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A COMPUTATIONAL FLUID DYNAMIC STUDY OF A MOMENTUM AND ENERGY METHOD ON ROUGH SURFACES

机译:粗糙表面动量和能量法的计算流体动力学研究

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The Discrete Element Roughness Method (DERM) has been used to improve convective heal transfer predictions on surface roughness. This work aims to validate the core momentum-correlation of DERM through evaluating Computational fluid dynamics (CFD)-based solution of the flow around individual roughness elements with the goal of improving the correlations. More specifically, the matrix of scenarios evaluated using includes three different roughness elements at three different pressure drops (or flow rates). Results from these studies are to be used to validate and improve correlations used to approximate roughness in DERM. For further comparison, a fourth roughness element analyzed in previous work will also be compared. For each element, a steady and unsteady case are conducted and analyzed. The momentum loss results obtained from the CFD are then compared to the DERM-based predictions from the same roughness elements in search of any discrepancies. It is observed the momentum-correlation deviates from the CFD prediction with increasing element height.
机译:分立元素粗糙度法(DERM)已被用于改善对表面粗糙度的对流愈合转移预测。这项工作旨在通过评估各个粗糙度元件周围的流动的流动动力学(CFD)来验证DERM的核心动量 - 基于流动的流动的溶液,其目的是提高相关性的目标。更具体地,使用的场景矩阵在三个不同的压降(或流速)下包括三个不同的粗糙度元件。这些研究的结果用于验证和改善用于近似皮肤粗糙度的相关性。为了进一步比较,还将比较在先前的工作中分析的第四粗糙度元素。对于每个元素,进行稳定和不稳定的情况和分析。然后将从CFD获得的动量损失结果与来自相同粗糙度元素的基于DERM的预测相比,以寻找任何差异。观察到动量相关性与增加元素高度的CFD预测偏离。

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