Intelligent collaborative attainment of structure configuration and fluid selection for the Organic Rankine cycle
Author:
Funder
National Key Research and Development Plan
Publisher
Elsevier BV
Subject
Management, Monitoring, Policy and Law,Mechanical Engineering,General Energy,Building and Construction
Reference42 articles.
1. Organic rankine cycle power systems: from the concept to current technology, applications, and an outlook to the future;Colonna;J Eng Gas Turbines Power,2015
2. Description and evaluation of the new 1000 kWel organic rankine cycle process integrated in the biomass CHP plant in Lienz Austria;Obernberger;Euroheat Power,2002
3. Theoretical analysis and comparison of rankine cycle and different organic rankine cycles as waste heat recovery system for a large gaseous fuel internal combustion engine;Shu;Appl Therm Eng,2016
4. Analysis of zeotropic mixtures used in low-temperature solar Rankine cycles for power generation;Wang;Sol Energy,2009
5. Thermodynamic analysis and optimization of a novel dual-evaporator system powered by electrical and solar energy sources;Yari;Energy,2013
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