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Power Management and Distribution System for a Mars Surface Fission Power Reactor

机译:火星表面裂变功率反应堆的电源管理和分配系统

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This paper presents a power management and distribution system (PMAD) for a growing Martian colony. The colony is designed for a 15-year operation lifetime, and will accommodate a population that grows from 6 to 126 crewmembers. To provide sufficient power, a nuclear fission surface power (FSP) system is proposed with a total capacity of 1?MW _( el ) . The system consists of three 333?kW _( el ) fission reactors. Direct current (DC) transmission with 2000 voltage direct current (VDC) is found to provide the best power density and transmission efficiency for the given configuration. The grounding system consists of grounding rods, grounding grids, and a soil-enhancement plan. A regenerative fuel cell using a propellant tank recycled from the lander was found to have the best energy density and scalability among all the options investigated. The thermal energy reservoir, while having the worst storage efficiency, can be constructed through in situ resource utilization (ISRU), and is a promising long-term option. A daily load following a 12-h cycle can be achieved, and the power variation will be less than 10% during normal operation. Several main load-following scenarios are studied and accommodated, including an extended dust storm, nighttime, daytime, and transient peak power operation. A contingency power operation budget is also considered in the event that all of the reactors fail. The system has a power distribution efficiency of 85%, a storage efficiency of 50%, and a total mass of 13 Mt.
机译:本文介绍了一个不断增长的火星殖民地的电力管理和分配系统(PMAD)。殖民地专为15年的运营寿命而设计,并将容纳从6到126名船员中增长的人口。为了提供足够的功率,提出了一种核裂变表面功率(FSP)系统,其总容量为1?MW _(EL)。该系统由三个333?KW _(EL)裂变反应器组成。发现具有2000电压直流电流(VDC)的直流(DC)传输为给定配置提供最佳功率密度和传输效率。接地系统包括接地杆,接地网格和土壤增强计划。发现使用从着陆器再循环的推进剂罐的再生燃料电池具有最佳的能量密度和所研究的所有选项之间的可扩展性。热能储存器,同时具有最糟糕的存储效率,可以通过原位资源利用率(ISRU)构建,并且是一个有前途的长期选择。可以实现12小时循环后的每日负载,在正常操作期间,功率变化将小于10%。研究和容纳了几种主要负载方案,包括延长的沙尘暴,夜间,白天和瞬态峰值电源运行。在所有反应堆失败的情况下也考虑了应急电力操作预算。该系统的配电效率为85%,储存效率为50%,总质量为13米。

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