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Experimental Investigation and CFD Analysis of Heat Transfer in Single Phase Subcooler of a Small Scale Waste Heat Recovery ORC

机译:小规模废热回收兽人单相脱气器中传热的实验研究和CFD分析

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In the present work, a detailed investigation of the single phase heat transfer mechanism in a novel subcooler of an experimental small scale waste heat recovery Organic Rankine Cycle (ORC) unit is presented. The ORC unit is operating with R134a and is designed to utilize the waste heat from the jacket water of marine diesel auxiliary internal combustion engines (ICEs). The ORC unit produces 3.7 kW_(el) net electrical power at a cycle pressure of 25 bar and an expander inlet temperature of 82 °C. The application of subcooling in such systems is common practice, so as to ensure the cavitation-free operation of the pump. The subcooler is designed to achieve a certain level of subcooling and at the same time minimize the pressure losses on both the refrigerant and the cooling water side. A theoretical CFD model is developed to predict its operation. Based on the experimental results, a new heat transfer correlation is proposed for the single phase heat transfer inside a corrugated tube. The accuracy of the new correlation is compared with existing ones from the literature. Meanwhile, the results of the correlation are validated by the experimental data collected from the respective ORC unit, reducing the theoretical calculations maximum relative error from 2.98% to a 1.88%.
机译:在本作本作中,提出了一种详细研究实验小规模废热回收有机朗克循环(ORC)单元的新型过冷却器中的单相传热机理。 ORC单元使用R134A操作,旨在利用来自海洋柴油辅助内燃机(ICES)的夹克水的废热。 ORC单元在25巴的循环压力下产生3.7kW_(EL)净电功率,并为82°C的膨胀机入口温度。过冷在这种系统中的应用是常见的做法,以确保泵的无空化操作。该子冷却器设计成达到一定水平的过冷,同时最小化制冷剂和冷却水侧的压力损失。制定了理论CFD模型以预测其操作。基于实验结果,提出了一种新的传热相关性,用于瓦楞纸内的单相热传递。将新相关性的准确性与来自文献的现有相关性进行比较。同时,通过从各个兽人单元收集的实验数据验证了相关性的结果,将最大相对误差的理论计算从2.98%降至1.88%。

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