首页> 外文期刊>Fusion Science and Technology >TRITIUM INVENTORY OF INERTIAL FUSION ENERGY TARGET FABRICATION FACILITIES: EFFECT OF FOAM DENSITY AND CONSIDERATION OF TARGET YIELD OF DIRECT DRIVE TARGETS
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TRITIUM INVENTORY OF INERTIAL FUSION ENERGY TARGET FABRICATION FACILITIES: EFFECT OF FOAM DENSITY AND CONSIDERATION OF TARGET YIELD OF DIRECT DRIVE TARGETS

机译:惰性融合能量目标制造设施的库存清单:泡沫密度的影响和考虑直接驱动目标的目标屈服

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摘要

The tritium inventory of direct drive inertial fusion energy (IFE) target filling facilities is examined in the interest of minimizing the tritium inventory. A model is described that has been developed to evaluate the tritium inventory of the target fitting process as a function of filling and layering parameters, as well as target design parameters. Previous studies by A. Nobile et al. showed that the temperature and the fill system void fraction have a significant effect on the tritium inventory. The current study uses the model to examine the effect of deuterium-tritium (DT) ice layering time and density of the CH foam in the target on the tritium inventory. The study shows that increasing the foam density and decreasing the DT ice layering time significantly reduce the tri- tium inventory. Fortunately, one-dimensional target design calculations indicate that the foam density in the direct drive target can be increased to ~200 mg/cm~3 without significant degradation of the target yield. Having evaluated and minimized the theoretical tritium inventory, calculations were performed with more realistic batch fitting scenarios. The inventories associated with "real" filling scenarios approach the theoretical minimum inventory as the number of batches is increased, resulting in tritium inventories that seem acceptable for future IFE target DT filling facilities.
机译:为了最大程度地减少tri的存量,研究了直接驱动惯性聚变能(IFE)目标填充设施的存量。描述了一个模型,该模型已开发为根据填充和分层参数以及目标设计参数来评估目标拟合过程的inventory库存。 A. Nobile等人先前的研究。结果表明温度和填充系统的空隙率对inventory的存量有显着影响。当前的研究使用该模型来检查of- ice(DT)冰分层时间和目标中CH泡沫密度对on存量的影响。研究表明,增加泡沫密度和减少DT冰层时间可以显着减少tri的存量。幸运的是,一维靶材设计计算表明,直接驱动靶材中的泡沫密度可以增加到〜200 mg / cm〜3,而不会显着降低靶材的产量。在评估并最小化了tri的理论存量之后,使用更现实的批量拟合方案进行了计算。随着批次数量的增加,与“实际”灌装方案相关的库存接近理论上的最低库存,从而导致tri气库存对于未来的IFE目标DT灌装设施而言似乎可以接受。

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