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INTEGRATED NTP VEHICLE RADIATION DESIGN

机译:集成NTP车辆辐射设计

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摘要

The development of a nuclear thermal propulsion stage requires consideration for radiation emitted from the nuclear reactor core. Applying shielding mass is an effective mitigating solution, but a better alternative is to incorporate some mitigation strategies into the propulsion stage and crew habitat. In this way, the required additional mass is minimized and the mass that must be applied may in some cases be able to serve multiple purposes. Strategies for crew compartment shielding are discussed that reduce dose from both engine and cosmic sources, and in some cases may also serve to reduce life support risks by permitting abundant water reserves. Early consideration for integrated mitigation solutions in a crewed nuclear thermal propulsion (NTP) vehicle will enable reduced radiation burden from both cosmic and nuclear sources, improved thrust-to-weight ratio or payload capacity by reducing 'dead mass' of shielding, and generally support a more robust risk posture for a NTP-powered Mars mission by permitting shorter trip times and increased water reserves.
机译:核热推进级的发展需要考虑从核反应堆堆芯发射的辐射。施加防护物是一种有效的缓解措施,但更好的替代方法是将某些缓解策略纳入推进阶段和机组人员的居住环境。以此方式,所需的附加质量被最小化,并且在某些情况下必须施加的质量可能能够用于多种目的。讨论了机舱防护策略,以减少来自发动机和宇宙源的剂量,并且在某些情况下,还可以通过允许大量的水储备来降低生命维持的风险。早期考虑在乘员式核热推进(NTP)车辆中采用综合缓解解决方案,将能够减少来自宇宙和核源的辐射负荷,通过减少屏蔽的“死质量”来提高推力重量比或有效负载能力,并普遍支持通过允许更短的旅行时间和增加的水储量,以NTP为动力的火星任务具有更强大的风险态势。

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