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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Simulation of natural convection melting in a cavity with fin using lattice Boltzmann method
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Simulation of natural convection melting in a cavity with fin using lattice Boltzmann method

机译:用格子Boltzmann方法模拟翅片腔中自然对流熔化。

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In this study, a numerical investigation of melting phenomenon with natural convection in a cavity with fin has been performed using enthalpy-based lattice Boltzmann method. The lattice D2Q9 model was applied to determine the density and velocity fields, and the D2Q5 model for the temperature field. The effect of vertical position and length of the fin on the melting rate was studied. The simulations were carried out for Stefan number of 10, Rayleigh number of 10~5 and relative thermal conductivity (k_(fin)=k_(fluid))/ ranging from 5 to 30. The obtained results show that the rate of melting increases when the relative thermal conductivity and the length of the fin become greater. We also found that the variation of vertical position of the fin from bottom to middle has an insignificant effect on melting while it causes the increase of full melting time when the fin is mounted on the top of the cavity.
机译:在这项研究中,使用基于焓的点阵玻尔兹曼方法对翅片腔内自然对流熔化现象进行了数值研究。应用点阵D2Q9模型确定密度场和速度场,使用D2Q5模型确定温度场。研究了翅片的垂直位置和长度对熔化速率的影响。对Stefan数为10,瑞利数为10〜5,相对热导率(k_(fin)= k_(fluid))/的范围为5到30进行了仿真。相对热导率和翅片长度变大。我们还发现,翅片的垂直位置从底部到中间的变化对熔化的影响不显着,而当将翅片安装在型腔顶部时,它将导致完全熔化时间的增加。

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