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Numerical simulation of the bubble growth due to hydrogen isotopes inventory processes in plasma-irradiated tungsten

机译:等离子体辐照钨中氢同位素存量过程引起的气泡生长的数值模拟

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摘要

Hydrogen isotopes (HI) inventory is a key issue for fusion devices like ITER. It is especially urgent to understand how HI are retained in tungsten since it currently is the most important candidate material for the plasma-facing wall. Bubble growth is an important experimental complication that yet prevents a full understanding of HI retention processes in tungsten walls and most critically the divertor elements. In this work, we develop a model based on rate equations, which includes the bubble growth in tungsten being exposed to a HI plasma. In the model, HI molecules can be produced through recombination processes on the inner surface of a bubble, and HI molecules can also dissociate themselves to solute atoms, and the latter diffuse into the bulk wall because of very high pressures inside the bubble. The present model is applied to simulate how HI are retained in plasma-irradiated tungsten in the form of molecules to explain the wall temperature, trap concentration, incident HI flux and fluence dependencies of bubble growth.
机译:氢同位素(HI)清单是ITER等聚变装置的关键问题。特别重要的是要了解HI如何保留在钨中,因为它目前是面向等离子壁的最重要的候选材料。气泡的生长是一种重要的实验并发症,但却无法完全了解钨壁和最关键的分流器元件中的HI保留过程。在这项工作中,我们开发了基于速率方程的模型,其中包括暴露于HI等离子体的钨中的气泡生长。在该模型中,HI分子可通过气泡内表面的重组过程产生,并且HI分子也可将自身解离为溶质原子,由于气泡内部的压力很高,溶质原子扩散到体壁中。本模型用于模拟HI如何以分子形式保留在等离子辐射的钨中,以解释壁温,陷阱浓度,入射HI通量和气泡生长的通量依赖性。

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