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Accident Analysis of Heat Pipe Cooled Space Reactor

机译:热管冷却空间反应器的事故分析

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A space power with high power density, light weight, low cost and high reliability is of crucial importance to future exploration of deep space. Space reactor is an excellent candidate because of its unique characteristics of high specific power, low cost, strong environment adaptability and so on. Among all types of space reactors, heat pipe cooled space reactor, which adopts the passive heat pipe as core cooling component, is considered as one of the most promising choice and is widely studied all over the world. A transient analysis code (TAPIRS) for heat pipe cooled space reactor power system is developed. The TAPIRS based on point reactor kinetics model, lumped parameter core heat transfer model, combined heat pipe (HP) model (self-diffusion model, flat-front startup model and network model), energy conversion model of alkali metal thermal-to-electric conversion units (AMTEC), and HP radiator model. Three typical accidents, i.e., control drum failure, AMTEC failure and partial loss of the heat transfer area of radiator are then analyzed using TAPIRS. The results show that the heat pipe cooled space reactor has excellent inherent safety characteristics.
机译:功率密度高,重量轻,成本低,高可靠性高的空间功率至关重要,对未来对深空的探索至关重要。空间电抗器是一个优秀的候选者,因为它具有高特种功率,成本低,环境适应性强大的独特特性等。在所有类型的空间反应堆中,采用被动热管作为核心冷却部件的热管冷却空间反应器被认为是最有前途的选择之一,并且广泛研究世界各地。开发了用于热管冷却空间电抗电源系统的瞬态分析码(Tapirs)。基于点电抗器动力学模型的Tapirs,集总参数核传热模型,组合热管(HP)模型(自扩散模型,平面启动模型和网络模型),碱金属热电型的能量转换模型转换单元(AMTEC)和HP散热器模型。然后,使用Tapir分析三种典型的事故,即控制滚筒故障,Amtec故障和散热器的传热面积的部分损失。结果表明,热管冷却空间反应器具有优异的固有安全特性。

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