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Experimental Validation for the dp/dt Assumption of Heat Exchangers in Vapor Compression Refrigeration Cycles

机译:蒸汽压缩制冷循环中热交换器的dp / dt假设的实验验证

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Calculation of time derivatives of refrigerant pressures is important for dynamic simulation of heat exchangers in vapor compression cycles, i.e., typically the condenser and evaporator. This technical brief presents an experimental study on the pressure transient for the condenser and evaporator of a screw chiller with R134a, along with the analysis for the associated time derivatives. The experimental results from eight test cases suggest that the time derivatives of the condenser and evaporator pressures at their inlet are extremely close to those at the respective outlets. This observation can thus justify the key assumption of equal time derivatives of pressures in the dynamic modeling of heat exchangers, which in consequence improves the numerical efficiency and/or convergence, especially for large and complex thermal-fluid systems.
机译:制冷剂压力的时间导数的计算对于蒸汽压缩循环中的换热器,即通常是冷凝器和蒸发器的动态仿真很重要。本技术简介介绍了使用R134a的螺杆式制冷机的冷凝器和蒸发器的压力瞬变的实验研究,以及相关时间导数的分析。八个测试案例的实验结果表明,冷凝器和蒸发器压力在其入口的时间导数与各自出口的时间导数非常接近。因此,该观察结果可以证明在热交换器的动态建模中采用等时导数压力的关键假设是正确的,因此可以提高数值效率和/或收敛性,尤其是对于大型和复杂的热流体系统。

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