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Active Flow Control of a Pump-Induced Wall-Normal Vortex With Steady Blowing

机译:泵诱导的壁正常涡流的主动流量控制,稳定吹送

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The emergence of a submerged vortex upstream of a pump can reduce pump intake efficiency and cause structural damage. In this study, we consider the use of active flow control with steady blowing to increase the pressure distribution within a single-phase pump-induced wall-normal vortex model, which is based on the Burgers vortex with a no-slip boundary condition prescribed along its symmetry plane. The goal of our control is to modify the vortex core velocity profile. These changes are sought to increase the core pressure such that detrimental effects on the pump are alleviated. Three-dimensional direct numerical simulations are performed to examine the dynamics of the vortex with the application of axial momentum injection at and around the root of the vortex. We find that the active flow control approach can effectively modify the wall-normal vortical structure and significantly increase the low-core pressure by up to 81% compared to that of the uncontrolled case. The result shows that the control setup is also effective when it is introduced in an off-centered manner. Compared to the unsteady blowing and suction-based actuation from our previous work (Liu, Q., An, B., Nohmi, M., Obuchi, M., and Taira, K., 2018, "Core-Pressure Alleviation for a Wall-Normal Vortex by Active Flow Control," J. Fluid Mech., 853, p. R1.), the current steady control technique offers an effective and simple flow control setup that can support robust operations of pumps.
机译:泵上游淹没涡流的出现可以降低泵的进气效率并引起结构损伤。在这项研究中,我们考虑使用主动流量控制,稳定吹气,以增加单相泵引起的壁普通涡流模型内的压力分布,该模型基于汉堡涡流具有规定的无滑动边界条件它的对称平面。我们控制的目标是修改涡旋核心速度配置文件。寻求这些变化来增加核心压力,从而减轻了对泵对泵的不利影响。进行三维直接数值模拟以检查涡旋涡动度注射及周围的涡流的动态。我们发现,与不受控制的情况相比,主动流量控制方法可以有效地改变壁正常涡旋结构,并显着增加高达81%的低核心压力。结果表明,当以离心方式引入时,控制设置也是有效的。与我们以前的工作中的不稳定吹嘘和基于吸入的作业相比(刘,Q.,A,B.,Nohmi,M.,Obuchi,M.和Taira,K.,2018,“核心压力减轻壁正常涡旋通过主动流量控制,“J. Fluid Mech。,853,p。R1。),目前的稳态控制技术提供了一种有效且简单的流量控制设置,可以支持泵的鲁棒操作。

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