首页> 外文会议>International refrigeration and air conditioning conference at purdue >MODELING AND VALIDATION OF A MULTI-EVAPORATOR VAPOR COMPRESSION CYCLE SUBJECT TO NON-UNIFORM LOADING IN TRANSPORT REFRIGERATION APPLICATIONS
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MODELING AND VALIDATION OF A MULTI-EVAPORATOR VAPOR COMPRESSION CYCLE SUBJECT TO NON-UNIFORM LOADING IN TRANSPORT REFRIGERATION APPLICATIONS

机译:多蒸发器蒸汽压缩循环的建模与验证在运输制冷应用中的不均匀装载

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This paper describes a multi-evaporator vapor compression model capable of simulating the dynamic behaviour of transport refrigeration systems. A discrete multi-zone control volume approach is utilised for modelling the condenser and evaporators. All other major refrigeration components including compressor, expansion valves, receiver, pressure-regulating valves are modeled using time-dependent differential equations. The model is implemented using MATLAB. Component models are validated individually and are then combined to give an overall system model. Overall model predictions are further validated using experimental data obtained from a purpose-built multi-evaporator test rig for transient and non-uniform operating conditions.
机译:本文描述了一种能够模拟运输制冷系统动态行为的多蒸发器蒸汽压缩模型。离散多区控制体积方法用于建模冷凝器和蒸发器。包括压缩机,膨胀阀,接收器,压力调节阀的所有其他主要制冷部件采用时间依赖的微分方程建模。该模型使用MATLAB实现。组件模型是单独验证的,然后组合以提供整体系统模型。使用从专用的多蒸发器试验台获得的实验数据进一步验证整体模型预测,用于瞬态和不均匀的操作条件。

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