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首页> 外文期刊>Journal of Computational Science and Technology >Trans-Mesh Method and Its Application to Simulations of Incompressible Fluid-Rigid Bodies Interaction
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Trans-Mesh Method and Its Application to Simulations of Incompressible Fluid-Rigid Bodies Interaction

机译:Trans-Mesh方法及其在不可压缩流体-刚体相互作用模拟中的应用

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References(11) Cited-By(2) In this paper, a Trans-mesh method is presented for simulating three-dimensional incompressible fluid-rigid body interaction with collisions. In the Trans-mesh method, the bodies can move freely in a main mesh that covers the entire flow field. The method is constructed based on the four-dimensional control volume in space-time unified domain such that the method assures to be divergence-free in the space-time unified domain and thus satisfies both the physical and geometrical conservation laws simultaneously. First of all, it is confirmed that the present method satisfies the geometric conservation law. Next, we did calculations for a single sphere settling under gravity in the stationary fluid to evaluate the present method. The method was applied to a flow around bodies driven by a flow in a square duct and the unsteady behavior of the flow is shown. The results indicate that this method is promising in such simulations.
机译:参考文献(11)Cited-By(2)本文提出了一种Trans-mesh方法,用于模拟三维不可压缩流体与刚体在碰撞中的相互作用。在“ Trans-mesh”方法中,实体可以在覆盖整个流场的主网格中自由移动。该方法是基于时空统一域中的三维控制量构造的,从而确保该方法在时空统一域中无散度,从而同时满足了物理守恒律和几何守恒律。首先,证实了本方法满足几何守恒定律。接下来,我们对重力作用下在固定流体中沉降的单个球体进行了计算,以评估本方法。将该方法应用于由方管中的流驱动的物体周围的流,并显示了该流的不稳定行为。结果表明该方法在此类仿真中很有希望。

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