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首页> 外文期刊>International Journal of Refrigeration >Experimental study of the heat transfer in R744/R600a mixtures below the R744 triple point temperature
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Experimental study of the heat transfer in R744/R600a mixtures below the R744 triple point temperature

机译:R744 / R600A混合物中热传递的实验研究R744三针温度下的混合物

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摘要

Carbon dioxide, a natural refrigerant, is attracting attention as a direct solution to the legal restrictions on hydrofluorocarbon (HFC) refrigerants. The use of carbon dioxide as a refrigerant is limited by the triple point temperature of -56.5 degrees C. However, used along with a carrier fluid, carbon dioxide can provide refrigeration to temperatures lower than the triple point. A blend composed of carbon dioxide (R744) and isobutane (R600a) is experimentally studied. An experimental setup was designed, built, and verified in order to obtain the sublimation heat transfer coefficients of R744/R600a mixtures at temperatures lower than -56.5 degrees C. The test section comprises a horizontal copper tube with an inner diameter of 10 mm and length of 1 m. The tube is electrically heated by a copper wire heater wrapped uniformly around the tube. The tests were conducted with a novel refrigerant blend at heat fluxes from 3630 W m(-2) to 8480 W m(-2). The heat transfer coefficient decreases with increasing heat flux. Furthermore, a heat transfer coefficient calculation correlation has been developed. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:二氧化碳是一种天然制冷剂,作为直接解决氢氟烃(HFC)制冷剂的法律限制的直接解决方案。作为制冷剂的二氧化碳的使用受到-56.5℃的三倍温度的限制。然而,与载体流体一起使用的二氧化碳可以提供低于三点的温度的冷藏。通过实验研究由二氧化碳(R744)和异丁烷(R600A)组成的混合物。设计,构建和验证了实验设置,以便在低于-56.5℃的温度下获得R744 / R600A混合物的升华传热系数。试验部分包括水平铜管,内径为10mm和长度1米。管通过围绕管均匀包裹的铜线加热器电加热。用新的制冷剂混合物在从3630Wm(-2)至8480wm(-2)的热通量下进行测试。随着热通量的增加,传热系数减小。此外,已经开发了传热系数计算相关性。 (c)2019年Elsevier Ltd和IIR。版权所有。

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