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Investigation of Heat Recuperation in a Concentric Hydrogen Reduction Reactor

机译:同心氢还原反应器中的换热研究

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Heat recuperation is a new design concept being considered for the next generation of ISRU batch reactors. Transferring heat from reacted regolith into the next batch of fresh regolith could result in significant system power savings. A new apparatus, which mimics the current reactor design, was constructed to test heat recuperation between two annular chambers. This apparatus accommodates both gas fluidization and vibrational fluidization to improve heat transfer within the JSC-1A regolith simulant. Three tests were performed using helium gas fluidization and one with combined gas and vibrational fluidization. Experimental data was used to improve the analytical model, with good agreement during the recuperation process. Preliminary results suggest that most of the pre-heating of the fresh simulant is supplied by the reactor walls and not by the reacted soil. This finding may decrease the anticipated benefit of this type of recuperation scheme. Vibrofluidization showed potential for improving heat transfer in reactors of this size, but requires additional investigation.
机译:换热是下一代ISRU间歇式反应器正在考虑的一种新的设计概念。将热量从反应后的硬质硅石传递到下一批新鲜的硬质硅石中,可以节省大量的系统功率。建造了一种模仿当前反应堆设计的新设备,以测试两个环形腔室之间的换热。该装置可同时进行气体流化和振动流化,以改善JSC-1A重水石模拟物内的热传递。使用氦气流化进行了三项测试,其中一项是结合气体和振动流化进行的。实验数据被用于改进分析模型,在恢复过程中具有良好的一致性。初步结果表明,新鲜模拟物的大多数预热是由反应器壁提供的,而不是由反应后的土壤提供的。这一发现可能会降低这种类型的恢复方案的预期收益。振动流化显示了改善这种规模反应堆传热的潜力,但需要进一步研究。

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