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Numerical study of the heat and mass transfer in inclined glazing cavity: Application to a solar distillation cell

机译:倾斜玻璃窗腔内传热传质的数值研究:在太阳能蒸馏池中的应用

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A numerical analysis is performed for the natural convection flow resulting from the combined buoyancy effects of thermal and mass diffusion in an inclined cavity. This work enters within the framework of general study dealing with the mathematical model for solar brackish water desalination unit. The problem is stated in a Cartesian coordinates system, involves the use of a control volume-based finite-element method and solves the full vorticity transport equation together with the stream function, concentration and energy equations. The predicted stream function patterns, isoconcentration and isotherms are presented for different thermal Rayleigh numbers. The heat and mass transfer evolution are explained in terms of dynamic and temperature fields of the flow in the inclined cavity. In particular, the desirable flow for enhancing the performance of the solar distiller is determined by examining flow patterns.
机译:对自然和对流的数值分析,这种自然对流是由倾斜腔中热扩散和质量扩散的组合浮力效应产生的。这项工作进入了关于日光咸淡水淡化装置数学模型的一般研究框架。该问题在笛卡尔坐标系中陈述,涉及使用基于控制体积的有限元方法,并解决了整个涡旋输运方程以及流函数,浓度和能量方程。给出了针对不同热瑞利数的预测流函数模式,等浓度和等温线。传热和传质的演化用倾斜腔中流动的动态场和温度场来解释。特别地,通过检查流型来确定用于增强太阳能蒸馏器的性能的期望流。

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