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首页> 外文期刊>Science and Technology for the Built Environment >Enhancement of R1234ze(Z) pool boiling heat transfer on horizontal titanium tubes for high-temperature heat pumps
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Enhancement of R1234ze(Z) pool boiling heat transfer on horizontal titanium tubes for high-temperature heat pumps

机译:高温热泵水平钛管R1234ze(Z)池沸腾热传递的增强

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摘要

R1234ze(Z), which has a global warming potential of less than 1, is a promising alternative refrigerant for high-temperature heat pumps designed for heat recovery in the industrial sector. The use of titanium as the material for heat exchangers exposed to acid exhaust is one solution to prevent oxidation. In this study, the pool boiling heat transfer characteristics outside of horizontal titanium tubes were experimentally investigated for R1234ze(Z). A plain tube and three enhanced titanium tubes were tested at saturation temperatures from 10 degrees C to 60 degrees C and heat fluxes from 0.55 to 79.8kW m(-2). Compared to the plain tube, the tested enhanced tube exhibited a 2.8 to 5.1 times higher heat transfer coefficient, on average, in the test range, which could compensate for the disadvantage in the thermal conductivity of titanium. The enhancement ratio predominantly depends on the saturation temperature and the wall heat flux. At conditions of higher saturation temperatures and lower heat flux, where smaller bubbles are observed, test tubes with smaller fin spaces exhibit higher heat transfer coefficients. The experimental results indicate the importance of fin geometry optimization to the operation conditions.
机译:R1234ZE(Z)具有少于1的全球变暖潜力,是用于高温热泵的有希望的替代制冷剂,专为工业领域进行热回收。用钛作为暴露于酸排气的热交换器的材料是一种防止氧化的一种溶液。在这项研究中,实验研究了水平钛管之外的池沸腾的传热特性,用于R1234ZE(Z)。将普通管和三个增强的钛管在饱和温度从10℃至60℃的饱和温度下进行测试,并从0.55-79.8kW m(-2)的热通量。与平原管相比,测试增强管平均在测试范围内显示出2.8至5.1倍的传热系数,这可以补偿钛的导热率的缺点。增强比主要取决于饱和温度和壁热通量。在饱和温度和较低热通量的条件下,观察到较小气泡的情况下,具有较小翅片空间的试管表现出更高的传热系数。实验结果表明鳍几何优化对操作条件的重要性。

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