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Three-zone system simulation model of a multiple-chiller plant

机译:多冷机厂的三区系统仿真模型

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This paper presents a system simulation model of an oil-injected screw chiller. The refrigerant (shell and tube) heat exchangers are modeled, using a three-zone approach, to study the effects of the operational parameters on the fractional area allocated to each phase within the heat exchangers. All major components of the system such as, an oil-injected screw compressor, a shell and tube condenser, a flooded evaporator and a high side-float valve, are modeled in a modular format. The predicted results are validated with experimental data collected from a multiple-chiller plant at a process industry. The results show that the part-load ratio and the temperature of glycol-water entering the evaporator affect the system performance significantly and have strong influence on the fractional areas allocated to each phase within the condenser.
机译:本文提出了喷油式螺杆冷却器的系统仿真模型。使用三区域方法对制冷剂(壳管式)热交换器建模,以研究运行参数对分配给热交换器内各相的分数面积的影响。系统的所有主要组件,例如注油螺杆压缩机,管壳式冷凝器,溢流式蒸发器和高侧浮阀,均以模块化形式建模。预测结果通过从加工业的多台冷却器工厂收集的实验数据进行验证。结果表明,进入蒸发器的乙二醇水的分担率和温度对系统性能有显着影响,并且对分配给冷凝器内各相的分馏面积有很大影响。

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