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Wind Tunnel Test of Subscale Ringsail and Disk-Gap-Band Parachutes

机译:船只围栏的风洞测试和磁盘间隙带降落伞

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A subsonic wind tunnel test was conducted to determine the drag and static aerodynamic coefficients, as well as to capture the dynamic motions of a new Supersonic Ringsail parachute developed by the Low Density Supersonic Decelerator Project. To provide a comparison against current Mars parachute technology, the Mars Science Laboratory's Disk-Gap-Band parachute was also included in the test. To account for the effect of fabric permeability, two fabrics ("low" and "standard" permeability) were used to fabricate each parachute canopy type, creating four combinations of canopy type and fabric material. A wide range of test conditions were covered during the test, spanning Mach numbers from 0.09 to 0.5, and static pressures from 103 to 2116 psf (nominal values). The fabric permeability is shown to have a first-order effect on the aerodynamic coefficients and dynamic motions of the parachutes. For example, for a given parachute type and test condition, models fabricated from "low" permeability fabric always have a larger drag coefficient than models fabricated from "standard" permeability material. This paper describes the test setup and conditions, how the results were analyzed, and presents and discusses a sample of the results. The data collected during this test is being used to create and improve parachute aerodynamic databases for use in flight dynamics simulations for missions to Mars.
机译:进行了亚源隧道测试以确定阻力和静态空气动力学系数,以及捕获由低密度超声波衰减器项目开发的新超声波尾尾船的动态运动。为了提供对当前火星降落伞技术的比较,MARS Science实验室的盘隙带降落伞也包括在测试中。为了考虑织物渗透性的效果,使用两种织物(“低”和“标准”渗透率)来制造每种降伞冠层,产生四种冠层类型和织物材料的组合。在测试期间覆盖了各种测试条件,跨越0.09至0.5的跨越马赫数,静态压力为103至2116psf(标称值)。织物渗透率显示对降落伞的空气动力学系数和动态运动具有一阶效应。例如,对于给定的降落伞类型和测试条件,由“低”渗透织物制造的模型总是具有比由“标准”渗透性材料制成的模型更大的拖曳系数。本文介绍了测试设置和条件,如何分析结果,并呈现并讨论结果的样本。在此测试期间收集的数据用于创建和改进降落伞空气动力学数据库,以便在飞行动态模拟中用于MARS的特派团。

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