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首页> 外文期刊>International Journal of Refrigeration >Pool boiling data and prediction method for enhanced boiling tubes with R-134a, R-236fa and R-1234ze(E)
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Pool boiling data and prediction method for enhanced boiling tubes with R-134a, R-236fa and R-1234ze(E)

机译:R-134a,R-236fa和R-1234ze(E)增强沸腾管的池沸腾数据和预测方法

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The phase-change process of enhanced surface pool boiling is an effective mode of heat transfer requiring on-going investigation with new refrigerants. Two of the latest generation Wolverine Tube Inc. (Turbo-B5) and Wieland Werke (Gewa-B5) enhanced boiling tubes have been studied under pool boiling conditions with refrigerants R-134a, R-236fa and R1234ze(E). A 1.027 m length of tube with semi-local heat flux and heat transfer coefficient measurements was tested in each case. The Wilson plot method was validated and used to characterise the inside heat transfer coefficient of the heating water. Pool boiling tests were carried out for saturation temperatures of 5-25℃ and heat fluxes from 15 to 70 kW m~(-2), based on the outer tube diameter. It was found that heat flux and refrigerant type had the dominant effect on heat transfer. A new enhanced tube pool boiling correlation was proposed, based on a boiling heat transfer mechanism in the near-wall region.
机译:强化表面池沸腾的相变过程是一种有效的传热模式,需要不断研究新的制冷剂。在池沸腾条件下,已经使用制冷剂R-134a,R-236fa和R1234ze(E)研究了最新一代的Wolverine Tube Inc.(Turbo-B5)和Wieland Werke(Gewa-B5)增强沸腾管。在每种情况下,都对1.027 m长的管进行了半局部热通量和传热系数测量。验证了威尔逊图法并用于表征热水的内部传热系数。根据外管直径,在5-25℃的饱和温度和15至70 kW m〜(-2)的热通量下进行了池沸腾测试。发现热通量和制冷剂类型对传热起主要作用。基于近壁区域的沸腾传热机理,提出了一种新的增强的管池沸腾相关性。

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