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The effects of a submerged non-erodible triangular obstacle on bottom propagating gravity currents

机译:水下不可侵蚀的三角形障碍物对底部传播重力流的影响

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The flow induced by a compositional (e.g., temperature or salinity driven) gravity current propagating over a fixed non-erodible triangular bottom-mounted obstacle is investigated based on 3-D large eddy simulations. The paper discusses how the flow physics (e.g., type and characteristics of the reflected bore, dynamics of flow instabilities affecting mixing, and turbulence structure) and main flow variables (e.g., the proportion of the flow advected over the obstacle, the height of the reflected flow and speed of the reflected bore, the height of the lower layer and front speed of the current downstream of the obstacle, and the drag force) change as a function of the incoming gravity current type (lock-exchange vs constant-flux), relative obstacle height, and Reynolds number. A particular focus is on the flow structure during the two possible quasi-steady regimes that can occur in such flows. The predictive capabilities of shallow flow theory models to estimate the main flow parameters during these two regimes are investigated. An analytical model is proposed to estimate the mean streamwise drag force on the obstacle during the two regimes. Finally, the bed friction velocity distributions are used to identify regions where significant erosion will occur in the case of a loose surface. (C) 2015 AIP Publishing LLC.
机译:基于3-D大涡模拟,研究了由成分(例如,温度或盐度驱动)重力流在固定的不可腐蚀三角形底部固定障碍物上传播引起的流动。本文讨论了流动物理特性(例如,反射孔的类型和特性,影响混合的流动不稳定性的动力学以及湍流结构)和主要流动变量(例如,在障碍物上平流的比例,障碍物的高度)。反射流量和反射孔的速度,障碍物下游电流的下层高度和前端速度以及拖曳力随输入重力流类型(锁定交换与恒定磁通)而变化,相对障碍物高度和雷诺数。在这种流动中可能出现的两种可能的准稳态状态下,流动结构特别受关注。研究了浅流理论模型在这两种情况下估算主要流量参数的预测能力。提出了一个分析模型来估计在两种情况下在障碍物上的平均河道阻力。最后,床摩擦速度分布用于确定在表面松动的情况下会发生严重腐蚀的区域。 (C)2015 AIP Publishing LLC。

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