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首页> 外文期刊>International Journal of Refrigeration >Assessment on the use of common correlations to predict the mass-flow rate of carbon dioxide through capillary tubes in transcritical cycles
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Assessment on the use of common correlations to predict the mass-flow rate of carbon dioxide through capillary tubes in transcritical cycles

机译:评估使用公共相关性预测跨临界循环中通过毛细管的二氧化碳质量流量

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摘要

Capillary tubes are extensively used in small refrigeration and air-conditioning systems with synthetic refrigerants and hydrocarbons. For CO{sub}2 transcritical applications, it has been shown that the capillary tube demonstrates an intrinsic capability of adjusting the upper pressure close to the optimal-value in response to changes of gas-cooler heat sink temperature. The CO{sub}2 flow rate through four capillary tubes of various lengths, diameters and materials was measured in a test rig. Each capillary tube was tested with inlet pressure varying from 7.5 MPa to 11 MPa and inlet temperature from 20℃ to 40℃. Outlet pressure varied from 1.5 MPa to 3 MPa. The experimental results were validated against different numerical and approximate analytical solutions of the capillary tube equations. These models give good predictions only if the friction factor of the capillary tube is calculated accounting for its dependence on the tube roughness.
机译:毛细管已广泛用于具有合成制冷剂和碳氢化合物的小型制冷和空调系统。对于CO {sub} 2跨临界应用,已表明,毛细管具有响应气体冷却器散热器温度变化而将上限压力调整到接近最佳值的固有能力。在测试装置中测量通过四个长度,直径和材料不同的毛细管的CO 2流量。每个毛细管的入口压力在7.5 MPa至11 MPa之间变化,入口温度在20℃至40℃之间进行测试。出口压力在1.5 MPa至3 MPa之间变化。针对毛细管方程的不同数值和近似解析解验证了实验结果。仅当考虑到毛细管对管粗糙度的依赖性而计算出毛细管的摩擦系数时,这些模型才能给出良好的预测。

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