首页> 外文会议>International Symposium on Fusion Nuclear Technology(ISFNT-7) pt.A >Introduction of tritium transfer step at surface layer of breeder grain for modeling of tritium release behavior from solid breeder materials
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Introduction of tritium transfer step at surface layer of breeder grain for modeling of tritium release behavior from solid breeder materials

机译:种植粒子表面层的氚转移步骤介绍纯化剂材料氚释放行为造型

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It has been observed in modeling of the tritium release behavior from solid breeder materials by the present authors that the overall mass transfer coefficients representing such surface reactions as adsorption or isotope exchange reactions on breeder surface should be as small as one-several thousandth of the coefficients obtained from experiments where tritium was introduced to the breeder surface from the purge gas. The mass transfer resistance representing tritium transfer from grain surface layer to surface water is newly introduced in this study. It is considered that the mass transfer resistance when tritium is transferred from gas phase to surface water is the same as that from surface water to gas phase. The estimated tritium release curves using the new model presented in this study give good agreement with the observed tritium release curves from Li_4SiO_4,Li_2TiO_3, Li_2ZrO_3 or LiAlO_2. Comparison of the estimated release curve with the experimental release curve is discussed in this study for the case when a purge gas with water vapor is applied to extract bred tritium from various solid breeder materials.
机译:已经观察到本作者通过本作者的氚释放行为的建模,即表示作为吸附或同位素表面的吸附或同位素交换反应的整体传质系数应该小于系数的一千分之一从吹扫气体引入氚表面的实验中获得的实验。在该研究中,新引入了代表从晶粒表面层到地表水的氚转移的传质电阻。认为当氚从气相转移到地表水时,传质阻力与从地表水与气相相同。本研究中提出的新模型的估计氚释放曲线与来自Li_4sio_4,Li_2tio_3,Li_2zro_3或Lialo_2的观察到的氚释放曲线吻合良好。在本研究中讨论了与实验释放曲线的估计释放曲线的比较,因为施加与水蒸气的吹扫气体从各种固体种类材料中提取培养氚时。

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