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Mathematical Modeling and Performance Analysis of Seawater Heat Exchanger in Closed-Loop Seawater-Source Heat Pump System

机译:闭环海水源热泵系统海水换热器的数学建模与性能分析

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摘要

The seawater source heat pump (SWHP) utilizes low-grade energy from seawater to satisfy heating/cooling requirements of coastal buildings. Compared with the open-loop SWHP system, the closed-loop system is more stable and reliable when used in cold regions because the seawater heat exchanger can mitigate icing and corrosion problems. This study established mathematical modeling for the seawater heat exchanger, which was validated by the experimental results, to estimate the heat transfer performance. The thermal performance of the seawater heat exchanger under different operating conditions was predicted, and the effects of several key parameters on thermal resistance were analyzed. The results revealed that the pipe wall thermal resistance of the original heat exchanger was the most important factor limiting the heat transfer. Hence, a cost analysis of the heat exchangers with different pipe materials was conducted, and the steel pipe with anticorrosive coating was proven to be optimal in reducing pipe wall thermal resistance and economy. The findings are useful in designing and optimizing the seawater heat exchanger and promoting the application of ocean thermal energy.
机译:海水源热泵(SWHP)利用海水中的低级能量来满足沿海建筑的加热/冷却要求。与开环SWHP系统相比,闭环系统在冷地区使用时更稳定可靠,因为海水热交换器可以减轻糖霜和腐蚀问题。本研究建立了海水换热器的数学建模,该换热器被实验结果验证,以估计传热性能。预测了海水热交换器在不同操作条件下的热性能,分析了几个关键参数对热阻的影响。结果表明,原始热交换器的管壁热阻是限制热传递的最重要因素。因此,进行了具有不同管材的热交换器的成本分析,并经证明具有防腐蚀涂层的钢管在减少管壁热阻和经济中最佳。该研究结果可用于设计和优化海水热交换器,促进海洋热能的应用。

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