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Special methods for aerodynamic-moment calculations from parachute FSI modeling

机译:降落伞FSI建模的空气动力学力矩计算的特殊方法

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摘要

The space-time fluid-structure interaction (STFSI) methods for 3D parachute modeling are now at a level where they can bring reliable, practical analysis to some of the most complex parachute systems, such as spacecraft parachutes. The methods include the Deforming-Spatial-Domain/Stabilized ST method as the core computational technology, and a good number of special FSI methods targeting parachutes. Evaluating the stability characteristics of a parachute based on how the aerodynamic moment varies as a function of the angle of attack is one of the practical analyses that reliable parachute FSI modeling can deliver. We describe the special FSI methods we developed for this specific purpose and present the aerodynamic-moment data obtained from FSI modeling of NASA Orion spacecraft parachutes and Japan Aerospace Exploration Agency (JAXA) subscale parachutes.
机译:用于 3D 降落伞建模的时空流固耦合 (STFSI) 方法现在已经达到了可以为一些最复杂的降落伞系统(例如航天器降落伞)提供可靠、实用分析的水平。这些方法包括以变形-空间-域/稳定ST方法为核心计算技术,以及大量针对降落伞的特殊FSI方法。根据空气动力学力矩随攻角的变化来评估降落伞的稳定性特性是可靠的降落伞FSI建模可以提供的实际分析之一。我们描述了我们为此特定目的开发的特殊FSI方法,并介绍了从NASA猎户座飞船降落伞和日本宇宙航空研究开发机构(JAXA)次级降落伞的FSI建模中获得的空气动力学力矩数据。

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