Advanced Energy Systems Second Edition

Advanced Energy Systems  Second Edition
Author: Nikolai V. Khartchenko,Vadym M. Kharchenko
Publsiher: CRC Press
Total Pages: 632
Release: 2013-12-20
Genre: Science
ISBN: 9781439886588

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This second edition to a popular first provides a comprehensive, fully updated treatment of advanced conventional power generation and cogeneration plants, as well as alternative energy technologies. Organized into two parts: Conventional Power Generation Technology and Renewable and Emerging Clean Energy Systems, the book covers the fundamentals, analysis, design, and practical aspects of advanced energy systems, thus supplying a strong theoretical background for highly efficient energy conversion. New and enhanced topics include: Large-scale solar thermal electric and photovoltaic (PV) plants Advanced supercritical and ultra-supercritical steam power generation technologies Advanced coal- and gas-fired power plants (PP) with high conversion efficiency and low environmental impact Hybrid/integrated (i.e., fossil fuel + REN) power generation technologies, such as integrated solar combined-cycle (ISCC) Clean energy technologies, including "clean coal," H2 and fuel cell, plus integrated power and cogeneration plants (i.e., conventional PP + fuel cell stacks) Emerging trends, including magnetohydrodynamic (MHD)-generator and controlled thermonuclear fusion reactor technologies with low/zero CO2 emissions Large capacity offshore and on-land wind farms, as well as other renewable (REN) power generation technologies using hydro, geothermal, ocean, and bio energy systems Containing over 50 solved examples, plus problem sets, full figures, appendices, references, and property data, this practical guide to modern energy technologies serves energy engineering students and professionals alike in design calculations of energy systems.

Analysis and Design of Energy Systems

Analysis and Design of Energy Systems
Author: B. K. Hodge,Robert P. Taylor
Publsiher: Unknown
Total Pages: 0
Release: 1999
Genre: Fluid mechanics
ISBN: 132331220X

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Analysis and Design of Energy Systems

Analysis and Design of Energy Systems
Author: Anonim
Publsiher: Unknown
Total Pages: 135
Release: 1989
Genre: Electronic Book
ISBN: OCLC:875391025

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Analysis and Design of Advanced Energy Systems

Analysis and Design of Advanced Energy Systems
Author: American Society of Mechanical Engineers. Winter Annual Meeting
Publsiher: Unknown
Total Pages: 96
Release: 1987
Genre: Power (Mechanics)
ISBN: STANFORD:36105030490812

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Analysis and Design of Advanced Energy Systems

Analysis and Design of Advanced Energy Systems
Author: American Society of Mechanical Engineers. Winter Annual Meeting
Publsiher: Unknown
Total Pages: 124
Release: 1987
Genre: Power (Mechanics)
ISBN: UOM:39076000811559

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Analysis and Design of Advanced Energy Systems

Analysis and Design of Advanced Energy Systems
Author: American Society of Mechanical Engineers. Winter Annual Meeting
Publsiher: Unknown
Total Pages: 96
Release: 1987
Genre: Power (Mechanics)
ISBN: UOM:39076000811534

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Analysis and Design of Energy Systems

Analysis and Design of Energy Systems
Author: American Society of Mechanical Engineers. Winter Meeting
Publsiher: Unknown
Total Pages: 92
Release: 1989
Genre: Technology & Engineering
ISBN: UOM:39015017709877

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Design and Performance Optimization of Renewable Energy Systems

Design and Performance Optimization of Renewable Energy Systems
Author: Mamdouh Assad,Marc A Rosen
Publsiher: Academic Press
Total Pages: 319
Release: 2021-01-12
Genre: Science
ISBN: 9780128232323

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Design and Performance Optimization of Renewable Energy Systems provides an integrated discussion of issues relating to renewable energy performance design and optimization using advanced thermodynamic analysis with modern methods to configure major renewable energy plant configurations (solar, geothermal, wind, hydro, PV). Vectors of performance enhancement reviewed include thermodynamics, heat transfer, exergoeconomics and neural network techniques. Source technologies studied range across geothermal power plants, hydroelectric power, solar power towers, linear concentrating PV, parabolic trough solar collectors, grid-tied hybrid solar PV/Fuel cell for freshwater production, and wind energy systems. Finally, nanofluids in renewable energy systems are reviewed and discussed from the heat transfer enhancement perspective. Reviews the fundamentals of thermodynamics and heat transfer concepts to help engineers overcome design challenges for performance maximization Explores advanced design and operating principles for solar, geothermal and wind energy systems with diagrams and examples Combines detailed mathematical modeling with relevant computational analyses, focusing on novel techniques such as artificial neural network analyses Demonstrates how to maximize overall system performance by achieving synergies in equipment and component efficiency