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An RLV-based Plume Impingement Test Bed: Terrestrial Evaluation of Landing Pads Constructed of Granular Materials

机译:基于RLV的羽流冲击试验台:颗粒材料构建的着陆垫的地面评估

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Uncertainty regarding the consequences of a rocket engine's plume interaction with a landing surface is a fundamental challenge posed by extraterrestrial vehicle landings. Prior research has established that a vehicle's landing thrusters can undermine the stability of the landing surface, putting the exploration vehicle at risk of an off-nominal landing or an altogether mission loss - this is known as "the plume problem." Analysis and experimentation have yielded several categories of design solutions to the plume problem through various treatments or configurations of the surface to create a landing pad using in situ materials. In support of research to enable missions to other celestial bodies, the authors have developed the Plume Impingement Test Bed (PITB) to provide a means of i) gathering data relating to plume effects upon prepared and unprepared soil media and ii) evaluating the effectiveness of design solutions to the plume problem. The PITB provides a terrestrial means of evaluating realistic plume effects by incorporating a flight-rated reusable launch vehicle (RLV), equipped with a liquid-propellant rocket engine. The PITB combines a Masten Space Systems, Inc. (Masten) vertical take-off and vertical landing (VTVL) RLV with a suite of instruments and a procedural framework to gather data and characterize the effects of a plume's interaction with a surface. The PITB is well-equipped to evaluate landing surfaces that have been prepared using robotic or other experimental methods to stabilize a surface for use as a landing pad. In operation, the instrumentation suite is deployed at a test site, calibrated and then the test surface is exposed to the VTVL RLV rocket plume. This paper will describe the design, operations and capabilities of the PITB.
机译:火箭发动机的羽流与着陆表面相互作用的后果的不确定性是外星飞行器着陆带来的根本挑战。先前的研究已经确定,车辆的着陆推进器会破坏着陆表面的稳定性,使勘探飞行器处于偏离标称着陆或完全失去任务的危险中-这被称为“羽流问题”。通过对表面进行各种处理或配置以使用原位材料创建平台,分析和实验已经为羽流问题提供了几类设计解决方案。为了支持能够执行任务到其他天体的研究,作者开发了羽流冲击试验台(PITB),以提供以下手段:i)收集与准备和未准备的土壤介质上的羽流影响有关的数据,以及ii)评估设计羽状问题的解决方案。 PITB通过结合配备有液体推进火箭发动机的飞行级可重复使用运载火箭(RLV),提供了一种评估现实羽流效果的地面手段。 PITB将Masten Space Systems,Inc.(Masten)垂直起飞和垂直着陆(VTVL)RLV与一套仪器和一个程序框架相结合,以收集数据并表征羽流与地面相互作用的影响。 PITB设备齐全,可以评估使用机器人或其他实验方法制备的着陆表面,以稳定用作着陆垫的表面。在操作中,将仪器套件部署在测试现场并进行校准,然后将测试表面暴露于VTVL RLV火箭羽流中。本文将描述PITB的设计,操作和功能。

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