System Ref: F120S
PJS Solutions ROBUST Severe Rated Industrial Partition System that is designed, manufactured, supplied & Installed up to 20m high throughout the United Kingdom and selected countries throughout the world.
ROBUST Severe Rated Industrial Partition
62dB Acoustic Rating
U-values 0.28 W/m2k
Built up to 20m high
Specified by Architects
ROBUST Severe Rated Industrial Partition comprising of 2 x layers 12.5mm of Fermacell performance board screw fixed both sides of heavy gauge “PJS” continuous length steel studs sections with at least 75mm Rockwool Mineral Slab 45kg/m3 with 3 different grades of surface finish, sealed at all points with acoustic sealant.
10 Year System WarrantyFire CertificationStructural EngineeringAcoustic EngineeringDesign ServiceCAD Drawing ServiceStructural EngineeringInstalled By “PJS” Throughout the UKIndustrial Finish Option Saving On Costs
System Ref: F120S
PJS Solutions ROBUST Severe Rated Industrial Partition System that is designed, manufactured, supplied & Installed up to 20m high throughout the United Kingdom and selected countries throughout the world.
ROBUST Severe Rated Industrial Partition
62dB Acoustic Rating
U-values 0.28 W/m2k
Built up to 20m high
Specified by Architects
ROBUST Severe Rated Industrial Partition comprising of 2 x layers 12.5mm of Fermacell performance board screw fixed both sides of heavy gauge “PJS” continuous length steel studs sections with at least 75mm Rockwool Mineral Slab 45kg/m3 with 3 different grades of surface finish, sealed at all points with acoustic sealant.
10 Year System WarrantyFire CertificationStructural EngineeringAcoustic EngineeringDesign ServiceCAD Drawing ServiceStructural EngineeringInstalled By “PJS” Throughout the UKIndustrial Finish Option Saving On Costs
GFRG/ Rapid wall is load bearing pre-fabricated walling panel. This is suitable for rapid mass scale building construction was originally developed and used since 1990 in Australia. Currently, in India GFRG Wall Panels are manufactured at FACT-RCF Building Products Limited (FRBL) at Ambalamedu, Kochi, Kerala. These presentation contains all in one information about GFRG Panel like uses of GFRG Panels, manufacturing of GFRG Panels at FRBL, stepwise construction of GFRG building and finally a comparison of GFRG building and a conventional building.
Building systems using Glass Fibre Reinforced Gypsum Panels.
This presentation brief about the manufacturing, suitabllity and use of GFRG panels for various components of building.
Glass Fiber Reinforced Gypsum Panel use in Building ConstructionGRD Journals
There is large growing requirement of building materials in India due to urbanization. To meet this challenge, india requires innovative and efficient building material. Glass fiber reinforced gypsum (GFRG) wall panel is made essentially of gypsum plaster reinforced with glass fiber. The panels are hollow and can be used as load bearing walls. The hollow cores inside the walls can be filled with in-situ plain or reinforced concrete. Variation of buckling load of unfilled GFRG wall panels for various widths is reported. The axial load carrying capacity obtained from the numerical analysis and the test results comparable for this load case. While assessing the axial load capacity for design under compression, a minimum possible eccentricity is accounted for. An engineering model is proposed to assess the strength of unfilled and concrete filled GFRG wall panels in multi-storied building system subjected to lateral load such as earthquake.
Citation: Jay Rathod, Bhagwan Mahavir College of Engineering & Technology; Shyam Doshi ,Bhagwan Mahavir College of Engineering & Technology; Kevin Lad ,Bhagwan Mahavir College of Engineering & Technology; Parth Parmar ,Bhagwan Mahavir College of Engineering & Technology; Pratik Patel ,Bhagwan Mahavir College of Engineering & Technology. "Glass Fiber Reinforced Gypsum Panel use in Building Construction." Global Research and Development Journal For Engineering 33 2018: 47 - 51.
This slide explains how the GFRG panels are made from industrial waste Gypsum. These panels are very economical and transforms brick by brick construction to wall by wall construction resulting in rapid construction. Where the conventional building takes about years of construction time, this technique can save time upto 80%.
GFRG superior than conventional construction. The GFRG are panels economical and Eco-friendly. This technology has been used by Australian’s since 1990’s only as walls. These panels are precast in factories, transported to construction site and erected with the help of crane.
The Interim NZEB Specification for Public Sector buildings sets out a performance specification for new buildings owned and occupied by Public Authorities after 31st Dec 2018. It is intended that this specification will form the Nearly Zero Energy Buildings requirement in the interim period until the new 2017 Part L for Buildings other than Dwellings takes effect.
Housing/Building Standards Section, presentation given by Sean Armstrong, Senior Technical Advisor (Building Standards), Department of Housing, Deep Retrofit conference June 21st 2017
GFRG/ Rapid wall is load bearing pre-fabricated walling panel. This is suitable for rapid mass scale building construction was originally developed and used since 1990 in Australia. Currently, in India GFRG Wall Panels are manufactured at FACT-RCF Building Products Limited (FRBL) at Ambalamedu, Kochi, Kerala. These presentation contains all in one information about GFRG Panel like uses of GFRG Panels, manufacturing of GFRG Panels at FRBL, stepwise construction of GFRG building and finally a comparison of GFRG building and a conventional building.
Building systems using Glass Fibre Reinforced Gypsum Panels.
This presentation brief about the manufacturing, suitabllity and use of GFRG panels for various components of building.
Glass Fiber Reinforced Gypsum Panel use in Building ConstructionGRD Journals
There is large growing requirement of building materials in India due to urbanization. To meet this challenge, india requires innovative and efficient building material. Glass fiber reinforced gypsum (GFRG) wall panel is made essentially of gypsum plaster reinforced with glass fiber. The panels are hollow and can be used as load bearing walls. The hollow cores inside the walls can be filled with in-situ plain or reinforced concrete. Variation of buckling load of unfilled GFRG wall panels for various widths is reported. The axial load carrying capacity obtained from the numerical analysis and the test results comparable for this load case. While assessing the axial load capacity for design under compression, a minimum possible eccentricity is accounted for. An engineering model is proposed to assess the strength of unfilled and concrete filled GFRG wall panels in multi-storied building system subjected to lateral load such as earthquake.
Citation: Jay Rathod, Bhagwan Mahavir College of Engineering & Technology; Shyam Doshi ,Bhagwan Mahavir College of Engineering & Technology; Kevin Lad ,Bhagwan Mahavir College of Engineering & Technology; Parth Parmar ,Bhagwan Mahavir College of Engineering & Technology; Pratik Patel ,Bhagwan Mahavir College of Engineering & Technology. "Glass Fiber Reinforced Gypsum Panel use in Building Construction." Global Research and Development Journal For Engineering 33 2018: 47 - 51.
This slide explains how the GFRG panels are made from industrial waste Gypsum. These panels are very economical and transforms brick by brick construction to wall by wall construction resulting in rapid construction. Where the conventional building takes about years of construction time, this technique can save time upto 80%.
GFRG superior than conventional construction. The GFRG are panels economical and Eco-friendly. This technology has been used by Australian’s since 1990’s only as walls. These panels are precast in factories, transported to construction site and erected with the help of crane.
The Interim NZEB Specification for Public Sector buildings sets out a performance specification for new buildings owned and occupied by Public Authorities after 31st Dec 2018. It is intended that this specification will form the Nearly Zero Energy Buildings requirement in the interim period until the new 2017 Part L for Buildings other than Dwellings takes effect.
Housing/Building Standards Section, presentation given by Sean Armstrong, Senior Technical Advisor (Building Standards), Department of Housing, Deep Retrofit conference June 21st 2017
A presentation by Iain Howley MD of Ground Source Consult Ltd to the member of The Chartered Institute of Builders (CIOB) on Ground Source Energy System Design.
Kohinoor by Aurobindo Realty - E brochurePoojaShetty87
2, 3, 4 BHK flats for sale in Hitech City, Hyderabad at Kohinoor By Aurobindo Realty. Kohinoor is a Luxury Apartments in Hitech City, Hyderabad which offering with world-class amenities. For more information click here: https://www.aurobindorealty.com/portfolio/flats-in-hyderabad/
Carbon Fiber (FRP) used for structural strengthening. It’s 5 to 10 times stronger than steel, light weight and corrosion resistant. The ASME PCC-2 code new standard includes carbon fiber as an acceptable repair and strengthen system for steel pipes.
A compact, fast responding electric heating element for clean gases in fuel cell, bio-med, laboratory, food, and pharmaceutical applications. The SuperCirc gas heater is designed for applications where fast heating of clean gases is required. All parts exposed to gas flow are constructed of 316SS (other materials available) rather than exposing process media to exposed resistance elements. This ensures that no foreign matter contaminates gas.
S&L offers energy companies services to help them implement and plan for 316b compliance. To market these services, I developed this brochure and help to plan a corresponding webinar that was advertised by Power Engineering.
FellowBuddy.com is an innovative platform that brings students together to share notes, exam papers, study guides, project reports and presentation for upcoming exams.
We connect Students who have an understanding of course material with Students who need help.
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Different equipment used in Coal handling plant to handle huge capacity required for thermal coal power generation units in India due to High ash content and low calorific value coal available in India
About
Indigenized remote control interface card suitable for MAFI system CCR equipment. Compatible for IDM8000 CCR. Backplane mounted serial and TCP/Ethernet communication module for CCR remote access. IDM 8000 CCR remote control on serial and TCP protocol.
• Remote control: Parallel or serial interface.
• Compatible with MAFI CCR system.
• Compatible with IDM8000 CCR.
• Compatible with Backplane mount serial communication.
• Compatible with commercial and Defence aviation CCR system.
• Remote control system for accessing CCR and allied system over serial or TCP.
• Indigenized local Support/presence in India.
• Easy in configuration using DIP switches.
Technical Specifications
Indigenized remote control interface card suitable for MAFI system CCR equipment. Compatible for IDM8000 CCR. Backplane mounted serial and TCP/Ethernet communication module for CCR remote access. IDM 8000 CCR remote control on serial and TCP protocol.
Key Features
Indigenized remote control interface card suitable for MAFI system CCR equipment. Compatible for IDM8000 CCR. Backplane mounted serial and TCP/Ethernet communication module for CCR remote access. IDM 8000 CCR remote control on serial and TCP protocol.
• Remote control: Parallel or serial interface
• Compatible with MAFI CCR system
• Copatiable with IDM8000 CCR
• Compatible with Backplane mount serial communication.
• Compatible with commercial and Defence aviation CCR system.
• Remote control system for accessing CCR and allied system over serial or TCP.
• Indigenized local Support/presence in India.
Application
• Remote control: Parallel or serial interface.
• Compatible with MAFI CCR system.
• Compatible with IDM8000 CCR.
• Compatible with Backplane mount serial communication.
• Compatible with commercial and Defence aviation CCR system.
• Remote control system for accessing CCR and allied system over serial or TCP.
• Indigenized local Support/presence in India.
• Easy in configuration using DIP switches.
Hybrid optimization of pumped hydro system and solar- Engr. Abdul-Azeez.pdffxintegritypublishin
Advancements in technology unveil a myriad of electrical and electronic breakthroughs geared towards efficiently harnessing limited resources to meet human energy demands. The optimization of hybrid solar PV panels and pumped hydro energy supply systems plays a pivotal role in utilizing natural resources effectively. This initiative not only benefits humanity but also fosters environmental sustainability. The study investigated the design optimization of these hybrid systems, focusing on understanding solar radiation patterns, identifying geographical influences on solar radiation, formulating a mathematical model for system optimization, and determining the optimal configuration of PV panels and pumped hydro storage. Through a comparative analysis approach and eight weeks of data collection, the study addressed key research questions related to solar radiation patterns and optimal system design. The findings highlighted regions with heightened solar radiation levels, showcasing substantial potential for power generation and emphasizing the system's efficiency. Optimizing system design significantly boosted power generation, promoted renewable energy utilization, and enhanced energy storage capacity. The study underscored the benefits of optimizing hybrid solar PV panels and pumped hydro energy supply systems for sustainable energy usage. Optimizing the design of solar PV panels and pumped hydro energy supply systems as examined across diverse climatic conditions in a developing country, not only enhances power generation but also improves the integration of renewable energy sources and boosts energy storage capacities, particularly beneficial for less economically prosperous regions. Additionally, the study provides valuable insights for advancing energy research in economically viable areas. Recommendations included conducting site-specific assessments, utilizing advanced modeling tools, implementing regular maintenance protocols, and enhancing communication among system components.
Cosmetic shop management system project report.pdfKamal Acharya
Buying new cosmetic products is difficult. It can even be scary for those who have sensitive skin and are prone to skin trouble. The information needed to alleviate this problem is on the back of each product, but it's thought to interpret those ingredient lists unless you have a background in chemistry.
Instead of buying and hoping for the best, we can use data science to help us predict which products may be good fits for us. It includes various function programs to do the above mentioned tasks.
Data file handling has been effectively used in the program.
The automated cosmetic shop management system should deal with the automation of general workflow and administration process of the shop. The main processes of the system focus on customer's request where the system is able to search the most appropriate products and deliver it to the customers. It should help the employees to quickly identify the list of cosmetic product that have reached the minimum quantity and also keep a track of expired date for each cosmetic product. It should help the employees to find the rack number in which the product is placed.It is also Faster and more efficient way.
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Welcome to WIPAC Monthly the magazine brought to you by the LinkedIn Group Water Industry Process Automation & Control.
In this month's edition, along with this month's industry news to celebrate the 13 years since the group was created we have articles including
A case study of the used of Advanced Process Control at the Wastewater Treatment works at Lleida in Spain
A look back on an article on smart wastewater networks in order to see how the industry has measured up in the interim around the adoption of Digital Transformation in the Water Industry.
Saudi Arabia stands as a titan in the global energy landscape, renowned for its abundant oil and gas resources. It's the largest exporter of petroleum and holds some of the world's most significant reserves. Let's delve into the top 10 oil and gas projects shaping Saudi Arabia's energy future in 2024.
Hierarchical Digital Twin of a Naval Power SystemKerry Sado
A hierarchical digital twin of a Naval DC power system has been developed and experimentally verified. Similar to other state-of-the-art digital twins, this technology creates a digital replica of the physical system executed in real-time or faster, which can modify hardware controls. However, its advantage stems from distributing computational efforts by utilizing a hierarchical structure composed of lower-level digital twin blocks and a higher-level system digital twin. Each digital twin block is associated with a physical subsystem of the hardware and communicates with a singular system digital twin, which creates a system-level response. By extracting information from each level of the hierarchy, power system controls of the hardware were reconfigured autonomously. This hierarchical digital twin development offers several advantages over other digital twins, particularly in the field of naval power systems. The hierarchical structure allows for greater computational efficiency and scalability while the ability to autonomously reconfigure hardware controls offers increased flexibility and responsiveness. The hierarchical decomposition and models utilized were well aligned with the physical twin, as indicated by the maximum deviations between the developed digital twin hierarchy and the hardware.
2. PRODUCT ENGINEERING (FOSSIL BOILERS)
IMPROVEMENTS DONE IN BOILER LAYOUTS
• REDUCTIONOF BOILERCOLUMNS IN 500 MW CONTRACTS. 53 COLUMNS PROVIDEDIN
RAMAGUNDAMUNIT7, REDUCED TO 43 Nos IN KAHALGOAN & TO 39 Nos IN BELLARY.
• INTEGRATION OF LIFT STRUCTUREWITH BOILER STRUCTUREAS AGAINST STAND-ALONE
STRUCTUREEARLIER.
• WIDER SPACING OF BOILER MAINCOLUMNS (From Boiler centre line ) FOR BETTER ACCESS
SPACE.
• FIRST 250 MW DESIGNED WITH 7 BOWL MILLS WITH REARMILL ARRANGEMENT & WITH
UNSYMMETRIC ARRANGEMENT OFMILLS{ 4 NOS ONLEFT SIDE & 3 NOS ONRIGHT SIDE
WITH A CENTREGAP} FOR KORBA 2x 250 MW
10/4/2017 boben2005@gmail.com
3. PRODUCT ENGINEERING (FOSSIL BOILERS IMPROVEMENTS
DONE IN BOILER LAYOUTS
• RETROFIT OF ECONOMISER COIL HANDLING
• IMPROVEMENT OF BRACING PATTERN ON THE REAR SIDE OF THE BOILER
FOR ECONOMISER COIL HANDLING.
• RELOCATION OF GATES IN THE ECONOMISER BYPASS DUCTS FOR
ECONOMISER COIL HANDLING .
• OPTIMIZATION OF DAMPERS IN THE AIR DUCTS TO AIR PREHEATERS.
• LAYOUT FOR THE TWIN REHEATER HEADERS FOR 500 MW NEW CONTRACTS.
10/4/2017 boben2005@gmail.com
4. REGULAR ARRANGEMENT OF BOILER COLUMNS FOR
RAMAGUNDAM 500 MW UNIT 7 (53 NO OF COLUMNS)
10/4/2017 boben2005@gmail.com
5. OPTIMIZED BOILER COLUMN LOCATION FOR KAHALGAON 500 MW
(43 NOS OF COLUMNS)
10/4/2017 boben2005@gmail.com
6. OPTIMIZED ARRANGEMENT OF BOILER COLUMNS FOR
BELLARY 500 MW UNIT (39 NO OF COLUMNS)
10/4/2017 boben2005@gmail.com
9. SUMMARY OF BOILER COLUMN SPACING IN CURRENT 500
MW UNITS
CONTRACT NAME NO OF
COLUMNS
SPACING OF BOILER MAIN
COLUMNS FROM BOILER CENTRE
LINE
RAMAGUNDAM 500
MW UNIT 7
53 NOS 13 M
KAHALGOAN 500 MW 43 NOS 15.5 M
BELLARY 500 MW 39 NOS 14.5 M
10/4/2017 boben2005@gmail.com
10. BELLARY TPS 1 x 500 MW BOILER
SALIENT FEATURES OF BOILER LAYOUT
• SIDE MILL LAYOUT.
• 7 NUMBERS OF XRP 1003 BOWL MILLS
• WIDER MAIN BOILER COLUMN PITCHING AT 29 MTRS.
• TRISECTOR REGEN AIRHEATER 31.5 VIM(T) 2000 - USED IN THIS
CONTRACT
10/4/2017 boben2005@gmail.com
11. • LARGE MAN HOLE DOOR(1.8 x 0.9 Mt) ENVISAGED IN PENT HOUSE
FOR MAINTANECE.
• CL ELEVATION OF RING HEADER = 10.25 Mtrs.
• CL ELEVATION OF DRUM = 70.608 Mtrs.
• BOTTOM OF THE CEILING GIRDER = 78.550 Mts.
BELLARY TPS 1 x 500 MW BOILER
SALIENT FEATURES OF BOILER LAYOUT
10/4/2017 boben2005@gmail.com
15. BELLARY TPS 1 x 500 MW BOILER
SALIENT FEATURES OF BOILER LAYOUT
KEY PLAN OF BOILER AND ID SYSTEM
10/4/2017 boben2005@gmail.com
16. BELLARY TPS 1 x 500 MW BOILER
SALIENT FEATURES OF BOILER LAYOUT
LAYOUT OF ID SYSTEM - ELEVATION
10/4/2017 boben2005@gmail.com
17. BELLARY TPS 1 x 500 MW BOILER
SALIENT FEATURES OF BOILER LAYOUT
LAYOUT OF ID SYSTEM - PLAN
10/4/2017 boben2005@gmail.com
18. SALIENT FEATURES OF KORBA 2 x 250 MW UNITS
1. FIRST 250 MW UNIT WITH SEVEN BOWL MILLS WITH
REAR MILL LAYOUT.
1. MILLS LOCATED UNSYMMETRICALLY ABOUT THE
BOILER AXIS : 4 NOS ON THE LEFT SIDE & 3 NOS ON THE
RIGHT SIDE WITH AN EMPTY BAY AT THE CENTRE
10/4/2017 boben2005@gmail.com