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首页> 外文期刊>Mathematical Problems in Engineering >A New Method Solving Contact/Detach Problem in Fluid and Structure Interaction Simulation with Application in Modeling of a Safety Valve
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A New Method Solving Contact/Detach Problem in Fluid and Structure Interaction Simulation with Application in Modeling of a Safety Valve

机译:解决流体与结构相互作用仿真中接触/分离问题的新方法及其在安全阀建模中的应用

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摘要

A new virtual baffle methodology is implemented to solve contact/detach problem which is often encountered in fluid and structure interaction simulations while using dynamic grids technique. The algorithm is based on tetrahedral unstructured grid, and a zero thickness baffle face is generated between actually contacted two objects. In computation process, this baffle face is divided into two parts representing convective and blocked area, respectively; the area of each part is calculated according to the actual displacement between the two objects. Convective part in a baffle face is treated as inner interface between cells, and on blocked part wall boundary condition is applied; so convective and blocking effect can be achieved on a single baffle face. This methodology can simulate real detaching process starting from contact, that is, zero displacement, while it has no restriction to minimum grid cell size. The methodology is then applied in modeling of a complicated safety valve opening process, involving multidisciplinary fluid and structure interaction and dynamic grids. The results agree well with experimental data, which proves that the virtual baffle method is successful.
机译:实现了一种新的虚拟挡板方法,以解决使用动态网格技术时在流体和结构相互作用模拟中经常遇到的接触/分离问题。该算法基于四面体非结构化网格,并且在实际接触的两个对象之间生成了零厚度的挡板面。在计算过程中,该挡板面分为两部分,分别代表对流区域和阻塞区域。根据两个对象之间的实际位移来计算每个部分的面积。折流板面中的对流部分被视为单元之间的内部界面,并在阻塞部分的壁边界条件下应用;这样就可以在单个挡板面上实现对流和阻挡效果。这种方法可以模拟从接触开始的真正分离过程,即零位移,而对最小网格单元大小没有限制。然后将该方法应用于复杂的安全阀打开过程的建模,该过程涉及多学科的流体和结构相互作用以及动态网格。结果与实验数据吻合良好,证明了虚拟挡板法是成功的。

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  • 来源
    《Mathematical Problems in Engineering 》 |2010年第1期| p.37.1-37.15| 共15页
  • 作者

    Zheng Guo;

  • 作者单位

    College of Aerospace and Material Engineering, National University of Defense Technology,Changsha, Hunan 410073, China BP Institute for Multiphase Flow, University of Cambridge, Cambridge CB3 0EZ, UK;

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  • 正文语种 eng
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