首页> 外文会议>ASME Pressure Vessels and Piping conference >Flow Loads on the Shroud in a Boiling Water Reactor Due to a Recirculation Outlet Line Break - A Comparative Study between Potential Flow and Computational Fluid Dynamics Methodologies
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Flow Loads on the Shroud in a Boiling Water Reactor Due to a Recirculation Outlet Line Break - A Comparative Study between Potential Flow and Computational Fluid Dynamics Methodologies

机译:循环出口管线断裂引起沸腾反应器导流罩上的流动载荷-潜在流动与计算流体动力学方法的比较研究。

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This paper compares two methodologies for estimating the flow loads on the shroud of a typical BWR caused by a Recirculation Outlet Line Break. First, assuming an ideal and irrotational flow field, the complex potential methodology is used to calculate a two dimensional approximation of the flow field by ignoring variations along the radial direction. As a simplification for the comparative study the annulus will be assumed to be devoid of any structural components such as the jet pumps. The flow field derived from the potential flow approach will be used to compute the total lateral and moment loads acting on the shroud. These load values will be compared against similar values derived from a three dimensional and more realistic flow field computed by Computational Fluid Dynamics (CFD). The potential flow based method is computationally simpler as compared to the more time consuming CFD approach.
机译:本文比较了两种方法来估算由再循环出口断路引起的典型BWR护罩上的流动载荷。首先,假设一个理想的非旋转流场,复势方法通过忽略沿径向的变化,用于计算流场的二维近似值。为了简化比较研究,假定环空不含任何结构部件,例如喷射泵。从潜在流法得出的流场将用于计算作用在护罩上的总侧向载荷和力矩载荷。这些负载值将与由三维计算流体力学(CFD)计算出的三维,更逼真的流场得出的相似值进行比较。与耗时的CFD方法相比,基于势流的方法在计算上更简单。

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