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Issues of Perpendicular Conductivity and Electric Fields in Fusion Devices

机译:聚变设备中的垂直电导率和电场问题

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At present it is well understood that the key element in the transition physics is the origin of the strong radial electric field and suppression of the turbulence fluctuation level by a strong poloidal rotation in the E x B fields. As a result, the transport coefficients are strongly reduced at fixed places and transport barriers with steep density and temperature gradients are formed near the separatrix or the last closed flux surface (ETB) or in the core region (ITB). The key element in the transition physics is the origin of the strong radial electric field. The issue depends crucially on the perpendicular conductivity. The impact of the momentum transport is brought to light
机译:目前,众所周知,过渡物理学中的关键因素是强径向电场的起源以及通过在E x B场中进行强烈的极向旋转来抑制湍流波动水平。结果,在固定位置处的传输系数大大降低,并且在分离线或最后一个封闭通量表面(ETB)或核心区域(ITB)附近形成了具有陡峭密度和温度梯度的传输势垒。过渡物理学中的关键要素是强径向电场的起源。问题主要取决于垂直电导率。动量传递的影响被发现

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