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Investigations of impurity seeding and radiation control for long-pulse and high-density H-mode plasmas in JT-60U

机译:JT-60U中长脉冲和高密度H型等离子体的杂质注入和辐射控制研究

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Reduction of heat loading appropriate for the plasma facing components such as the divertor is crucial for a fusion reactor. Power handling by large radiative power loss has been studied in long pulse ELMy H-mode discharges on JT-60U (τ_d = 30-35 s). Case 1 is argon (Ar) seeding into standard ELMy H-mode plasmas, where large radiation loss in the confined region of the main plasma caused a change in ELM characteristics from Type-Ⅰ to Type-Ⅲ. Case 2 is a combination of Ar and nitrogen (Ne) gas seeding into Type-Ⅰ ELMy H-mode plasmas with an internal transport barrier (ITB). For case 1, large radiation loss both from the main plasma and from the divertor was produced, and operation of Type-Ⅲ ELMs was preferable to a reduction in ELM energy loss fraction ( W_(ELM)/w_(dia)) to 0.15%. Both transient and steady-state heat loadings were reduced. Relatively good energy confinement (H_(H98y2) = 0.87 - 0.75) with large f_(rad) (P_(rad)/P_(abs) > 0.8) and divertor plasma detachment was sustained continuously for 13.5 s. For case 2, with reduced Ar seeding to the main plasma and increased divertor radiation with Ne seeding, the ELMy H-mode plasma with an ITB had better energy confinement (H_(H98y2) = 0.95 - 0.8), which was sustained continuously for 12 s. The radiated power was increased primarily in the divertor (f_(rad)~(div) = 0.46-0.72), which was produced both by seeded Ne ions and by carbon influx due to transient (ELM) and steady-state heat loadings in the attached divertor. Reduction in the heat loading was not enough, thus enhancement of the radiated power in the divertor will be necessary for the formation of the divertor detachment.
机译:对于聚变反应堆而言,降低适合于面向等离子体的部件(例如分流器)的热负荷至关重要。在JT-60U上的长脉冲ELMy H模式放电(τ_d= 30-35 s)中,已经研究了由大辐射功率损耗引起的功率处理。案例1是将氩(Ar)注入标准ELMy H型等离子体中,在该等离子体中,主等离子体受限区域内的大量辐射损失导致ELM特性从Ⅰ型转变为Ⅲ型。情况2是将Ar和氮(Ne)气体注入具有内部传输垒(ITB)的Ⅰ型ELMy H型等离子体的组合。对于情况1,主等离子体和偏滤器都产生了很大的辐射损失,并且III型ELM的运行优于将ELM能量损失率(W_(ELM)/ w_(dia))降低到0.15% 。瞬态和稳态热负荷都减少了。较大的f_(rad)(P_(rad)/ P_(abs)> 0.8)和较大的f_(rad)(P_(rad)/ P_(abs)> 0.8)时,能量限制相对较好(H_(H98y2)= 0.87-0.75),并且偏滤器等离子体脱离持续持续13.5 s。对于情况2,由于向主等离子体注入的Ar减少,而与Ne注入相比,增加了发散辐射,因此具有ITB的ELMy H型等离子体具有更好的能量限制(H_(H98y2)= 0.95-0.8),并连续保持12 s。辐射功率主要在分流器中增加(f_(rad)〜(div)= 0.46-0.72),这是由晶种的Ne离子以及由于瞬态(ELM)和稳态热负荷导致的碳流入而产生的。附加的偏滤器。减少热负荷是不够的,因此对于形成滤清器分离件,必须增加滤清器中的辐射功率。

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