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Target chamber gas response and vaporization in a laser and a heavy ion beam IFE reactor

机译:激光和重离子束IFE反应器中的靶室气体响应和汽化

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The authors have investigated the target chamber designs for two IFE (inertial-confinement fusion energy) reactors (SOMBRERO and OSIRIS). The CONRAD computer code has been used to analyze certain critical aspects of these designs. Auto-neutralized transport is considered and a gas density is used that precludes protection of the first surface of the target chamber from X-rays and ions. The dominant issue in the design of the SOMBRERO laser fusion target chamber is the reradiation of absorbed target energy from the gas to the wall of the target chamber. In the OSIRIS heavy ion fusion target chamber, vaporization of material from the wall is the most important consideration. In SOMBRERO, 0.5 torr of xenon gas should allow beam transport and will protect the graphite wall vaporization by target energy. In OSIRIS, it was found that the FLIBE is vaporized and that a high peak pressure but moderate impulse shock reaches the vapor/liquid interface in the FLIBE.
机译:作者已经研究了两个IFE(惯性限制融合能量)反应器(SoMbrero和Osiris)的目标室设计。康拉德计算机代码已被用于分析这些设计的某些关键方面。考虑自动中和的传输,并使用气体密度从X射线和离子中排除了目标室的第一表面的保护。 Sombrero激光融合目标室的设计中的主导问题是将吸收的目标能量从气体到靶室壁的划变。在Osiris重离子融合目标室中,来自墙壁的材料的蒸发是最重要的考虑因素。在Sombrero中,0.5托的氙气气体应允许梁运输,并将通过目标能量保护石墨壁蒸发。在Osiris中,发现褶皱被蒸发,并且高峰压力,但温和的脉冲冲击达到了烤肉中的蒸汽/液体界面。

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