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Influence of viscous flow relaxation time on self-similarity in free-surface jet impingement

机译:粘性流动弛豫时间对自由表面射流撞击中自相似性的影响

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Self-similar behavior in laminar free-surface jets regarding the velocity profile, its evolution, and the influence on stagnation-region heat transfer is presented. Approximate theoretical analysis shows that there are two regions with different scaling: a free-jet region where viscous relaxation dominates and an impingement region where a potential solution applies. Using the dimensionless time scale found for the first region, H/(D · Re), self-similarity is obtained for the axial velocity and its development. Fully resolved numerical simulations are performed to identify the crossover between the regions. It is further shown that the velocity profile at the cross-over point directly dictates the heat transfer distribution in the stagnation zone. The conditions under which this distribution has a central or off-center peak are found to be related to specific velocity profiles. Numerical results are used to find approximate closed-form relations tying the jet emergence velocity to the heat transfer distribution. A new comprehensive correlation is subsequently formulated for the heat transfer incorporating this new time scale, covering the range of velocity profiles emerging from pipe-type (parabolic) to orifice-type nozzles (uniform). A well-known analytical Prandtl dependency for stagnation flows is employed, yielding strong agreement with the numerical results. Agreement is observed for a very wide range of liquid and laminar flow conditions (i.e., 0.07 <Pr< 1307, 73 < Re < 2000, and 4 < H/D < 110).
机译:提出了层流自由表面射流中关于速度分布,其演化以及对停滞区域传热的影响的自相似行为。近似理论分析表明,存在两个具有不同缩放比例的区域:粘性松弛占主导的自由喷射区域和应用潜在解决方案的碰撞区域。使用为第一个区域找到的无量纲时标H /(D·Re),可以得出轴向速度及其发展的自相似性。执行完全分解的数值模拟以识别区域之间的交叉。进一步表明,在交叉点的速度分布直接决定了停滞区内的传热分布。发现该分布具有中心或偏心峰的条件与特定的速度曲线有关。数值结果用于找到将射流出现速度与传热分布联系起来的近似闭合形式关系。随后,结合新的时间尺度,为传热制定了一个新的综合关系式,涵盖了从管型(抛物线形)到孔型喷嘴(均匀型)出现的速度分布范围。对停滞流使用了众所周知的解析Prandtl相关性,与数值结果非常吻合。在很宽的液体和层流条件(即0.07 <Pr <1307、73 <Re <2000和4 <H / D <110)上观察到一致。

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