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NATURAL CONVECTION FROM AN ELLIPTIC HEAT SOURCE BURIED IN A SEMI-INFINITE, SATURATED, POROUS MEDIUM

机译:椭圆热源的自然对流埋在半无限,饱和的多孔介质中

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Numerical solutions are presented for the natural convection heat transfer from an elliptic heat source buried beneath a semi-infinite, saturated, porous medium. The surface of the medium is assumed to be permeable. The governing equations for Darcy flow are solved using finite differences. The complicated geometry is handled through the use of a body-fitted curvilinear coordinate system. Results are presented for Ra values ranging from 10 to 200 and ellipse aspect ratio values from 1.0 (circular cylinder) to 0.167. Two body orientations have been considered. The slender orientation yields much higher hear transfer rates (especially at low ellipse aspect ratio values) than the blunt orientation. The numerical simulations indicate that the boundary-layer approximations cannot be employed for low ellipse aspect ratios. In addition, the heat loss does not depend on the burial depth.
机译:呈现来自埋在半无限,饱和多孔介质下方的椭圆热源的自然对流热传递的数值解。假设介质的表面是可渗透的。使用有限差异来解决达西流程的控制方程。通过使用身体拟合的曲线坐标系来处理复杂的几何形状。结果为从1.0(圆柱)到0.167的10至200的RA值和椭圆宽高比值。考虑了两个身体取向。细长取向产生比钝的取向更高的听到传递速率(特别是在低椭圆宽高比值)。数值模拟表明边界层近似不能用于低椭圆宽高比。此外,热量损失不依赖于埋藏深度。

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