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Numerical simulation of condensation inside an inclined smooth tube

机译:倾斜光滑管内凝结的数值模拟

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In this study the condensation phenomena inside an inclined smooth tube were investigated. The tube internal diameter was 8.38 mm, and its length was 1488 mm. The condensing fluid was R134a at a saturation temperature of 40 degrees C. The Volume of Fluid (VOF) multiphase-flow formulation was utilized to solve the governing equations of continuity, momentum, energy and turbulence. The flow field was assumed to be unsteady, turbulent and three-dimensional. The fluid properties were considered to be constant as temperature changes were negligible. The effects on heat transfer coefficients of various parameters were investigated. These parameters included tube inclination angle, vapour quality, refrigerant mass flux, and flow regimes. Simulations were conducted at a heat flux of approximately 5 kW/m(2), mass fluxes of 100-600 kg/m(2).s, while the inclination angles of flow were varied between vertical downward, to vertical upward. The results of the simulations were compared to an experimental database and a good agreement was found with the experimental data. The numerical simulations gave new perspectives and complementary information that was not determined experimentally. The results showed that an optimum downward inclination angle of between -30 degrees and -15 degrees exists, for the heat transfer coefficients. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了倾斜平滑管内的冷凝现象。管内径为8.38mm,其长度为1488毫米。冷凝液在40℃的饱和温度下是R134a。利用流体(VOF)多相流式制剂的体积来解决连续性,动量,能量和湍流的控制方程。假设流场是不稳定的,湍流和三维的。随着温度变化可忽略不计,将流体性质被认为是恒定的。研究了对各种参数的传热系数的影响。这些参数包括管倾斜角度,蒸气质,制冷剂质量通量和流量制度。在大约5kW / m(2)的热通量下进行模拟,质量势态为100-600kg / m(2)。,而流动的倾斜角在垂直向上变化,垂直向上变化。将模拟结果与实验数据库进行比较,并发现实验数据的良好协议。数值模拟提供了新的视角和互补信息,这些信息未经实验确定。结果表明,对于传热系数,存在最佳向下倾斜角度为-30度和-15度。 (c)2018年elestvier有限公司保留所有权利。

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