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Intrinsic molybdenum impurity density and radiative power losses with their scalings in ohmically and ICRF heated Alcator C-Mod and FTU tokamak plasmas

机译:欧姆和ICRF加热的Alcator C-Mod和FTU托卡马克等离子体中的本征钼杂质密度和辐射功率损耗及其缩放

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A new radiative cooling curve for molybdenum, determined from the Hebrew University, Jerusalem-Lawrence Livermore atomic code (HULLAC) has been used to estimate the radiative power losses from various ion cyclotron resonance frequency (ICRF) and ohmically heated Alcator C-Mod tokamak plasmas and ohmically heated Frascati tokamak upgrade (FTU) plasmas. This cooling curve has been found to accurately predict the radiative losses from molybdenum ions in plasma. Radiative losses from molybdenum computed by using the HULLAC cooling curve could typically account for greater than 60% of the total radiative losses as measured by bolometry in Alcator C-Mod tokamak plasmas. The molybdenum density was found to be as high as similar to 10(11) particles cm(-3) (n(Mo)(e) similar to 0.001) in ICRF heated plasmas. Plasmas after botonization of the plasma facing surfaces had the lowest molybdenum density and radiated power of all the plasmas examined; ICRF heated plasmas had the highest. The molybdenum density and radiative power losses were found to increase roughly linearly with input ICRF power during different heating schemes in plasmas with both I-I-mode and L-mode confinement. Although the molybdenum densities were found to decrease with increasing electron density, the radiative power losses did not change significantly for II types of plasmas studied in Alcator C-Mod and FTU: diverted plasmas heated with ICRF and both limited and diverted plasmas heated ohmically. [References: 42]
机译:根据希伯来大学耶路撒冷-劳伦斯·利弗莫尔原子代码(HULLAC)确定的新的钼辐射冷却曲线已用于估算各种离子回旋共振频率(ICRF)和欧姆加热的Alcator C-Mod托卡马克等离子体的辐射功率损耗和欧姆加热的弗拉斯卡蒂托卡马克升级(FTU)等离子。已发现该冷却曲线可准确预测等离子体中钼离子的辐射损失。在Alcator C-Mod托卡马克等离子体中,通过辐射热测定法,通过使用HULLAC冷却曲线计算出的钼的辐射损耗通常可占总辐射损耗的60%以上。发现在ICRF加热的等离子体中,钼密度与10(11)cm(-3)cm(-3)(n(Mo)/ n(e)与0.001类似)一样高。在面向等离子体的表面进行硼化处理后,等离子体的钼密度和辐射功率最低。 ICRF加热的等离子体最高。发现在I-I模式和L模式限制的等离子体中,在不同的加热方案期间,钼密度和辐射功率损耗随输入ICRF功率大致呈线性增加。尽管发现钼密度随电子密度的增加而降低,但是在Alcator C-Mod和FTU中研究的II型等离子体的辐射功率损耗并没有显着变化:用ICRF加热的分流等离子体以及欧姆加热的有限和分流等离子体。 [参考:42]

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