垂直裸管内超临界水流动与换热的CFD分析

A. Zvorykina, D. Khmil, N. Fialko, I. Pioro, Svitlana Stryzheus
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引用次数: 1

摘要

本文对超临界水冷却裸管内的混合对流进行了CFD分析。在相对较低的水质量通量(G≈500 kg/m2s)和热流通量q (239 ~ 310 kW/m2)下,采用FLUENT程序对加热长度为4 m、内径为10 mm的垂直管内向上流动进行了研究。已经测试了各种湍流模型。研究结果表明,采用SST湍流模型计算的换热系数和内壁温度的CFD预测与实验数据吻合较好。对存在或不存在浮力所对应的CFD模拟数据进行了比较。研究了这些作用力对湍流输运阻尼、速度和温度沿通道长度径向分布的变形、换热系数降低等方面的影响规律。给出了不同条件下伪相变的运动特征。
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CFD Analysis of Supercritical-Water Flow and Heat Transfer in Vertical Bare Tube
In this paper CFD analyses of mixed convection in bare tubes cooled with water at supercritical pressure is presented. The study was carried out using the FLUENT code for upward flow in vertical tubes with a heated length of 4 m and an inside diameter of 10 mm at relatively low water mass flux (G ≈500 kg/m2s) and heat fluxes q (from 239 to 310 kW/m2). Various models of turbulence have been tested. The results of the studies demonstrated a reasonable good agreement between CFD predictions and experimental data on the heat transfer coefficient and internal-wall temperature with use the SST turbulence model. Comparison of the CFD simulation data, which correspond to the presence or absence of the buoyancy forces, was performed. The regularities of the influence of these forces on the damping of turbulent transport, the deformation of the radial profiles of velocity and temperature along the channel length, the reduction of the heat transfer coefficients, etc. were studied. The features of the motion of the pseudo-phase transition within various conditions are presented.
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