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A numerical model for the simulation of double-diffusive natural convection in a triangular solar collector

机译:用于模拟三角形太阳能收集器中双扩散自然对流的数值模型

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A numerical model is presented for the simulation of double-diffusive natural convection in a triangular solar collector. This design is encountered in greenhouse solar stills where vertical temperature and concentration gradients between the saline water and transparent cover induce flows in a confined space. This phenomenon plays an important function in the water distillation process and in the biological comfort. In this double-diffusion problem, the ratio Br of the relative magnitude thermal and compositional buoyancy and Rayleigh numbers are key parameters. Finite element technique is used to solve the governing equations. Numerical results are presented for the effect of the above-mentioned parameters on local heat and mass transfer rate. In addition, results for the average heat and mass transfer rate are offered and discussed for the mentioned parametric conditions. Some interesting results are found in this investigation.
机译:提出了一个数值模型,用于模拟三角形太阳能收集器中的双扩散自然对流。在温室太阳能蒸馏器中会遇到这种设计,在这种蒸馏器中,盐水和透明盖之间的垂直温度和浓度梯度会在有限的空间中引发流动。这种现象在水蒸馏过程和生物舒适性中起着重要的作用。在这个双重扩散问题中,相对大小的热和成分浮力之比Br和瑞利数是关键参数。使用有限元技术求解控制方程。数值结果表明了上述参数对局部传热和传质速率的影响。另外,提供并讨论了上述参量条件的平均传热速率和传质速率的结果。在这项调查中发现了一些有趣的结果。

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