Sensitivity analysis on heat pump - mechanical vapor recompression desalination system by recovering waste heat of offshore power converter station

C. Y. Shi, X W Hu, S M Dong, X Y Fu, T. Liu, M S Jin
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Abstract

Offshore wind power converter stations produce massive low-temperature waste heat, which can hardly be used constrained by their offshore location. Therefore, the recovery of the waste heat has been raising widespread concern. Meanwhile, a large amount of fresh water is needed for its cooling system. So, a novel system combining high temperature heat pump and a mechanical vapor recompression system (HP-MVR) was proposed, and sensitivity analysis was performed to optimize it. The heat pump was used to absorb the waste heat and to produce high temperature water. The mechanical vapor recompression system was adopted to produce fresh water and to recover the condensation heat from the steam. In order to determine the impact parameters on the two crucial performance indicators of freshwater production and unit energy consumption, this article introduces a sensitivity analysis method, focusing on analyzing the sensitivity of the three operating parameters of heat pump condensation temperature, saturated water vapor inlet temperature entering the compressor, and freshwater condensation temperature to these two performance indicators. The results show that the sensitivity coefficients of heat pump condensation temperature, saturated water vapor inlet temperature entering the compressor, and freshwater condensation temperature are 1.13, -0.26, and 1.56. So, the freshwater condensation temperature has the most significant effect on freshwater output. Their sensitivity coefficients to unit energy consumption are 1.02, 1.41, and -0.64. The saturated water vapor inlet temperature entering the compressor has the most significant impact on the required power consumption per unit of freshwater. It will give some guidance for the application of low-temperature waste heat in seawater desalination and the reduction of operating costs.
通过回收海上换流站废热对热泵-机械蒸汽再压缩海水淡化系统的敏感性分析
海上风力发电换流站会产生大量低温余热,但受其海上位置的限制,这些余热很难得到利用。因此,余热回收问题一直受到广泛关注。同时,其冷却系统需要大量淡水。因此,我们提出了一种结合高温热泵和机械蒸汽再压缩系统(HP-MVR)的新型系统,并对其进行了敏感性分析和优化。热泵用于吸收废热并产生高温水。机械蒸汽再压缩系统用于生产淡水和回收蒸汽的冷凝热。为了确定影响参数对淡水产量和单位能耗这两项关键性能指标的影响,本文介绍了一种敏感性分析方法,重点分析了热泵冷凝温度、进入压缩机的饱和水蒸汽入口温度和淡水冷凝温度这三个运行参数对这两项性能指标的敏感性。结果表明,热泵冷凝温度、进入压缩机的饱和水蒸气入口温度和淡水冷凝温度的灵敏度系数分别为 1.13、-0.26 和 1.56。因此,淡水冷凝温度对淡水输出量的影响最大。它们对单位能耗的敏感系数分别为 1.02、1.41 和 -0.64。进入压缩机的饱和水蒸气入口温度对单位淡水所需能耗的影响最大。这将为低温余热在海水淡化中的应用和降低运行成本提供一些指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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