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Experimental study on condensation flow patterns inside inclined U-bend tubes

机译:U形弯管内冷凝水流型的实验研究

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Effect of inclination angle/flow direction on the patterns of a two-phase flow with low mass flux in a U-bend tube is not well documented. In this study, flow patterns and transitions for condensation of refrigerant R-134a inside U-bend tubes and their contiguous straight tubes are visually observed and analyzed. In order to study the condensation flow patterns, an experimental setup is developed. The experiments have been performed for downward and upward condensation flows with different inclination angles. Low refrigerant mass fluxes were selected to vary in the range of 52-225 kg/m(2) s. The observations showed that, the flow regime is influenced by interfacial shear stress, surface tension, centrifugal force and gravitational force. Analysis of the collected data showed that the tube inclination angle strongly influences the flow pattern. Moreover, the variety of flow regimes for the horizontal cases, vertical downward and vertical upward U-bend tube, is more than other inclinations. Considering the present range of the experimental parameters, inclinations of central region of the U-bend tube as well as the inclination angle significantly impact the two-phase flow patterns. The observed flow patterns are correlated via Weber number for different inclination angles, flow directions, and refrigerant mass fluxes. (C) 2015 Elsevier Inc. All rights reserved.
机译:U形弯管中倾斜角/流向对低质量通量的两相流模式的影响尚未得到充分证明。在这项研究中,从视觉上观察和分析了U型弯管及其连续直管内的制冷剂R-134a冷凝的流动模式和过渡。为了研究冷凝水流态,开发了一个实验装置。已经针对具有不同倾角的向下和向上的冷凝流进行了实验。选择低制冷剂质量通量以在52-225 kg / m(2)s的范围内变化。观测结果表明,流动状态受界面剪切应力,表面张力,离心力和重力的影响。对收集到的数据的分析表明,管子的倾斜角度强烈影响着流型。而且,水平情况下,垂直向下和垂直向上的U形弯管的流动方式比其他倾斜方式更多。考虑到当前的实验参数范围,U形弯管的中心区域的倾斜度和倾斜角度会显着影响两相流模式。通过韦伯数将观察到的流型与不同的倾角,流向和制冷剂质量通量相关联。 (C)2015 Elsevier Inc.保留所有权利。

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