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首页> 外文期刊>Energy Conversion & Management >Thermo-economic analysis and optimization of combined PERC - ORC - LNG power system for diesel engine waste heat recovery
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Thermo-economic analysis and optimization of combined PERC - ORC - LNG power system for diesel engine waste heat recovery

机译:柴油机余热回收的PERC-ORC-LNG组合电力系统的热经济分析与优化。

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摘要

In order to recover diesel engine exhaust gas waste heat, a new configuration consisting of screw expander based Partial Evaporation Rankine Cycle (PERC) combined with Organic Rankine Cycle (ORC) and Liquefied Natural Gas (LNG) power system is proposed and its performance is investigated from thermo-economic viewpoint. In studied system, a heat exchanger preparing domestic hot water is considered to recover the residual waste heat after PERC evaporator and thermo-economic performance of the system is investigated for 6 various organic fluids in ORC. Also, parametric analysis is performed to assess the effects of PERC evaporation temperature, PERC expander inlet steam quality and ORC condensation temperature on system performance. Finally, multi objective optimization is used to find the favorable performance point of system. LNG and PERC systems have a proper operation respectively from energy and exergoeconomic viewpoints. Also, ORC condenser has the highest total cost rate. System optimization results show that using isopentane fluid leads to the highest net power output and total cost rate respectively equal to 178.6 kW and 19.3 $/h and using toluene fluid leads to the lowest net power output and total cost rate that are respectively equal to 154.7 kw and 17.36 $/h.
机译:为了回收柴油机废气余热,提出了一种新的结构,该结构由基于螺杆膨胀机的部分蒸发朗肯循环(PERC)结合有机朗肯循环(ORC)和液化天然气(LNG)动力系统组成,并对其性能进行了研究。从热经济学角度来看。在研究的系统中,考虑使用制备家用热水的热交换器来回收PERC蒸发器后的残留废热,并针对ORC中的6种各种有机流体对系统的热经济性能进行了研究。同样,执行参数分析以评估PERC蒸发温度,PERC膨胀机入口蒸汽质量和ORC冷凝温度对系统性能的影响。最后,采用多目标优化来找到系统的良好性能点。从能源和人体经济角度来看,LNG和PERC系统分别具有适当的运行。另外,ORC冷凝器的总成本最高。系统优化结果表明,使用异戊烷流体导致最高的净功率输出和总成本率分别等于178.6 kW和19.3 $ / h,而使用甲苯流体导致最低的净功率输出和总成本率分别等于154.7 kW / h千瓦和17.36 $ / h。

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