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Robust optimization of an organic Rankine cycle for geothermal application

机译:地热应用有机朗肯循环的鲁棒优化

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A robust design optimization (RDO) methodology for Organic Rankine Cycles (ORC) is presented, allowing to ensure an improved, stable performance over a large range of operating conditions. In contrast with classical ORC design methods, whereby all modeling hypotheses and operating conditions are considered as perfectly known, i.e. deterministic, the RDO approach allows to account for the manifold sources of uncertainty affecting the system. For geothermal ORC, the latter are related on one hand with the ill-known properties of the geothermal source and, on the other, with intrinsically random parameters, such as the condensation temperature. The proposed RDO approach selects values of the design parameters that maximize the expected (average) performance while minimizing its variance under uncertain nominal operating conditions. The optimal design delivered by the proposed strategy outperforms the one derived from the standard deterministic approach: specifically, the expected power output is increased by 1.5%, while its standard deviation is reduced by 8.5% and the surface of the heat exchangers by 34%. (C) 2020 Elsevier Ltd. All rights reserved.
机译:提出了一种鲁棒的设计优化(RDO)用于有机rankine循环(ORC)的方法,允许确保在大范围的操作条件下改善,稳定的性能。与古典兽人设计方法相比,在那里,所有建模假设和操作条件被认为是完全已知的,即确定性,RDO方法允许考虑影响系统的不确定性的歧管源。对于地热兽人,后者一方面与地热源的不良特性有关,另一方面与本质上随机参数,例如冷凝温度。所提出的RDO方法选择设计参数的值,最大化预期的(平均)性能,同时最小化不确定的标称操作条件下的差异。由所提出的策略提供的最佳设计优于来自标准确定方法的源于:具体来说,预期的功率输出增加了1.5%,而其标准偏差降低了8.5%,热交换器表面减少了34%。 (c)2020 elestvier有限公司保留所有权利。

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