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.
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.
Water scarcity is the lack of fresh water resources to meet the standard water demand. There are two type of water scarcity. One is physical. The other is economic water scarcity.
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Explore the innovative world of trenchless pipe repair with our comprehensive guide, "The Benefits and Techniques of Trenchless Pipe Repair." This document delves into the modern methods of repairing underground pipes without the need for extensive excavation, highlighting the numerous advantages and the latest techniques used in the industry.
Learn about the cost savings, reduced environmental impact, and minimal disruption associated with trenchless technology. Discover detailed explanations of popular techniques such as pipe bursting, cured-in-place pipe (CIPP) lining, and directional drilling. Understand how these methods can be applied to various types of infrastructure, from residential plumbing to large-scale municipal systems.
Ideal for homeowners, contractors, engineers, and anyone interested in modern plumbing solutions, this guide provides valuable insights into why trenchless pipe repair is becoming the preferred choice for pipe rehabilitation. Stay informed about the latest advancements and best practices in the field.
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.
1. EXPERIENCE SUMMARY & CAREER OBJECT
Total Experience: 6 Years EDUCATIONAL & PROFESSIONAL
ENHANCEMENTROLES & RESPONSIBILITIES
PREVIOUS JOB
Company : VRC Construction (I) PVT.LTD.
Designation : QA/QC INSPECTOR (WELDING)
Project : Bharat Oman Refinery Ltd (BORL)
Client : Bharat Petroliam Corporation Ltd (BPCL)
Main Contractor : Engineers India Ltd (E.I.L)
Location : Bina , Madhya Pradesh(M.P) India.
Duration : MARCH-2008 to OCT- 2010
PROFESSIONAL EXPERIENCE
CURRENT JOB
Company : CHINA STATE CONSTRUCTION ENGINEERING CO.
Designation : QC.INSPECTOR (WELDING & PAINTING)
Project : MIDFIELD TERMINAL BUILDING
(Abu Dhabi International Airport Project)
Client
Location
: TAV-CCC-ARABTECH (JOINT VENCTURE)
: JABEL ALI,ABU DHABI (DUBAI)U.A.E.
Period : 10 NOV -2015 to TILL DATE
PREVIOUS JOB
Company : ESSAR PROJECT INDIA LIMITED.
Designation : RCM
Project : M.B.LAL.PROJECT
Client
Location
: INDIAN OIL CORPORATION LIMITED.(I.O.C.L)
: AGRA TERMINAL,ETMADPUR ,AGRA(U.P)
Period : 01 April -2015 to 01 NOV-2015.
PREVIOUS JOB
Company : Arabian Bemco Contracting Company Ltd.
Designation : QA/ QC. Piping Inspector
Project : RIYADH PP-12 Combined Cycle Power Project
Client
Location
: Saudi Electrical Company (SEC)
: Dhurma .Riyadh, Saudi Arabia.
Period : 17th
Jan 2014 to 20 March-2015.
job Responsibilities & Roles
1. Conduct inspection of ongoing installations of structural steel members in the
site and factory as well as ensured that all work is being carried out as per
2. project specification & drawings.
2. Coordinate with Sub-contractor, Main contractor and client representatives for
daily inspections.
3. Internal Inspections for Fit-ups, Weld Visual and witnessing NDT tests and
make sure that site weld joints are meeting to project specification and
code.
4. Perform surveillance inspections at fabrication shop and making quality
violations report and report to QC Manager. Issuing Non-Conformance
Report if necessary.
5. Inspection for Raw material and Storage and Review MTC and ensure that the
materials are meeting to project specification.
6. Review the Qualification of WPS/PQR with respective codes & created all
documents like ITP’s, WPS/PQR, WPQ and stage wise Inspection Reports.
7. Material inspection & Review of mill test certificates with project specification
and code.
8. Visual and dimensional inspection of fabricated items and all related jobs.
9. NDT requirement identification as per project specification and coordinating
with NDT service providers and review of all NDT reports.
10. Ensure the Calibration of welding machine, baking oven, measuring and
monitoring equipments and maintaining the records.
11. Coordination with material and mechanical testing laboratories.
12. Make sure that shelf value of painting materials are meeting to the
requirement.
13. Check storage of painting material are meeting to manufacturer
recommendations and project specifications.
14. Ensure that primer, mid-coat and final coat paint are as per the approved
drawing.
15. Check the pot life and Check induction time of paint mixture is maintaining
as per the manufacturer recommendations.
16. Make sure that weather conditions are meeting with the help of Dew Point
Meter.
17. Check the surface preparation has been carried out according to project
specification and manufacturer recommendation of paint system.
18. Check wet and dry film thickness (WFT & DFT) of Primer, Mid-coat, Final
coat in each and every stage.
19. Check thickness of Intumecement Fire Proofing.
20. Check any kind of defects in painting surface and inform to construction for
further rectification with necessary action.
21. Perform surveillance inspections at factory/shop and making quality
violations report and report to Asst QC Manager. Issuing Non-Conformance
Report if necessary.
22. Supported in carrying out internal audits as directed by the Management
Representative.
23. Material inspection & Review of mill test certificates with project specification
and code.
24. Review of complete QC Dossier.
25. Conducting packing inspection of the finished items as per project
specification.
26. Ensure the Calibration of welding machine, baking oven, measuring and
monitoring equipments and maintaining the records.
27. Coordination with material and mechanical testing laboratories.
28. Implementation of all QA/QC procedures.
29. Report to Fab-Coordinator / Project QA/QC Manager.
30. Implementation of all QA/QC procedures.
31.
Reviewing Incoming materials test certificates of Paint materials, blasting
materials.
3. Ensuring all the machines and equipments are calibrated and in good and safe
working condition.
Preparation and raising the RFI for day to day inspection of surface preparation
and painting.
Checking the DFT and application of painting at each stage like. Primer, mid-
coat, final.
Monitor satisfactory closeout of identified NCR.
Releasing the piping for punch listing and hydro testing.
Inspection of pipes by abrasive blasting for – Surface cleanliness, Surface
roughness, Surface profile and Surface imperfections.
Inspection of application of coating i.e. Wet paint (mixed) viscosity and
temperature & application of epoxy paint.
Online Inspection & testing on coated pipes for Wet film thickness.
Offline testing & inspection on coated pipes for Dry film thickness,
appearance and Continuity.
Looking after Pickling & Passivation of stainless steel piping raw
materials, fabricated spools & other structural items.
Maintaining & monitoring Coating Inspection Reports on daily basis with
reference to different projects in their mutually agreed format
Release of fabricated spools for painting.
Allocation of work load to fitters and welders.
Inspection of piping spools as per drawing.
Inspection of Protecting Coating Materials to make sure the compliance with
Project Specification.
Review of painting specifications, blasting and painting procedures, materials
receipt inspection and verification.
Review the test certificate of Filler Metal and consumable as per WPS.
Witness to the welder qualification test (WQT) and monitoring all parameter as
per WPS (Current, Voltage, Travelling Speed and heat input).
Preparing Welders Performance Records (WPQR) & Welder ID Cards.
Witness to Welder Qualification Guide Bend Test (Side, Root & Face Bend
Test).
Witness to Macro etches Test.
Monitoring Welder performance and discussion with Client (FEDO) for
contractor Production Quality.
Pipe fit up Welding Inspection and Final Inspection for: Stainless Steel A 312-
TP 304L, TP 316 with respect to internal and external alignment, root gap, Bevel
angle, Groove angle as per approved drawing, applicable WPS, Project
Specifications from Client.
Visual Inspection of welding pipe and Structure as per Code requirements.
Inspection of piping spool as per Isometric Drawing.
4. Inspection of piping for Final line checking as per P& ID & Isometric Drawing.
Inspection of Hydro test for pipe as per code, Design Pressure & Test Pressure.
Inspection of Pneumatic test for pipe as per code, Design Pressure & Test
Pressure.
Coordination with various multidisciplinary contractors and their quality control
surveillance.
WELDING INSPECTION
♦ Material Inspection, Consumable Check, Electrode Storage (Size, Type, Condition),
Welding Equipment’s
♦ Inspection before welding: Check Edge/ Weld Preparation as per WPS, correct
preheat applied, Method of Cutting weld Preparation
♦ Inspection during welding: Process type, Check welding parameters, maintain/check
inter pass temperature as per WPS.
♦ Inspection after welding: Visual check, NDT requirements. PWHT(If any), identify
repairs from assessment of visual or NDT reports
♦ Inspection for Repair Welding: Monitor excavation & removal defects; ensure repair
procedure
♦ & NDT Reports.
♦ Witness for Welder & Welding Operator qualification test
♦ Perform and monitor WQT. Identify Welder ID
♦ Witness Mechanical testing (Guided Bend, Macro etch, Fillet Fracture, Nick Break)
♦ Witness of NDT (MT, PT, RT& UT) processes
♦ Monitor RT film interpreting result
♦
PAINTING INSPECTION
♦
♦ Monitor and witness calibration of Equipment’s
♦ Monitor and witness Pickling and Passivation test for Stainless Steel Plates
♦ Monitor and Inspection of Surface preparation after Grit Blasting with Depth Dial
Indicator and Inspection of Dry Film Thickness (DFT) after Painting with Coat Meter
♦
QUALIFICATION/ TRAINING/ COURSES
• CSWIP 3.1
• Certification No : 66284
• Issue Date : 22 JUNE-2012
• Expiration Date : 21 JUNE - 2017
• BGAS. Grade - 2
• Certification No : 78774
• Issue Date : 30 Aug-2013
• Expiration Date : 29 Aug - 2018
• ASNT Level II
• Liquid Penetrant Testing(PT)
• Magnetic Particle Testing(MPT)
• Ultrasonic Testing(UT)
• Radiographic Testing(RT)
5. • PROCESS STRUCTURAL & PIPPING QUALITY CONTROL
•
•
EDUCATIONAL QUALIFICATION
• Diploma In Mechanical Engineering (3 Years)
• Institution : EIILM University of Mechanical Engineers, (2004/2005)
• Higher Secondary Education
• Institution : HMIC With PCM Subjects, U.P. Board 2001/2002
•
TECHNICAL SKILLS
• Knowledge of Code ASME Sec II Part C, Sec V,
• Sec IX
• B31.1-Power piping
• BSEN Standard for structural work.
•
OTHER SKILLS
• Able to communicate in English. Both Oral & Written
• Hard Worker, Quick Learner, Adaptable.
• Self-Motivated.
• Ability to work under pressure at any field.
• Capability to adjust to the working environment.
• Good in team work as well as working individually.
•
COMPENSATION EXPECTATIONS
•
Present
Package
Expected
Package
•
To secure a challenging position with a progressive organization where I can
effectively contribute my skills, abilities and education.
To work in an environment that provides continual intellectual challenge.
To help improve the efficiency, competitiveness and growth of the organization.
Keen to establish a strong career in Quality Assurance & Quality Control of
Structural & Piping Welding
6. • PROCESS STRUCTURAL & PIPPING QUALITY CONTROL
•
•
EDUCATIONAL QUALIFICATION
• Diploma In Mechanical Engineering (3 Years)
• Institution : EIILM University of Mechanical Engineers, (2004/2005)
• Higher Secondary Education
• Institution : HMIC With PCM Subjects, U.P. Board 2001/2002
•
TECHNICAL SKILLS
• Knowledge of Code ASME Sec II Part C, Sec V,
• Sec IX
• B31.1-Power piping
• BSEN Standard for structural work.
•
OTHER SKILLS
• Able to communicate in English. Both Oral & Written
• Hard Worker, Quick Learner, Adaptable.
• Self-Motivated.
• Ability to work under pressure at any field.
• Capability to adjust to the working environment.
• Good in team work as well as working individually.
•
COMPENSATION EXPECTATIONS
•
Present
Package
Expected
Package
•
To secure a challenging position with a progressive organization where I can
effectively contribute my skills, abilities and education.
To work in an environment that provides continual intellectual challenge.
To help improve the efficiency, competitiveness and growth of the organization.
Keen to establish a strong career in Quality Assurance & Quality Control of
Structural & Piping Welding