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Determination of Submergence Depth to Avoid Vortices at Horizontal Intake Applying Flow-3D Software

机译:使用Flow-3D软件确定避免在水平进水处涡流的淹没深度

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摘要

Free surface vortices is considered as one of the problems of the industry in part of flood control (over flow), agriculture, electricity and water supply plants that researchers' effort in this way represents importance of this issue., it can cause excessive vibration, efficiency loss, structural damage, and also flow reduction in hydro turbines, pumps, Culverts and also can be potential risk and damage factor on the safety of power plants. The most important reasons for using the software FLOW 3D in this thesis is the exact study of intake and making connection between software model and Experimental model. Since software has capability to present velocity distribution in line X Y Z and other hydraulic parameters in point of Critical depth (the first depth into that vortex is not formed). In this thesis presented the Numerical model of horizontal intake with a Plexiglas Reservoir by length and width of 3.1 m and depth of 2.2 m and intake pipes with a radius of 0.3, 0.25, 0.194, 0.144, 0.1, 0.05 m and length of 3 m in determining the required depth of flooding to prevent vortex as software modeling. The results of this study can be used to derive a scrutiny relationship between the depth of flooding in the form of equations of first grade and second grade point. This relationship has been extracted after examining the application output and experimental data in terms of depth flood submergence depth (critical depth), intake diameter, Froude number, the Weber number and Reynolds number.
机译:在防洪(溢流),农业,电力和供水厂的一部分中,自由表面涡流被认为是该行业的问题之一,研究人员以这种方式所做的努力代表了这一问题的重要性。它可能引起过度的振动,效率损失,结构损坏以及水轮机,泵,涵洞的流量减少,并且也可能是发电厂安全的潜在风险和破坏因素。本文使用FLOW 3D软件的最重要的原因是对进气的精确研究以及软件模型和实验模型之间的联系。由于软件具有在临界深度点(未形成该涡旋的第一个深度)中显示X Y Z线中的速度分布和其他液压参数的功能。本文提出了一种有机玻璃水库的水平模型,其长度和宽度分别为3.1 m,深度为2.2 m,半径为0.3、0.25、0.194、0.144、0.1、0.05 m和长度为3 m,深度为2.2 m在确定所需的注水深度以防止涡旋时进行软件建模。这项研究的结果可以用来以一级和二级点方程的形式推导洪水深度之间的详细关系。在检查了应用程序的输出和实验数据后,提取了这种关系,包括淹没深度(临界深度),进气口直径,弗洛德数,韦伯数和雷诺数。

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