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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Numerical study on condensation annular flow of R1234ze(E) inside an inclined tube
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Numerical study on condensation annular flow of R1234ze(E) inside an inclined tube

机译:R1234ZE(E)在倾斜管内的凝结环形流动的数值研究

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摘要

The condensation characteristic of R1234ze(E) inside an inclined circular tube (D = 4.57 mm) were numerically investigated. The mass flux covered from 300 to 800 kg.m(-2)S(-1) and the inclination angle varied from -90 degrees to 90 degrees. The inclination effects on film distribution, local film thickness, local heat transfer coefficient and velocity profile were detailed presented. Inclining the tube has a negligible effect on heat transfer coefficients at high mass fluxes and vapor qualities, but may cause an increase or decrease in heat performance when decreasing the mass flux and vapor quality. At the same inclination angle, slightly higher heat transfer coefficients were observed for the down-flow configuration. Increasing the inclination angle would thicken the film thickness of thin film region while reducing the film thickness of stratification region, which affected local heat transfer performance. Compared with heat transfer coefficients, the pressure gradients were more sensitive to the inclination angle. The local pressure gradients generally increased with the inclination angle for down-flow configuration. While the reverse was true for up-flow configuration. The simulated heat transfer coefficients and pressure gradients were compared with predictions of well-known correlations. The pressure drop models developed for horizontal tubes were not able to precisely predict the data of inclined tubes.
机译:在数值上研究了倾斜圆管(D = 4.57mm)内R1234ze(e)的冷凝特性。覆盖300至800kg.m(-2)(-1)的质量磁通量和倾斜角度从-90度变化至90度。详细介绍了对薄膜分布,局部膜厚度,局部传热系数和速度分布的倾斜效果。倾斜管对高质量助熔剂和蒸汽质量的热传递系数具有可忽略的影响,但是在降低质量磁通和蒸气质量时可能导致热性能的增加或降低。在相同的倾斜度下,观察到稍微稍高的传热系数用于下流配置。增加倾斜角度将使薄膜区域的膜厚度增厚,同时降低分层区域的膜厚度,这影响了局部传热性能。与传热系数相比,压力梯度对倾斜角度更敏感。局部压力梯度通常随着下流配置的倾斜角度而增加。虽然对上流配置反向是真的。将模拟的传热系数和压力梯度与众所周知的相关性的预测进行比较。为水平管开发的压降模型不能精确地预测倾斜管的数据。

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