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首页> 外文期刊>International Journal of Refrigeration >Thermo-economic optimization of an ORC driven heat pump based on small scale turbomachinery and comparison with absorption heat pumps
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Thermo-economic optimization of an ORC driven heat pump based on small scale turbomachinery and comparison with absorption heat pumps

机译:基于小型涡轮机的兽人驱动热泵热经济优化及吸收热泵比较

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The current paper presents the thermo-economic optimization and comparison, through a multi-objective algorithm, between HP-ORC and the competing single effect absorption heat pump (SEAHP), with the aim to find the best trade-off between investment cost and exergetic efficiency. Heat exchanger (HX) cost, which is the dominant cost driver, is predicted on catalogue-based correlations as a function of heat exchanger areas. The dominating HP-ORC working fluid is R-245fa for all operating conditions, except for hot source temperatures of 180 degrees C, where R-600a is a better candidate. The resulting Pareto frontiers suggest that, for hot source temperatures up to 120 degrees C the SEAHP and HP-ORC are highly competitive by yielding similar thermo-economic tradeoffs. For higher hot source temperatures, however, the HP-ORC outperforms the SEAHP both in terms of performance and cost while providing a significantly wider performance range (0.3
机译:目前纸张通过多目标算法,HP-ORC和竞争单一效果吸收热泵(SEAHP)之间的多目标算法提出了热经济优化和比较,目的是在投资成本和exergetic之间找到最佳权衡效率。作为优势成本驱动器的热交换器(HX)成本预测到基于目录的相关性,作为热交换器区域的函数。对于所有操作条件,主导HP-ORC工作流体是R-245FA,除了180摄氏度的热源温度外,R-600A是更好的候选者。由此产生的帕累托前沿表明,对于高达120摄氏度的热源温度,SeaHP和HP-ORC通过产生类似的热经济权衡,对海洋和HP-ORC具有竞争力。然而,对于较高的热源温度,HP-ORC在性能和成本方面都优于海幼,同时提供了一个明显更广泛的性能范围(0.3

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