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A study of transcritical carbon dioxide flow through diabatic capillary tubes

机译:跨临界二氧化碳流过绝热毛细管的研究

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摘要

An experimental and theoretical study of the diabatic flow of carbon dioxide through lateral capillary tube suction line heat exchangers is outlined. The influence of both operating conditions (capillary tube inlet and outlet pressures, capillary tube inlet temperature and suction line inlet temperature) and tube geometry (heat exchanger length and position, suction line diameter and capillary tube length) on the heat and mass flow rates was experimentally evaluated using a purpose-built testing facility. In total, 75 tests were carried out with heat fluxes spanning from 1 to 11 kW m~(-2) and refrigerant mass flow rates ranging from 12 to 26 kgh~(-1). In addition, the mathematical model of Hermes et al. (2008) was adapted to run with carbon dioxide as working fluid. The model was validated against experimental data, and a good agreement between the experimental and calculated mass flow rates was achieved with 85% and 98% of the data points being within ±5% and ±10% error bounds, respectively.
机译:概述了通过侧向毛细管吸水管换热器的二氧化碳绝热流动的实验和理论研究。两种工作条件(毛细管入口和出口压力,毛细管入口温度和吸入管线入口温度)和管道几何形状(热交换器长度和位置,吸入管线直径和毛细管长度)对热量和质量流量的影响均为使用专用测试工具进行实验评估。总共进行了75次测试,热通量范围为1至11 kW m〜(-2),制冷剂质量流量为12​​至26 kgh〜(-1)。此外,爱马仕等人的数学模型。 (2008年)适用于以二氧化碳为工作液运行。该模型已针对实验数据进行了验证,并且在实验质量流与计算质量流率之间取得了良好的一致性,其中85%和98%的数据点分别在±5%和±10%的误差范围内。

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