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Defining the Mars Ascent Problem for Sample Return

机译:定义MARS Ascent问题进行样本返回

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Lifting geology samples off of Mars is both a daunting technical problem for propulsion experts and a cultural challenge for the entire community that plans and implements planetary science missions. The vast majority of science spacecraft require propulsive maneuvers that are similar to what is done routinely with communication satellites, so most needs have been met by adapting hardware and methods from the satellite industry. While it is even possible to reach Earth from the surface of the moon using such traditional technology, ascending from the surface of Mars is beyond proven capability for either solid or liquid propellant rocket technology. Miniature rocket stages for a Mars ascent vehicle would need to be over 80 percent propellant by mass. It is argued that the planetary community faces a steep learning curve toward nontraditional propulsion expertise, in order to successfully accomplish a Mars sample return mission. A cultural shift may be needed to accommodate more technical risk acceptance during the technology development phase.
机译:举起火星的地质样本是推进专家的令人生畏的技术问题以及整个社区的文化挑战,计划和实施行星科学任务。绝大多数科学宇宙飞船需要推进的动作,类似于常规通过通信卫星完成的操作,因此大多数需要通过从卫星行业调整硬件和方法来满足。虽然甚至可以使用这种传统技术从月亮表面到达地球,但从MARS表面的上升是针对固体或液体推进剂火箭技术的证明能力。 MARS上升车辆的微型火箭阶段需要超过80%的推进剂质量。据称,行星社区面临着急剧学习曲线,朝着非传统推进专业知识,以成功完成火星样本返回任务。可能需要文化转变来适应技术开发阶段的更多技术风险接受。

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