic panel components, battery packs,
surface aerators, floating bodies, brackets and other main components. The photovoltaic
drives the surface aerator impeller to operate. The rotating impeller stirs the water body to
form splashes and water films, and expand the water. The contact surface with the air
allows oxygen, surface aerobic substances and algae to quickly merge into the bottom of
the water, so that the surface and lower water quality can be exchanged quickly, and the
bottom exhaust gas is eliminated, and the ecological balance of the water body has been
maintained.
Scope of application Reservoirs, rivers, lakes, rivers and other relatively deep waters, where
the bottom and surface water interact, achieve quick results in the treatment of algae.
Quick Details
..................................................
● Condition : New
16. ● Warranty : 1 Year
● Local Service Location : None
● Showroom Location : None
● Video outgoing-inspection : Provided
● Machinery Test Report : Not Available
● Marketing Type : Hot Product 2021
● Warranty of core components : 1 Year
● Core Components : Engine
● Place of Origin : Jiangxi, China
● Brand Name : Liongoal
● Model Number : LG-JC-1500
● After-sales Service Provided : Online support
● Key Selling Points : Multifunctional
● Product name : Solar paddle wheel pond aerator
● Type : Oxygen Equipment
● Structure : Paddle wheel +solar aerator
● Paddle wheel : 4 paddle wheel
● Power : 2hp 1.5kw
● Motor : 0.37kw - 1.5kw
● Energy : Solar
● Function : Oxygen Increasing
● Voltage : 48V/220V
● Battery : Optional
(10) Impeller Aerator, fish pond aerator, fish farming aerator with low price
Haikai Shuangqiao Impeller aerator
.................................................................................
1. high quality
2. hot sales
17. 3. factory price
4. free sample
Taizhou Haikai Mechanical and Electrical Co.Ltd
................................................................................................................
1. History :built in 2001, 19 years experience of manufacturing the paddle wheel
aerators and motors.
2. Products : SHUANGQIAO brand motors, paddle wheel aerators, impellers aerator,
multi-function surge aerator ,wave maker aerators, aeration type aerators, surface
aerators, air jet aerator, splash aerators and kinds of aerator spare parts and
accessories.
3. Address : It's located in Yuanqiao , Huangyan, Taizhou, Zhejiang, China. Near
Taizhou railway station and 3 hours to Ningbo Port.
4. Win-win Goal : With the high reputation and our first-class service and quality,
Haikai will be more prospourse ,as well as with your trust and cooperation.
5. Main market : Haikai paddle wheel aerator export to all over the world, especially for
India, Indonesia, Vietnam, Malaysia, Philippine, Bangladesh, Thailand, Sri Lanka,
Iraq, Egypt, Mexico, Brazil, Honduras and Ecuador.
Quick Details
..........................................
● Condition : New
● Warranty : 1 Year
● Local Service Location : None
● Showroom Location : None
● Video outgoing-inspection : Provided
● Machinery Test Report : Provided
● Marketing Type : New Product 2020
● Warranty of core components : 1 Year
18. ● Core Components : Gearbox, Motor
● Place of Origin : Zhejiang, China
● Brand Name : SHUANGQIAO
● Model Number : YL-1.5
● After-sales Service Provided : Video technical support, Free spare parts, Online
support
● Key Selling Points : Long Service Life
● Key word : impeller aerator
● Type : Machinery
● Certification : CE
● Use : Shrimp, eel, crab, fish farming
● Motor Power : 1.5
● Gear Material : Chromium manganese titanium alloy steel
● Phase : 3 phase or single phase
● Impeller material : plastic
{Although the majority of the products are in stock, we were unable to include all of them on
the website.}
Resource : Aquaculture Machinery & Machine Aerators ,Equipment By Alibaba Machinery
(smeartramachineries.blogspot.com)