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Evaluation of gray box thermostatic expansion valve mass flow models

机译:灰盒恒温膨胀阀质量流量模型评价

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摘要

Thermostatic expansion valves (TXVs) are widely used in air-conditioning and commercial refrigeration systems. Accurate predictions of the refrigerant mass flow rate across a refrigeration cycle are desired in many engineering processes and applications such as a computer simulation model, for control purposes, or for fault detection and diagnostics (FDD). Several researchers have developed mass flow models for TXVs. This paper reviews and analyzes four gray-box TXV mass flow models in the literature and evaluates and compares their performance. Three of the models were developed for air-conditioners, but in the current work their applicability to refrigeration system modeling is assessed, with the use of normal and faulted laboratory data from a commercial walk-in cooler and a freezer. Model regression parameters are calculated during the training process with the use of parameter estimation techniques and a training dataset. The models are then used to predict the mass flow rates for several validation data points. Each of the models is found to perform well for the majority of the data points for the freezer, typically with errors below 10%, but application of the models to the cooler's dataset resulted in relatively large errors. The source of the model deviations includes the difficulty associated with the calculation of the TXV diaphragm force and the thermodynamic states of a two-phase refrigerant at the inlet of the valve. The presence of a liquid line receiver, which are common in refrigeration equipment, appears to cause some model deviation. (C) 2018 Elsevier Ltd and IIR. All rights reserved.
机译:恒温膨胀阀(TXV)广泛用于空调和商业制冷系统。在许多工程过程和诸如计算机仿真模型的应用中,需要精确地预测制冷循环的制冷剂质量流量,例如计算机仿真模型,用于控制目的,或用于故障检测和诊断(FDD)。几位研究人员已经为TXVS开发了质量流量模型。本文在文献中评估和分析了四个灰度箱TXV质量流量模型,评估并比较了它们的性能。为空调开发了三种型号,但在目前的工作中,评估了他们对制冷系统建模的适用性,使用来自商业步入式冷却器和冰箱的正常和故障实验室数据。使用参数估计技术和训练数据集在培训过程中计算模型回归参数。然后使用模型来预测几个验证数据点的质量流量。发现每个模型对于冰箱的大多数数据点来表现良好,通常具有低于10%的误差,但是将模型应用于冷却器的数据集导致相对较大的错误。模型偏差的来源包括与在阀的入口处计算TXV隔膜力和两相制冷剂的热力学状态的难题。液体线接收器的存在似乎在制冷设备中常见,似乎引起了一些模型偏差。 (c)2018年Elsevier Ltd和IIR。版权所有。

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