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A Stainless-Steel, Uranium-Dioxide, Potassium-Heatpipe-Cooled Surface Reactor

机译:不锈钢,二氧化铀,钾 - 热管冷却表面反应器

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One of the primary goals in designing a fission power system is to ensure that the system can be developed at a low cost and on an acceptable schedule without compromising reliability. The Heatpipe Power System (HPS) is one possible approach for producing near-term, low-cost, space fission power. The Heatpipe Operated Moon Exploration Reactor (HOMER-25) is a HPS designed to produce 25-kWe on the lunar surface for 5 full-power years. The HOMER-25 core is made up of 93% enriched UO2 fuel pins and stainless-steel (SS)/potassium (K) heatpipes in a SS monolith. The heatpipes transport heat generated in the core through the water shield to a potassium boiler, which drives six Stirling engines. The operating heatpipe temperature is 880 K and the peak fast fluence is 1.6e21 n/cm2, which is well within an established database for the selected materials. The HOMER-25 is designed to be buried in 1.5 m of lunar regolith during operation. By using technology and materials which do not require extensive technology development programs, the HOMER-25 could be developed at a relatively low cost. This paper describes the attributes, specifications, and performance of the HOMER-25 reactor system.
机译:设计裂变电力系统的主要目标是确保系统可以以低成本和可接受的时间表开发,而不会影响可靠性。热管电源系统(HPS)是生产近期,低成本,空间裂变功率的一种可能方法。热管操作的月亮勘探反应堆(Homer-25)是一个旨在在月球表面上生产25-kWe的HPS,5年度。 Homer-25核心由93%的UO2燃料销和SS整料中的不锈钢(SS)/钾(K)加热器组成。将芯中产生的热量通过水屏蔽到钾锅炉中,驱动六个斯特林发动机。操作加热器温度为880 k,峰值快速流量为1.6E21N / cm2,这在适用于所选材料的建立数据库中。荷马-25设计用于在运行期间将在1.5米的月球极端内埋入。通过使用不需要大量技术开发计划的技术和材料,荷马-25可以以相对较低的成本开发。本文介绍了Homer-25反应器系统的属性,规格和性能。

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