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缓解金星热屏蔽部署的有效载荷分离风险进展

Progress in Payload Separation Risk Mitigation for a Deployable Venus Heat Shield.
作者:Smith, B. P.Yount, B. C.Venkatapathy, E.Stern, E. C.Prabhu, D. K.Litton, D. K. 加工时间:2014-09-01 信息来源:科技报告(NASA) 索取原文[14 页]
关键词:大气层;减速;系统工程;热屏蔽;有效载荷控制;行星着陆
摘 要:A deployable decelerator known as the Adaptive Deployable Entry and Placement Technology (ADEPT) offers substantial science and mass savings for the Venus In Situ Explorer (VISE) mission. The lander and science payload must be separated from ADEPT during atmospheric entry. This paper presents a trade study of the separation system concept of operations and provides a conceptual design of the baseline: aft-separation with a subsonic parachute. Viability of the separation system depends on the vehicle's dynamic stability characteristics during deceleration from supersonic to subsonic speeds. A trajectory sensitivity study presented shows that pitch damping and Venusian winds drive stability prior to parachute deployment, while entry spin rate is not a driver of stability below Mach 5. Additionally, progress in free-flight CFD techniques capable of computing aerodynamic damping parameters is presented. Exploratory simulations of ADEPT at a constant speed of Mach number of 0.8 suggest the vehicle may have an oscillation limit cycle near 5 angle-of-attack. The proposed separation system conceptual design is thought to be viable.
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