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Integrated simulation of ELM energy loss and cycle in improved H-mode plasmas

机译:改进的H型等离子体中ELM能量损失和循环的集成模拟

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The energy loss due to an edge localized mode (ELM) crash and its cycle have been studied by using an integrated core transport code with a stability code for peeling-ballooning modes and a transport model of scrape-off-layer (SOL) and divertor plasmas. The integrated code reproduces a series of ELMs with the following characteristics. The ELM energy loss increases with decreasing collisionality and the ELM frequency increases linearly with the input power, as seen in experiments of type-I ELMs. A transport model with the neoclassical transport in the pedestal connected to the SOL parallel transport reproduces a lowered inter-ELM transport in the case of low collisionality so that the ELM loss power is enhanced as observed in experiments. The inter-ELM energy confinement time evaluated from simulation results agrees with the scaling based on the JT-60U data. The steep pressure gradient in the core just beyond the pedestal top, desirable for improved H-mode plasmas with the H_(H98y2) factor above unity, is found to enhance the ELM energy loss and reduce the ELM frequency so that the ELM loss power remains constant. The steep pressure gradient in the core beyond the pedestal top broadens eigenfunction profiles of unstable modes and possibly induces subsequent instabilities. In the subsequent instabilities, when a large energy is transported to the vicinity of the separatrix by the instabilities, a subsequent instability arises near the separatrix and makes an additional loss.
机译:通过使用集成的芯传输代码和用于剥离气球模式的稳定性代码以及刮层和偏滤器的传输模型,研究了由于边缘局部模式(ELM)碰撞而导致的能量损失及其周期等离子。集成代码再现了具有以下特征的一系列ELM。如I型ELM的实验所示,ELM能量损失随着碰撞性的降低而增加,并且ELM频率随输入功率线性增加。在低碰撞性的情况下,基座上具有新古典运输的运输模型与SOL平行运输相连接,从而降低了ELM间运输,从而提高了ELM的损失能力,如在实验中观察到的那样。根据仿真结果评估的ELM间能量限制时间与基于JT-60U数据的缩放比例一致。已经发现,刚好超过基座顶部的芯部中陡峭的压力梯度对于改善H_(H98y2)因子大于1的H模式等离子体是理想的,这会增强ELM能量损耗并降低ELM频率,从而保持ELM损耗功率不变。超出基座顶部的岩心中陡峭的压力梯度会加宽不稳定模式的本征函数分布,并可能引起后续的不稳定性。在随后的不稳定性中,当大的能量由于不稳定性而被输送到分离线附近时,在分离线附近会出现随后的不稳定性,并造成额外的损失。

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