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首页> 外文期刊>Journal of Computational Physics >An implicit ghost-cell immersed boundary method for simulations of moving body problems with control of spurious force oscillations
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An implicit ghost-cell immersed boundary method for simulations of moving body problems with control of spurious force oscillations

机译:隐含幻影单元沉浸边界方法,用于模拟带有寄生力振荡的运动体问题

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摘要

A fully-implicit ghost-cell immersed boundary method for simulations of flow over complex moving bodies on a Cartesian grid is presented. The present immersed boundary method is highly capable of controlling the generation of spurious force oscillations on the surface of a moving body, thereby producing an accurate and stable solution. Spurious force oscillations on the surface of an immersed moving body are reduced by alleviating spatial and temporal discontinuities in the pressure and velocity fields across non-grid conforming immersed boundaries. A sharp-interface ghost-cell immersed-boundary method is coupled with a mass source and sink algorithm to improve the conservation of mass across non-grid conforming immersed boundaries. To facilitate the control for the temporal discontinuity in the flow field due to a motion of an immersed body, a fully-implicit time-integration scheme is employed. A novel backward time-integration scheme is developed to effectively treat multiple layers of fresh cells generated by a motion of an immersed body at a high CFL number condition. The present backward time-integration scheme allows to impose more accurate and stable velocity vectors on fresh cells than those interpolated. The effectiveness of the present fully-implicit ghost-cell immersed boundary method coupled with a mass source and sink algorithm for reducing spurious force oscillations during simulations of moving body problems is demonstrated in a number of test cases.
机译:提出了一种完全隐式的鬼单元沉浸边界方法,用于模拟笛卡尔网格上复杂运动体上的流动。本发明的浸入边界方法具有很高的能力,可以控制在移动体表面上的杂散力振荡的产生,从而产生准确而稳定的解决方案。通过减轻跨非网格的浸入边界的压力和速度场的空间和时间不连续性,可以减少浸入运动体表面上的杂散力振荡。锐界面鬼单元沉浸边界方法与质量源和沉算法结合使用,以改善跨非网格的沉浸边界的质量守恒。为了便于控制由于浸没物体的运动引起的流场中的时间不连续性,采用了完全隐式时间积分方案。开发了一种新颖的后向时间积分方案,以有效处理在高CFL数量条件下,由浸没物体的运动产生的多层新鲜细胞。当前的后向时间积分方案允许在新鲜细胞上施加比内插的更精确,更稳定的速度矢量。在许多测试案例中,证明了目前的完全隐式幻影细胞浸入边界方法与质量源和汇算法相结合以减少运动物体问题模拟过程中的虚假力振荡的有效性。

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