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Experimental validation of a model for particle recycling and tungsten erosion during ELMs in the DIII-D divertor

机译:DIII-D分流器中ELM期间颗粒回收和钨腐蚀模型的实验验证

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A refined version of the Fundamenksi-Moulton 'free-streaming' model (FSM) for the dynamics of divertor density, particle flux, and heat flux during edge localized modes (ELMs) is presented. This model depends only on inter-ELM pedestal and divertor conditions and, crucially, incorporates particle recycling: a FSM with recycling model, FSRM. The effective particle recycling coefficient,Reff, is the only empirical fitting parameter in the FSRM. The predictions of the FSRM are systematically tested against a DIII-D database of ELM ion and energy fluence measurements and are shown to be consistent with the model across a wide range of pedestal and divertor conditions using a constant value of 0.96 forReff. Predictions for W sputtering during ELMs are developed based on the FSRM. It is concluded that energetic free-streaming D+ions and C6+impurities are the dominant contributors to the intra-ELM gross erosion of W in the DIII-D divertor, i.e., recycling ions and impurities have relatively little impact on the total W sputtering rate. These calculations are also shown to be consistent with spectroscopic measurements of W gross erosion for three different pedestal conditions after incorporating the strong electron density dependence of the WI 400.8?nm ionizations/photon (S/XB) coefficient.
机译:提出了Fundamenksi-Moulton“自由流动”模型(FSM)的改进版本,该模型针对边缘局部模式(ELM)期间的偏滤器密度,粒子通量和热通量的动力学。该模型仅取决于ELM基座和分流器之间的条件,并且至关重要的是结合了颗粒回收:带有回收模型的FSM,FSRM。有效颗粒回收系数Reff是FSRM中唯一的经验拟合参数。 FSRM的预测是根据ELM离子和能量通量测量值的DIII-D数据库进行系统测试的,并显示了在广泛的基座和偏滤条件下与模型保持一致的特性,Reff的恒定值为0.96。基于FSRM开发了ELM中W溅射的预测。结论是,高能自由流动的D +离子和C6 +杂质是DIII-D偏滤器中W内部ELM总腐蚀的主要贡献因素,即循环离子和杂质对总W溅射的影响相对较小率。这些计算结果还表明,在结合了WI 400.8?nm电离/光子(S / XB)系数的强电子密度依赖性之后,对于三种不同的基座条件,W的总腐蚀的光谱测量结果是一致的。

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