首页> 外文会议>IIR International Conference on Thermophysical Properties and Transfer Processes of Refrigerants >DEVELOPMENT OF A CONTINUOUS EMPIRICAL CORRELATION FOR NON-ADIABATIC CAPILLARY TUBE USING R-600A AND R-134A AS REFRIGERANTS
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DEVELOPMENT OF A CONTINUOUS EMPIRICAL CORRELATION FOR NON-ADIABATIC CAPILLARY TUBE USING R-600A AND R-134A AS REFRIGERANTS

机译:使用R-600A和R-134A作为制冷剂的非绝热毛细管的连续经验相关性

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A capillary tube-suction line heat exchanger (CT-SLHX) is widely used as a refrigerant expansion device in small sized refrigeration and air-conditioning systems, which enhances the refrigeration capacity and ensures that a superheated vapor of refrigerant enters the compressor. To calculate mass flow rate in a capillary tube, it is necessary to develop an accurate non-adiabatic capillary tube model. In the present study, conservation laws in a one dimension was used to generate reference data. An empirical model which is continuous at saturated liquid point is developed for both subcooled and two-phase capillary tube inlet conditions with introduction of new dimensionless π parameters. Wide ranges of capillary tube inner diameter, capillary total length, capillary inlet quality or subcooling temperature, heat exchanger length, suction line diameter, capillary inlet pressure, evaporator inlet temperature, superheating temperature and refrigerant type are used in the process of data generation. The new model shows a good agreement with experimental data.
机译:毛细管抽吸管线热交换器(CT-SLHX)广泛用作小型制冷和空调系统中的制冷剂膨胀装置,其增强了制冷能力,并确保制冷剂的过热蒸汽进入压缩机。为了计算毛细管中的质量流速,有必要开发精确的非绝热毛细管模型。在本研究中,使用一个维度的保护法用于生成参考数据。的经验模型是在饱和液体连续点被用于与引入新的无量纲参数π既过冷和两相的毛细管入口条件显影。毛细管内径宽范围,毛细管总长度,毛细管入口质量或过冷温度,热交换器长度,吸力管线直径,毛细管入口压力,蒸发器入口温度,超热温度和制冷剂型在数据生成过程中使用。新模型与实验数据显示了良好的一致性。

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