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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >A novel recession rate physics methodology for space applications at CIRA by means of CIRCE radioactive beam tracers
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A novel recession rate physics methodology for space applications at CIRA by means of CIRCE radioactive beam tracers

机译:通过Circe放射线示踪剂对CiRA的空间应用的新衰退率物理方法

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Thermal protection systems (TPSs) of spacecrafts, either for single use or reusable, experience wear by ablation and erosion, due to the high heat fluxes during a re-entry phase in the atmosphere. The determination of the wear rate is a crucial point, which is presently mainly possible in aerospace on-ground measurements by means of invasive diagnostics. The purpose of this paper is to present novel contactless, online, high-sensitivity and non-intrusive diagnostics for wear measurements based on radioactive tracers. We propose the technique for future on-ground experiments that might later be developed to perform in-flight TPSs monitoring, thus significantly increasing the safety of the aerospace vehicles. The basic ideas of the method, its sensitivity investigated by GEANT4 simulations, and the future experimental validation are outlined.
机译:由于在大气中重新进入阶段期间的高热量,通过消融和侵蚀,宇宙飞船的热保护系统(TPSS),无论是单一使用还是可重复使用,都会通过消融和侵蚀的磨损。 磨损率的测定是一种关键点,目前通过侵入性诊断目前主要是在航空航天地面测量中。 本文的目的是提出基于放射性示踪剂的磨损测量的新型非接触式,在线,高灵敏度和非侵入性诊断。 我们提出了未来实验的技术,以后可以开发出用于执行飞行中的TPS监测,从而显着提高了航空航天车辆的安全性。 该方法的基本思想,由GEANT4模拟调查的敏感性,以及未来的实验验证。

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