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A CFD MODEL FOR BUOYANCY DRIVEN FLOWS INSIDE REFRIGERATED CABINETS AND FREEZERS

机译:冷藏柜和冷冻柜内浮力驱动流的CFD模型

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摘要

The streamfunction ― vorticity formulation is implemented in a CFD code for the analysis of air flow patterns and temperature distributions in closed cavities, more specifically refrigerated cabinets and freezers. The model is based on the mass, momentum and energy conservation principles. The flow is treated as incompressible and the buoyancy terms are modeled according to the so-called Boussinesq approximation. The finite volume method and an iterative procedure are employed to discretise and solve the governing set of partial differential equations. The presented methodology is simpler than the traditional approach based on the primitive variables since the mass conservation principle is established at each iteration and there is no need for any additional treatment of the pressure ― velocity coupling. The program performance is evaluated by comparisons with numerical benchmark solutions of classical buoyancy driven cavity flows found in the literature. Simulation results for a one door all-refrigerator are presented and discussed. Comparisons with experimental data are also reported.
机译:流功能-涡度公式化是在CFD代码中实现的,用于分析密闭腔室(更具体而言是冷藏柜和冷冻箱)中的气流模式和温度分布。该模型基于质量,动量和节能原理。流动被视为不可压缩,并且根据所谓的Boussinesq逼近对浮力项进行建模。采用有限体积法和迭代程序离散化并求解偏微分方程的控制集。提出的方法比基于原始变量的传统方法更简单,因为质量守恒定律是在每次迭代中建立的,并且不需要对压力-速度耦合进行任何其他处理。通过与文献中发现的经典浮力驱动型腔流的数值基准解决方案进行比较,可以评估程序的性能。介绍并讨论了一门全冰箱的仿真结果。还报告了与实验数据的比较。

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