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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Slug-flow dynamics with phase change heat transfer in compact heat exchangers with oblique wavy walls
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Slug-flow dynamics with phase change heat transfer in compact heat exchangers with oblique wavy walls

机译:APS-APS流体动力学分部第70届年会-活动-具有斜波壁的紧凑型热交换器中具有相变传热的段塞流动力学

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With abundance of low-temperature geothermal energy source, small-scale binary-cycle power generation system has gained renewed attention. Although heat exchangers play a dominant role in thermal efficiency and the system size, the optimum design strategy has not been established due to complex flow phenomena and the lack of versatile heat transfer models. In the present study, the concept of oblique wavy walls, with which high j/f factor is achieved by strong secondary flows in single-phase system, is extended to two-phase exchangers. The present analyses are based on evaporation model coupled to a VOF technique, and a train of isolated bubbles is generated under the controlled inlet quality. R245fa is adopted as a low boiling-point working media, and two types of channels are considered with a hydraulic diameter of 4 mm: (i) a straight circular pipe and (ii) a duct with oblique wavy walls. The focus is on slug-flow dynamics with evaporation under small capillary but moderate Weber numbers, where the inertial effect as well as the surface tension is of significance. A possible direction of the change in thermo-physical properties is explored by assuming varied thermal conductivity. Effects of the vortical motions on evaporative heat transfer are highlighted.
机译:随着低温地热能源的丰富,小型二元循环发电系统受到了越来越多的关注。尽管热交换器在热效率和系统尺寸方面起着主导作用,但是由于复杂的流动现象和缺乏通用的传热模型,尚未建立最佳的设计策略。在本研究中,斜波壁的概念扩展到两相换热器,斜波壁的概念是通过在单相系统中通过强次流实现高j / f因子。目前的分析是基于与VOF技术耦合的蒸发模型,并且在受控的入口质量下会产生一系列孤立的气泡。 R245fa被用作低沸点工作介质,并且考虑了两种类型的通道,其液压直径为4 mm:(i)圆形直管和(ii)带有倾斜波浪形壁的管道。重点是在小毛细管但中等韦伯数下具有蒸发的团状流动力学,其中惯性效应和表面张力很重要。通过假设热导率变化,探索了热物理性质变化的可能方向。强调了涡旋运动对蒸发传热的影响。

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