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Numerical investigation of an axi-symmetric laminar jet impinging on a dimpled surface under uniform heat flux using a finite element method

机译:均匀热流作用下凹坑表面上轴对称层流射流的有限元数值研究

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The purpose of this study is to numerically investigate heat transfer and flow field in a semi-confined axi-symmetric laminar air jet impinging on a concave surface, or dimple, with uniform heat flux. A commercial software package relying on the finite element method was used for the simulation, and mesh convergence was examined in order to minimize computational cost. Jet impingement on a flat plate was used as a baseline reference case, and flat plate results were validated against previously published experimental data with good agreement. The effects of various parameters involved in dimple impingement -such as Reynolds number (Re) between 100-1,400; jet-to-plate spacing (H/D_j) ranging from 2 to 6 jet diameters; dimple depths (d/D_d) of 0.1, 0.15, and 0.2; and the ratio of jet diameter and dimple projected diameter (D_j/D_d) from 0.25 to 1- were all studied. Comparisons show that heat transfer reduction occurs in the presence of dimples because of the larger impingement area, which results in less momentum flux. The dimple curvature lifts the post-impinging fluid and creates a backflow, instead of allowing it to maintain contact with the surface, as is the case with flat plate impingement.
机译:这项研究的目的是对半均匀轴对称层流空气射流的热传递和流场进行数值研究,该射流撞击具有均匀热通量的凹面或凹窝。依赖于有限元方法的商业软件包被用于仿真,并且网格收敛被检查以最小化计算成本。将喷射流撞击在平板上用作基准参考案例,并根据先前发表的实验数据验证平板结果,并且吻合良好。酒窝撞击所涉及的各种参数的影响-例如雷诺数(Re)在100-1,400之间;喷板间距(H / D_j)为2到6个喷管直径;酒窝深度(d / D_d)为0.1、0.15和0.2;研究了射流直径与凹痕投影直径之比(D_j / D_d)从0.25到1。比较表明,由于存在较大的撞击面积,因此在酒窝的存在下会发生传热减少,从而导致动量通量减小。凹坑曲率提升了撞击后的流体并产生了回流,而不是像平板撞击那样使它保持与表面的接触。

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