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Modelica-based modelling and simulation of dry-expansion shell-and-tube evaporators working with alternative refrigerant mixtures

机译:基于Modelica的干膨胀管壳式蒸发器与替代制冷剂混合物的建模和仿真

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摘要

A new methodology of intermediate complexity level is developed to model the dry-expansion shell and U-tube evaporators. The model has a reasonable level of accuracy and uses fundamental physical principles in a distributed parameters approach capable of detecting the complex circuit of the shell-side flow. This level of details is necessary to simulate accurately the zeotropic refrigerant mixtures evaporation. Using Modelica language gives a heat exchanger model with a generic flow arrangement. The model is experimentally validated using a standard shell-and-tube evaporator working with HFC-134a. Three distinct working fluids, pure HFC-134a, R-407C, and a specially selected glide matching refrigerant mixture are simulated in the same heat source duty with different shell-and-tube configurations. Three different gas superheat values are also taken into account. The total amount of irreversibility is considered by calculating the total exergy losses. It is concluded that the effect of the temperature profile of any refrigerant mixture can be substantial on the relative performance of a particular heat exchanger configuration compared to counter-flow configuration.
机译:开发了一种中等复杂程度的新方法,以对干膨胀壳和U型管蒸发器进行建模。该模型具有合理的精度水平,并在能够检测壳侧流的复杂回路的分布式参数方法中使用了基本的物理原理。要精确模拟共沸制冷剂混合物的蒸发,此细节级别是必需的。使用Modelica语言可提供具有通用流量安排的热交换器模型。使用与HFC-134a配合使用的标准管壳式蒸发器,对该模型进行了实验验证。在相同的热源负荷下,采用不同的壳管结构,模拟了三种不同的工作流体,即纯HFC-134a,R-407C和经过特殊选择的滑行匹配制冷剂混合物。还考虑了三个不同的气体过热值。通过计算总火用损失来考虑不可逆的总量。结论是,与逆流构造相比,任何制冷剂混合物的温度曲线对特定热交换器构造的相对性能的影响都可能很大。

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