Thermo-economic multi-objective optimization of an innovative Rankine–organic Rankine dual-loop system integrated with a gas engine for higher energy/exergy efficiency and lower payback period
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s10973-021-10753-y.pdf
Reference81 articles.
1. Catalog of CHP technologies. U.S. Environmental Protection Agency, Combined Heat and Power Agency partnership, Washington, DC, United States; 2014.
2. Song J, Gu CW. Performance analysis of a dual-loop organic Rankine cycle (ORC) system with wet steam expansion for engine waste heat recovery. Appl Energy. 2015;156:280–9.
3. Yang F, Cho H, Zhang H, Zhang J. Thermo-economic multi-objective optimization of a dual loop organic Rankine cycle (ORC) for CNG engine waste heat recovery. Appl Energy. 2017;205:1100–18.
4. Yang FB, Zhang HG, Yu ZB, Wang EH, Meng FX, Liu HD, Wang JF. Parametric optimization and heat transfer analysis of a dual loop ORC (organic Rankine cycle) system for CNG engine waste heat recovery. Energy. 2017;118:753–75.
5. Panesar AS. An innovative organic Rankine cycle system for integrated cooling and heat recovery. Appl Energy. 2016;186:396–407.
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