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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Hydrogen isotope retention of JT-60U W-shaped divertor tiles exposed to DD discharges
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Hydrogen isotope retention of JT-60U W-shaped divertor tiles exposed to DD discharges

机译:暴露于DD放电的JT-60U W形偏滤器瓦的氢同位素保留

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Deuterium (D) and Hydrogen (H) retention in carbon tiles exposed to DD and HH discharges in the JT-60U W-shaped divertor has been investigated by means of thermal desorption spectroscopy (TDS) and secondary ion mass spectrometry (SIMS). In the thick re-deposited layers on the outer divertor, hydrogen (H + D) was retained rather homogeneously with its concentration of 0.03 in (D + H)/C atomic ratio, which is attributed to the surface temperature rise above 900 K. Owing to the HH discharges performed after the DD discharges for tritium removal, H-dominated re-deposited layers were added on D-dominated re-deposited layers. In addition D retained in near surface layers were replaced by H both for re-deposited and eroded area. Accordingly deuterium concentration peaked at a little inside behind the H dominated surface layers for all tiles. The temperature increase during the discharge very likely causes the saturation of hydrogen retention even in the re-deposited layers. Accordingly the global wall saturation was observed in JT-60U. (c) 2006 Elsevier B.V. All rights reserved.
机译:JT-60U W形偏滤器中暴露于DD和HH放电的碳砖中的氘(D)和氢(H)保留量已通过热解吸光谱(TDS)和二次离子质谱(SIMS)进行了研究。在外分流器上厚厚的再沉积层中,氢(H + D)以(D + H)/ C原子比为0.03的浓度相当均匀地保留,这归因于表面温度上升到900 K以上。由于在用于DD的去除discharge的DD放电之后进行的HH放电,因此在D占优势的再沉积层上添加了H占优势的再沉积层。另外,保留在近表面层中的D被H代替,以重新沉积和腐蚀。因此,所有瓷砖的氘浓度都在H为主的表面层后面的一点点达到峰值。即使在再沉积层中,放电过程中的温度升高也很可能导致氢保留饱和。因此,在JT-60U中观察到整体壁饱和。 (c)2006 Elsevier B.V.保留所有权利。

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