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Impact of tritium removal and He-3 recycling on structure damage parameters in a D―D fusion system

机译:―融合系统中removal的去除和He-3的循环利用对结构损伤参数的影响

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摘要

Removing tritium produced by D―D fusion and recycling part of it after it decays to He-3 significantly reduces the fraction effusion energy carried by neutrons in a D―D system. For a catalyzed D―D system (no tritium removal), the peak dpa rate in candidate structural materials is 25―35% lower than that in an equivalent D-T system with the same fusion power wall loading. The gas production and transmutation rates are about 60% lower. As tritium is removed gas production and transmutations decrease by more than two orders of magnitude and the dpa rate decreases by a factor of 2.3―2.8. An additional reduction of a factor of 1.6―1.7 in damage parameters is achieved by recycling the removed tritium as He-3. This results in significant lifetime enhancement of structural materials. Information from tests in fission reactor spectra would be directly relevant in determining the lifetime of the structural material in this He-3-recycled system.
机译:去除由D–D聚变产生的tri,并在其分解为He-3后对其一部分进行回收,这将显着降低D–D系统中中子所携带的分数渗出能量。对于催化的D-D系统(不去除tri),候选结构材料中的峰值dpa速率比具有相同聚变力墙负载的等效D-T系统的峰值dpa速率低25-35%。气体产生和trans变率降低约60%。随着removed的去除,气体产生和trans变减少了两个数量级以上,dpa速率降低了2.3-2.8。通过将去除的tri作为He-3循环使用,可将损伤参数进一步降低1.6-1.7倍。这导致结构材料的使用寿命大大延长。来自裂变反应堆光谱测试的信息将直接与确定此He-3循环系统中结构材料的寿命有关。

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