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首页> 外文期刊>Science and Technology for the Built Environment >Condensation and evaporation of R32/R1234ze(E) and R744/R32/R1234ze(E) flow in horizontal microfin tubes
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Condensation and evaporation of R32/R1234ze(E) and R744/R32/R1234ze(E) flow in horizontal microfin tubes

机译:水平微翅片管中R32 / R1234ze(E)和R744 / R32 / R1234ze(E)流的冷凝和蒸发

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摘要

The heat transfer characteristics of the low global warming potential refrigerant mixture R744/R32/R1234ze(E) in a horizontal microfin tube were investigated in this study. The condensation heat transfer coefficient of R744 /R32/R1234ze(E) (9/29/62 mass %) is somewhat lower than that of other mixtures, e.g., R744/R32/R1234ze(E) (4/43/53 mass %) and R32/R1234ze(E) (40/60 mass %) and (30/70 mass %), at an average saturation temperature of 40 degrees C, mass flux of 200kg m(-2)s(-1), and heat flux of 10 kWm(-2). The temperature glides of R744/R32/R1234ze(E) (9/29/62 mass%) and (4/43/53 mass %) and R32/R1234ze(E) (30/70 mass %) and (40/60 mass %) are 18, 11, 10, and 8K, respectively, at 40 degrees C. Likewise, the magnitude of the heat transfer coefficient decrease is strongly affected by the temperature glide. The data for the evaporation heat transfer coefficient indicated similar effects of the temperature glide. At an average saturation temperature of 10 degrees C, the evaporation heat transfer coefficient of R744/R32/R1234ze(E) (9/29/62 mass %) is slightly lower than that of other mixtures. The temperature glides of R744/R32/R1234ze(E) (9/29/62 mass %) and (4/43/53 mass%) and R32/R1234ze(E) (30/70 mass %) and (40/60 mass %) are 22, 13, 11, and 9K, respectively. The pressure gradients of these refrigerants are almost equal, and the difference is within the measurement uncertainty. The experimental pressure gradient agrees well with the predictions proposed for single components.
机译:研究了水平微翅片管中低全球变暖潜能的制冷剂混合物R744 / R32 / R1234ze(E)的传热特性。 R744 / R32 / R1234ze(E)(9/29/62质量%)的冷凝传热系数略低于其他混合物,例如R744 / R32 / R1234ze(E)(4/43/53质量%) )和R32 / R1234ze(E)(40/60质量%)和(30/70质量%),平均饱和温度为40摄氏度,质量通量为200kg m(-2)s(-1),并且热通量为10 kWm(-2)。 R744 / R32 / R1234ze(E)(9/29/62质量%)和(4/43/53质量%)和R32 / R1234ze(E)(30/70质量%)和(40/60质量百分比)在40摄氏度时分别为18、11、10和8K。同样,传热系数下降的幅度也受到温度滑移的强烈影响。蒸发传热系数的数据表明了温度滑移的类似作用。在10℃的平均饱和温度下,R744 / R32 / R1234ze(E)的蒸发传热系数(9/29/62质量%)略低于其他混合物。 R744 / R32 / R1234ze(E)(9/29/62质量%)和(4/43/53质量%)和R32 / R1234ze(E)(30/70质量%)和(40/60质量%)分别为22、13、11和9K。这些制冷剂的压力梯度几乎相等,并且差在测量不确定度之内。实验压力梯度与针对单个组件的预测非常吻合。

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