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Tokamak active laser pyrometry for tungsten deposited layer characterisation

机译:托卡马克有源激光高温测定法用于钨沉积层表征

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摘要

In modern fusion reactors, the erosion of plasma facing surface results in layers deposition on tokamak "cold" surfaces. To provide efficient operation of tokamaks, it is essential to characterise the deposited layer with high tritium content. In situ rapid surface characterisation without reactor components disassembly is required. Active laser pyrometry together with a repetition rate Nd-YAG laser (1 Hz-1 kHz repetition rate frequency) applied for surface heating can be used to characterise some thermo-physical properties (thermal capacity, thermal contact, and conductivity) of a micrometric layer. The pyrometer system was developed and applied to characterise some properties of a W-layer (140μm) on a CFC-substrate. The numerical code developed for 3-D simulation of LH of a surface with the deposited layer was applied to simulate the experimental heating temperatures. The experimental and simulation results were compared. W-layer characterisation was performed by fitting the experimental and theoretical heating temperatures.
机译:在现代聚变反应堆中,面对等离子体的表面的腐蚀导致层沉积在托卡马克“冷”表面上。为了提供托卡马克的有效操作,至关重要的是表征具有高tri含量的沉积层。需要在不拆卸反应器组件的情况下进行原位快速表面表征。有源激光高温测定法和应用于表面加热的Nd-YAG重复频率Nd-YAG激光(1 Hz-1 kHz重复频率)一起可用于表征测微层的一些热物理性质(热容量,热接触和电导率) 。开发了高温计系统,并将其应用于表征CFC基板上W层(140μm)的某些特性。开发用于为具有沉积层的表面的LH进行3-D模拟的数字代码用于模拟实验加热温度。比较了实验结果和仿真结果。通过拟合实验和理论加热温度进行W层表征。

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