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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Simulations of Wakes and Parachute Environments for Supersonic Flight Test Design.
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Simulations of Wakes and Parachute Environments for Supersonic Flight Test Design.

机译:APS-流体动力学APS部门第70届年会-事件-超音速飞行测试设计的尾迹和降落伞环境模拟。

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NASA's ASPIRE (Advanced Supersonic Parachute Inflation Research and Experiments) project is a risk-reduction activity for a future mission, Mars2020. ASPIRE will investigate the supersonic deployment, inflation and aerodynamics of a full-scale disk-gap-band (DGB) parachute in the wake of a slender body at high altitudes over Earth. The leading slender body has about 1/6-th the diameter of the entry capsule that will use this parachute for descent at Mars. ASPIRE flight test design (targeting, safety and recovery) requires models for deployment, inflation and aerodynamic performance of the parachute. However, there is limited flight and experimental data for supersonic DGBs behind slender bodies. This presentation describes the use of CFD in supplementing the available data to construct a parachute aerodynamics model for ASPIRE. Simulations are used to understand the effects of the leading body on the wake, and on the canopy loads, results of which will be presented. The first flight test is scheduled for September 2017. Comparisons of preliminary test data against the pre-test parachute model will be presented.
机译:NASA的ASPIRE(高级超音速降落伞通货膨胀研究和实验)项目是一项针对未来任务Mars2020的降低风险的活动。 ASPIRE将研究在地球上高海拔地区一个细长的物体之后超音速的展开,全尺寸磁盘间隙带(DGB)降落伞的空气动力学特性。细长的前身的直径约为进入舱的直径的1/6,该舱将使用降落伞在火星上下降。 ASPIRE飞行测试设计(目标,安全和恢复)要求模型用于降落伞的展开,充气和空气动力学性能。但是,超音速DGB在纤细身后的飞行和实验数据有限。本演示文稿介绍了使用CFD补充可用数据以构建ASPIRE的降落伞空气动力学模型的方法。仿真用于了解前驱体对尾流和机盖载荷的影响,将介绍其结果。首次飞行测试计划于2017年9月进行。将提供初步测试数据与测试前降落伞模型的比较。

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