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首页> 外文期刊>International Journal of Heat and Fluid Flow >Improved heat transfer predictions on rough surfaces
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Improved heat transfer predictions on rough surfaces

机译:改进了对粗糙表面的传热预测

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The equivalent sand grain approach is the only approach to account for wall roughness in industrial CFD. As roughness effects are reproduced via a modification of the turbulence model in the wall region, the roughness correction preserves the Reynolds analogy. However, wall roughness increases much more the drag than the wall heat flux, so that the wall heat flux is overestimated with the equivalent sand grain approach. Due to the relative lack of detailed experimental data, the discrete element approach, which accounts for the different dynamical and thermal behaviours of wall roughness, was used to generate a large database to investigate thermal roughness effects. It turns out that, besides the equivalent sand grain height, another parameter has to be introduced to characterize roughness thermal effects. A correction of the turbulent Prandtl number was derived from the database and can be coupled to any roughness correction developed using ONERA's technique. The thermal correction was validated for a wide range of roughness geometries, including academic roughness, in-service turbine blades and vanes and different ice shapes, for reduced equivalent sand grain heights k(s)(+) ranging from 10 to 6000, and for flows with pressure gradient. Heat transfer predictions are significantly improved, although heat transfer is generally still slightly overpredicted. (C) 2015 Elsevier Inc. All rights reserved.
机译:等效砂粒方法是解决工业CFD中壁粗糙度的唯一方法。由于通过修改壁区域中的湍流模型来再现粗糙度效果,因此粗糙度校正保留了雷诺兹的类比。但是,壁面粗糙度比壁面通量增加的阻力大得多,因此用等效的沙粒方法高估了壁面通量。由于相对缺乏详细的实验数据,使用了离散元素方法(该方法考虑了壁粗糙度的不同动力学和热行为)来生成一个大型数据库,以研究热粗糙度的影响。事实证明,除了等效的沙粒高度外,还必须引入另一个参数来表征粗糙度热效应。湍流普朗特数的校正是从数据库中得出的,可以与使用ONERA技术开发的任何粗糙度校正相结合。热校正已针对各种粗糙度几何体进行了验证,包括学术粗糙度,在役涡轮叶片和叶片以及不同的冰形状,减小的等效沙粒高度k(s)(+)从10到6000,以及以压力梯度流动。传热预测得到了显着改善,尽管传热通常仍略有高估。 (C)2015 Elsevier Inc.保留所有权利。

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