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Simulation model for complex refrigeration systems based on two-phase fluid network - Part I: Model development

机译:基于两相流网络的复杂制冷系统仿真模型-第一部分:模型开发

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摘要

Some complex refrigeration and heat pump systems with several condensers and evaporators have been developed for different kinds of application. Traditional simulation models were developed for systems in certain operating modes and they failed in modeling the complex refrigeration systems with uncertainties of heat exchangers function and refrigerant flowing direction. In order to predict the performance of complex refrigeration systems, a simulation model is presented based on the two-phase fluid network. The model is consisted of distributed-parameter model of heat exchangers and connecting tubes, map-based model of inverter compressor and electronic expansion valve (EEV). Based on the characteristic of refrigeration system and fluid network, the three conservation equations, i.e. energy, momentum and mass equations, are solved iteratively. This model can deal with the uncertainty of refrigerant flow direction by separating the solving process of the components and the fluid network model, and therefore can simulate different kinds of complex refrigeration systems in different operating modes and conditions. The model is validated by the experimental data of an inverter air conditioner in heating/cooling operating modes and it shows the error of the model is mainly determined by the error of submodels of components in calculating heat transfer and pressure loss. The model is applied for performance analysis of three kinds of complex refrigeration systems in the accompanying article [Shi W.X., Shao, S.Q., Li, X.T., Yan, Q.S., 2008. Simulation model for complex heat pump systems based on two-phase fluid network: part II - model applications, International Journal of Refrigeration 31 (3), 500-509.].
机译:已经开发出一些带有多个冷凝器和蒸发器的复杂的制冷和热泵系统,用于不同类型的应用。传统的仿真模型是针对某些操作模式下的系统开发的,但是它们无法对复杂的制冷系统进行建模,而该复杂的制冷系统具有热交换器功能和制冷剂流动方向的不确定性。为了预测复杂制冷系统的性能,提出了基于两相流体网络的仿真模型。该模型由换热器和连接管的分布参数模型,变频压缩机和电子膨胀阀(EEV)的基于图的模型组成。根据制冷系统和流体网络的特点,迭代求解了三个守恒方程,即能量,动量和质量方程。该模型可以通过分离零件的求解过程和流体网络模型来处理制冷剂流向的不确定性,因此可以在不同的运行模式和条件下模拟各种复杂的制冷系统。该模型通过变频空调在供热/制冷运行模式下的实验数据进行验证,表明该模型的误差主要由计算传热和压力损失的组件子模型的误差决定。该模型在所附文章[Shi WX,Shao,SQ,Li,XT,Yan,QS,2008中被应用于三种复杂制冷系统的性能分析。基于两相流体网络的复杂热泵系统仿真模型:第二部分-模型应用,国际制冷杂志31(3),500-509。]。

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