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Ecological performance optimisation of a solar driven heat engine
O. S. Sogut
*
,
A. Durmayaz
*
Corresponding author for this work
Department of Naval Architecture and Marine Engineering
Energy Institute
Research output
:
Contribution to journal
›
Article
›
peer-review
18
Citations (Scopus)
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Keyphrases
Power Plant
100%
Thermal Efficiency
100%
Solar-driven Heat Engine
100%
Solar-driven
100%
Maximum Power Density
100%
Performance Optimization
100%
Thermal Reservoir
100%
Maximum Power
100%
Density Condition
100%
Ecological Performance
100%
Heat Engine
100%
Performance Analysis
50%
Working Fluid
50%
Ecological Function
50%
Temperature Ratio
50%
Optimal Performance
50%
Heat Transfer Mechanism
50%
Direct Steam Generation
50%
Reservoir Fluid
50%
Rankine Cycle
50%
Reservoir Temperature
50%
Powers of Cycles
50%
Parabolic Trough
50%
Ecological Objective Function
50%
Optimum Design Parameter
50%
Engineering
Heat Engine
100%
Thermal Efficiency
66%
Maximum Power Density
66%
Performance Analysis
33%
Objective Function
33%
Optimum Design
33%
Direct Steam Generation
33%
Solar Driven Rankine Cycle
33%
Reservoir Temperature
33%
Optimal Performance
33%
Parabolic Trough
33%
Rankine Cycle Power Plant
33%
Design Parameter
33%