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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Fluid-structure interaction modeling and performance analysis of the Orion spacecraft parachutes
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Fluid-structure interaction modeling and performance analysis of the Orion spacecraft parachutes

机译:猎户座降落伞的流固耦合模型及性能分析

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摘要

We focus on fluid-structure interaction (FSI) modeling and performance analysis of the ringsail parachutes to be used with the Orion spacecraft. We address the computational challenges with the latest techniques developed by the T_AFSM (Team for Advanced Flow Simulation and Modeling) in conjunction with the SSTFSI (Stabilized Space-Time Fluid-Structure Interaction) technique. The challenges involved in FSI modeling include the geometric porosity of the ringsail parachutes with ring gaps and sail slits. We investigate the performance of three possible design configurations of the parachute canopy. We also describe the techniques developed recently for building a consistent starting condition for the FSI computations, discuss rotational periodicity techniques for improving the geometric-porosity modeling, and introduce a new version of the HMGP (Homogenized Modeling of Geometric Porosity).
机译:我们专注于与Orion航天器配合使用的环帆降落伞的流固耦合(FSI)建模和性能分析。我们使用T_AFSM(先进的流动模拟和建模团队)开发的最新技术以及SSTFSI(稳定的时空流体-结构相互作用)技术来解决计算难题。 FSI建模涉及的挑战包括具有环隙和帆缝的环帆降落伞的几何孔隙率。我们研究降落伞机盖的三种可能的设计配置的性能。我们还描述了最近开发的用于为FSI计算建立一致的起始条件的技术,讨论了用于改善几何孔隙率建模的旋转周期性技术,并介绍了HMGP(几何孔隙率均质化建模)的新版本。

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