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Aerial Deployment and Inflation System for Mars Helium Balloons

机译:火星氦气球的空中部署和充气系统

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摘要

A method is examined for safely deploying and inflating helium balloons for missions at Mars. The key for making it possible to deploy balloons that are light enough to be buoyant in the thin, Martian atmosphere is to mitigate the transient forces on the balloon that might tear it.rnA fully inflated Mars balloon has a diameter of 10 m, so it must be folded up for the trip to Mars, unfolded upon arrival, and then inflated with helium gas in the atmosphere. Safe entry into the Martian atmosphere requires the use of an aeroshell vehicle, which protects against severe heating and pressure loads associated with the hypersonic entry flight. Drag decelerates the aeroshell to supersonic speeds, then two parachutes deploy to slow the vehicle down to the needed safe speed of 25 to 35 m/s for balloon deployment. The parachtute system descent dynamic pressure must be approximately 5 Pa or lower at an altitude of 4 km or more above the surface.
机译:研究了一种用于安全部署和充气氦气球以执行火星任务的方法。能够使足够轻的气球在稀薄的火星大气中漂浮的关键在于减轻气球上可能会撕裂的瞬态力.rn完全充气的Mars气球直径为10 m,因此必须折叠起来才能去火星,到达后展开,然后在大气中充入氦气。要安全地进入火星大气层,就需要使用航空航天飞行器,以防止与超音速飞行有关的严酷的加热和压力负荷。阻力使飞机的外壳减速至超音速,然后部署两个降落伞以将车辆减速至安全的25至35 m / s的安全速度,以进行气球部署。在高于地面4 km或更高的高度时,降落伞系统下降的动态压力必须约为5 Pa或更低。

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    《NASA Tech Briefs》 |2009年第7期|43-43|共1页
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