2.60 / 2.62J / 10.392J / 22.40J / 10.390J Fundamentals of Advanced Energy Conversion, Spring 2004
Author(s)
Tester, Jefferson W.; Kazimi, Mujid S.; Shao-Horn, Yang; Ghoniem, Ahmed F.
Download2-60-spring-2004/contents/index.htm (37.37Kb)
Alternative title
Fundamentals of Advanced Energy Conversion
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This course covers fundamentals of thermodynamics, chemistry, flow and transport processes as applied to energy systems. Topics include analysis of energy conversion in thermomechanical, thermochemical, electrochemical, and photoelectric processes in existing and future power and transportation systems, with emphasis on efficiency, environmental impact and performance. Systems utilizing fossil fuels, hydrogen, nuclear and renewable resources, over a range of sizes and scales are discussed. Applications include fuel reforming, hydrogen and synthetic fuel production, fuel cells and batteries, combustion, hybrids, catalysis, supercritical and combined cycles, photovoltaics, etc. The course also deals with different forms of energy storage and transmission, and optimal source utilization and fuel-life cycle analysis.
Date issued
2004-06Other identifiers
2.60-Spring2004
Other identifiers
2.60
2.62J
10.392J
22.40J
10.390J
IMSCP-MD5-34f249fb1c25c4f04216df85a48c9223
Keywords
Thermodynamics, chemistry, flow, transport processes, energy systems, energy conversion in thermomechanical, thermochemical, electrochemical, and photoelectric processes, power and transportation systems, efficiency, environmental impact, performance, fossil fuels, hydrogen resources, nuclear resources, renewable resources, fuel reforming, hydrogen and synthetic fuel production, fuel cells and batteries, combustion, hybrids, catalysis, supercritical and combined cycles, photovoltaics, energy storage and transmission, Optimal source utilization, fuel-life cycle analysis., thermochemical, electrochemical, and photoelectric processes, 2.60, 2.62J, 10.392J, 22.40J, 2.62, 10.392, 22.40
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