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Correction of Log Mean Temperature Difference Method and Effectiveness-NTU Relations for Two-phase Heat Transfer with Pressure Drop and Temperature Glide

机译:对数值温差方法的校正与压降和温度滑动两相热传递的关系 - NTU关系

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The Logarithmic Mean Temperature Difference (LMTD) method and the effectiveness-NTU method are the two important methods for design and analysis of heat exchangers. The derivation of these two methods relies on a critical assumption, i.e., the fluid specific heats are constant. Under special operating conditions where one fluid experiences condensation or evaporation at constant temperature, these two methods are still valid. In practice, however, the fluid temperature in heat exchangers will never remain constant during phase change because of pressure drop. Meanwhile, zeotropic refrigerant mixtures exhibit temperature variations even during a constant pressure phase change process. Therefore, both LMTD and effectiveness-NTU methods can introduce appreciable errors when applying to the cases in which refrigerant temperature change is not caused by heat transfer, rather than by pressure drop or temperature glide. This paper proposes modified LMTD method and effectiveness-NTU relations to remove the restriction of constant temperature phase change in the original approaches. The new methods account for the effects of pressure drop and temperature glide on the two-phase heat transfer process and make corresponding corrections based on simplifying assumptions. The new methods are applicable for both parallel-flow and counter-flow configurations, with phase change on one side. Rigorous error analyses indicate that the new approaches can substantially improve the thermal performance prediction for heat exchangers with large pressure drop and temperature glide.
机译:对数平均温差(LMTD)方法和有效性-NTU方法是热交换器设计和分析的两个重要方法。这两种方法的衍生依赖于关键假设,即流体特定的热量是恒定的。在一个流体在恒定温度下经历凝结或蒸发的特殊操作条件下,这两种方法仍然有效。然而,在实践中,由于压降,热交换器中的流体温度在相变期间永远不会保持恒定。同时,即使在恒定压力相变化过程中,鸟类制冷剂混合物也表现出温度变化。因此,LMTD和有效性-NTU方法可以在施加到制冷剂温度变化不是由传热引起的情况下,而不是通过压降或温度滑动时引入明显的误差。本文提出了改进的LMTD方法和有效性-NTU关系,以消除原始方法中恒温相变的限制。新方法占压降和温度滑动对两相传热过程的影响,并基于简化假设进行相应的校正。新方法适用于平行流量和反流配置,一侧相位变化。严格的错误分析表明,新方法可以大大提高具有大压降和温度滑动的热交换器的热性能预测。

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