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Robustness studies of ignition targets for the National Ignition Facility in two dimensions

机译:二维国家点火装置点火目标的鲁棒性研究

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Inertial confinement fusion capsules are critically dependent on the integrity of their hot spots to ignite. At the time of ignition, only a certain fractional perturbation of the nominally spherical hot spot boundary can be tolerated and the capsule still achieve ignition. The degree to which the expected hot spot perturbation in any given capsule design is less than this maximum tolerable perturbation is a measure of the ignition margin or robustness of that design. Moreover, since there will inevitably be uncertainties in the initial character and implosion dynamics of any given capsule, all of which can contribute to the eventual hot spot perturbation, quantifying the robustness of that capsule against a range of parameter variations is an important consideration in the capsule design. Here, the robustness of the 300 eV indirect drive target design for the National Ignition Facility [Lindl , Phys. Plasmas 11, 339 (2004)] is studied in the parameter space of inner ice roughness, implosion velocity, and capsule scale. A suite of 2000 two-dimensional simulations, run with the radiation hydrodynamics code LASNEX, is used as the data base for the study. For each scale, an ignition region in the two remaining variables is identified and the ignition cliff is mapped. In accordance with the theoretical arguments of Levedahl and Lindl [Nucl. Fusion 37, 165 (1997)] and Kishony and Shvarts [Phys. Plasmas 8, 4925 (2001)], the location of this cliff is fitted to a power law of the capsule implosion velocity and scale. It is found that the cliff can be quite well represented in this power law form, and, using this scaling law, an assessment of the overall (one- and two-dimensional) ignition margin of the design can be made. The effect on the ignition margin of an increase or decrease in the density of the target fill gas is also assessed. (C) 2008 American Institute of Physics.
机译:惯性约束聚变胶囊主要取决于其点燃热点的完整性。在点火时,只能容忍名义上球形热点边界的某些分数摄动,并且胶囊仍能点火。在任何给定的胶囊设计中,预期的热点扰动小于此最大容许扰动的程度是该设计的点火裕度或坚固性的度量。此外,由于任何给定胶囊的初始特性和内爆动力学不可避免地会存在不确定性,所有这些因素都会导致最终的热点扰动,因此量化该胶囊对一系列参数变化的稳健性是一个重要的考虑因素。胶囊设计。这里,国家点火设施的300 eV间接驱动目标设计的稳健性[Lindl,Phys。等离子11,339(2004)]在内部冰粗糙度,内爆速度和胶囊尺度的参数空间中进行了研究。使用辐射流体动力学代码LASNEX进行的2000个二维仿真套件作为研究的数据库。对于每个比例,识别两个剩余变量中的点火区域,并映射点火悬崖。按照Levedahl和Lindl [Nucl。 Fusion 37,165(1997)]和Kishony and Shvarts [Phys。 Plasmas 8,4925(2001)],此悬崖的位置符合胶囊内爆速度和水垢的幂律。发现悬崖可以很好地用这种幂定律形式表示,并且使用此缩放定律,可以评估设计的整体(一维和二维)着火裕度。还评估了目标填充气体密度增加或减少对点火裕度的影响。 (C)2008美国物理研究所。

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