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Deuteriuma€“tritium catalytic reaction in fast ignition: Optimum parameters approach

机译:快速点火中的氘€催化反应:最佳参数法

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One of the main concerns about the currentworking on nuclear power reactors is the potential hazard of their radioactive waste. There is hope that this issue will be reduced in next generation nuclear fusion power reactors. Reactors will release nuclear energy through microexplosions that occur in a mixture of hydrogen isotopes of deuterium and tritium. However, there exist radiological hazards due to the accumulation of tritium in the blanket layer. A catalytic fusion reaction of DTe?‘¥ mixture may stand between DD and an equimolar DT approach in which the fusion process continues with a small amount of tritium seed. In this paper, we investigate the possibility of DTe?‘¥ reaction in the fast ignition (FI) scheme. The kinematic study of the main mechanism of the energy gaina€“loss term, which may disturb the ignition and burn process, was performed in FI and the optimum values of precompressed fuel and proton beam driver were derived. The recommended values of fuel parameters are: areal density $?? R a‰¥ 5e?‘”cdot$cm-2 and initial tritium fraction e?‘¥ a‰¤ 0.025. For the proton beam, the corresponding optimum interval values are proton average energy $3a‰¤ E_p a‰¤ 10$ MeV, pulse duration $5 a‰¤ t_p a‰¤ 15$ ps and power $5a‰¤ W_p a‰¤ 12 ?— 10^{22}$ (keV$cdot$cm3$cdot$ps-1). It was proved that under the above conditions, a fast ignition DTe?‘¥ reaction stays in the catalytic regime.
机译:当前在核动力反应堆上工作的主要关切之一是其放射性废物的潜在危害。希望在下一代核聚变动力反应堆中减少这个问题。反应堆将通过氘和tri的氢同位素混合物中发生的微爆炸释放核能。然而,由于the在覆盖层中的积累,存在放射学危害。 DTe-¥混合物的催化熔融反应可能介于DD和等摩尔DT方法之间,在该方法中,熔融过程会继续进行,并带有少量tri种子。在本文中,我们研究了快速点火(FI)方案中DTe?’¥反应的可能性。在FI中对可能影响点火和燃烧过程的能量损失项的主要机理进行了运动学研究,得出了预压缩燃料和质子束驱动器的最佳值。燃料参数的建议值为:面密度$ ?? R a‰¥ 5e?’” cdot $ cm-2和初始initial分数e?” ¥ 0.025。对于质子束,相应的最佳间隔值为质子平均能量$ 3a‰¤E_p a‰¤10$ MeV,脉冲持续时间$ 5 a‰¤t_p a‰¤15 $ ps和功率$ 5a‰¤W_p a‰¤12 ?— 10 ^ {22} $(keV $ cdot $ cm3 $ cdot $ ps-1)。事实证明,在上述条件下,快速点火DTe?′¥反应停留在催化状态。

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