首页> 外文会议>International Symposium on Advances in Computational Heat Transfer >RAYLEIGHT-BENARD CONVECTION IN A HORIZONTAL POROUS CAVITY SATURATED BY A SHEAR-THINNING FLUID
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RAYLEIGHT-BENARD CONVECTION IN A HORIZONTAL POROUS CAVITY SATURATED BY A SHEAR-THINNING FLUID

机译:Rayleigh-Benard对流在水平多孔腔中由剪切薄液饱和

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The present study is focused on Rayleigh–Benard convection in an isotropic porous media saturated with a non-Newtonian shear thinning fluid with a rheological behavior obeying to the general model developed by Carreau - Yasuda. The Rayleigh–Benard convection configuration consists of a shallow porous cavity, saturated with a non-Newtonian fluid and subject to a vertical temperature gradient. The effect of the non-Newtonian behavior on the onset of convection, fluid flow, temperature field, and heat transfer is examined. A closed approximate analytical solution is developed on the basis of the parallel flow assumption and the obtained results are validated numerically by solving the full governing equations. Results are presented in terms of the Nusselt number and the flow intensity as functions of the governing parameters.
机译:本研究专注于各向同性多孔介质中的瑞利 - 良性对流,饱和非牛顿剪切稀释液,其具有流变行为,遵循Carreau-Yasuda开发的一般模型。 Rayleigh-Benard对流配置由浅多孔腔组成,饱和非牛顿流体并受垂直温度梯度。研究了非牛顿行为对对流,流体流动,温度场和传热的发作的影响。基于平行流动假设开发了闭合的近似分析解决方案,并且通过求解完全控制方程,数值验证所获得的结果。结果以何种营养数和流量强度作为管理参数的功能呈现。

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