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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.
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