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Review of NASA In-Space Propulsion Technology Program Inflatable Decelerator Investments

机译:美国宇航局太空推进技术计划充气减速器投资回顾

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摘要

The NASA In-Space Propulsion Technology (ISPT) Program is managed by the NASA Headquarters Science Mission Directorate and is implemented by the Marshall Space Flight Center in Huntsville, Alabama. The ISPT objective is to fund development of promising in-space propulsion technologies that can decrease flight times, decrease cost, or increase delivered payload mass for future science missions. Before ISPT will invest in a technology, the Technology Readiness Level (TRL) of the concept must be estimated to be at TRL 3. A TRL 3 signifies that the technical community agrees that the feasibility of the concept has been proven through experiment or analysis. One of the highest priority technology investments for ISPT is Aerocapture. The aerocapture maneuver uses a planetary atmosphere to reduce or alter the speed of a vehicle allowing for quick, propellantless (or using very little propellant) orbit capture. The atmosphere is used as a brake, transferring the energy associated with the vehicle's high speed into thermal energy. The ISPT Aerocapture Technology Area (ATA) is currently investing in the development of advanced lightweight ablative thermal protection systems, high temperature composite structures, and heat-flux sensors for rigid aeroshells. The heritage of rigid aeroshells extends back to the Apollo era and this technology will most likely be used by the first generation aerocapture vehicle. As a second generation aerocapture technology, ISPT is investing in three inflatable aerodynamic decelerator concepts for planetary aerocapture. They are: trailing ballute (balloon-parachute), attached afterbody ballute, and an inflatable aeroshell. ISPT also leverages the NASA Small Business Innovative Research Program for additional inflatable decelerator technology development. In mid-2004 ISPT requested an independent review of the three inflatable decelerator technologies funded directly by ISPT to validate the TRL and to identify technology maturation concerns. An independent panel with expertise in advanced thin film materials, aerothermodynamics, trajectory design, and inflatable structures was convened to assess the ISPT investments. The panel considered all major technical subsystems including materials, aerothermodynamics, structural dynamics, packaging, and inflation systems. The panel assessed the overall technology readiness of inflatable decelerators to be a 3 and identified fluid- structure interaction, aeroheating, and structural adhesives to be of highest technical concern.
机译:NASA太空推进技术(ISPT)计划由NASA总部科学任务局管理,并由阿拉巴马州汉斯维尔的马歇尔太空飞行中心实施。 ISPT的目标是为有前途的太空推进技术的发展提供资金,这些技术可以减少飞行时间,降低成本或增加未来科学任务的有效载荷质量。在ISPT投资一项技术之前,必须估计该概念的技术准备水平(TRL)为TRL3。TRL3表示技术界同意该概念的可行性已通过实验或分析证明。 Aerocapture是ISPT的最高优先技术投资之一。航空捕获操纵使用行星大气来降低或改变车辆的速度,从而实现快速,无推进剂(或使用很少的推进剂)的轨道捕获。大气被用作制动器,将与车辆高速相关的能量转换为热能。 ISPT航空捕获技术领域(ATA)目前正在投资开发先进的轻型烧蚀热保护系统,高温复合结构以及用于刚性机壳的热通量传感器。刚性航空器的历史可以追溯到阿波罗时代,这项技术很可能会被第一代航空捕获器使用。作为第二代航空捕获技术,ISPT正在投资用于行星式航空捕获的三种充气式气动减速器概念。它们是:尾随式排卵器(气球降落伞),后排排卵器和可充气的飞机外壳。 ISPT还利用NASA小型企业创新研究计划来进行其他充气式减速器技术开发。 2004年中期,ISPT要求对由ISPT直接资助的三种充气减速器技术进行独立审查,以验证TRL并确定技术成熟度问题。召集了一个在高级薄膜材料,空气热力学,轨迹设计和充气结构方面具有专业知识的独立小组来评估ISPT投资。小组审议了所有主要技术子系统,包括材料,空气动力学,结构动力学,包装和充气系统。专家组评估了充气减速器的整体技术准备情况为3,并将流体-结构相互作用,空气加热和结构胶粘剂确定为最高技术关注点。

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