首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >MIXED CONVECTION IN A LID-DRIVEN TWO-DIMENSIONAL SQUARE CAVITY WITH CORNER HEATING AND INTERNAL HEAT GENERATION
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MIXED CONVECTION IN A LID-DRIVEN TWO-DIMENSIONAL SQUARE CAVITY WITH CORNER HEATING AND INTERNAL HEAT GENERATION

机译:在角驱动和内部生热的二维二维腔体中的对流混合

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The aim of the numerical study is to investigate the mixed convection flow and heat transfer in a square lid-driven cavity with corner heating and internal heat generation or absorption. The top wall of the cavity is moving at a constant speed in its own plane. A portion of the left and bottom walls of the cavity are kept at a constant temperature; that is, the heaters are fixed at the left bottom corner of the cavity. The right wall is maintained at lower temperature and the remaining portions of the cavity are insulated. The finite volume method is used to discretize the governing equations that are then solved iteratively. The results are obtained for different lengths of the heaters, Richardson numbers, and internal heat generation or absorption parameters. It is observed that the heat transfer rate is enhanced at forced convection dominated regime when the vertical length of the heater is higher than that of the horizontal length.
机译:数值研究的目的是研究带有角加热和内部热量产生或吸收的方形盖驱动腔中的混合对流和传热。空腔的顶壁在其自己的平面中以恒定的速度移动。空腔的左壁和底壁的一部分保持在恒定温度下。也就是说,加热器固定在腔体的左下角。右壁保持较低的温度,空腔的其余部分被绝缘。有限体积法用于离散控制方程,然后迭代求解。对于不同长度的加热器,理查森数和内部热量产生或吸收参数,可以获得结果。可以看出,当加热器的垂直长度大于水平长度时,在强制对流控制下传热速率会提高。

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