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Study a Fluid Structure Interaction Mechanism to Find Its Impact on Flow Regime and the Effectiveness of This Novel Method on Declining Pressure Loss in Ducts

机译:研究流体结构相互作用机制,以发现其对流动制度的影响以及这种新方法对管道压力损失减少的影响

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摘要

Using channels and tubes with a variety of shapes for fluids transportation is an epidemic approach which has been grown rampantly through recent years. In some cases obstacles which placed in the fluid flow act as a barrier and cause increase in pressure loss and accordingly enhance the need to more power in the entry as well as change flow patterns and produce vortexes that are not optimal. In this paper a method to suppress produced vortexes in two dimension channel that a fixed square cylinder placed in the middle of it in Re_D 200 in order to find a way to suppress vortexes are investigated. At first different length of splitter plates attached to square obstruction are studied to obtain the effects of length on flow pattern. Subsequently simulations have been conducted in three dimension to validate previous results as well as acquire better understanding about the selected approach. Simulations have done by Lagrangian Eulerian method, plates first assummed fix with length 1.5mm, 4mm and 7.5mm, and then flexible plates with the same length are studied. Young's modulus for flexible plate and blockage ratio were constant values of 2x10~6 and 0.25 in all simulations, respectively. Results indicate more vortexes would be suppressed when the length of splitter plate enhances.
机译:使用具有各种形状的通道和管道用于流体运输是一种近年来一直在猖獗的疫情方法。在一些情况下,放置在流体流中的障碍充当屏障并导致压力损失的增加,因此增强了进入中更多的功率以及改变流动模式并产生不最佳的涡旋。在本文中,一种抑制两个尺寸通道中产生的涡流的方法,该尺寸通道中的固定方圆筒放置在RE_D 200的中间,以找到抑制涡旋的方法。在第一种不同长度的分配板附接到方形梗阻,以获得长度对流动​​模式的影响。随后在三维中进行了仿真以验证以前的结果,并获得对所选方法的更好理解。利用拉格朗日欧拉方法采用仿真,板首先用长度为1.5mm,4mm和7.5mm的固定,然后研究了具有相同长度的柔性板。较小的柔性板块和堵塞比的模量分别在所有模拟中分别为2×10〜6和0.25的恒定值。结果表明分离器板的长度增强时会抑制更多涡流。

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