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Calculation of the Equilibrium Evolution of the ZaP Flow $Z$ -Pinch Using a Four-Chord Interferometer

机译:使用四弦干涉仪计算ZaP流的平衡演化

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A four-chord interferometer and measurements from an array of surface-mounted magnetic probes were used in conjunction with equations of radial heat conduction and radial force balance to calculate the equilibrium evolution of a pinch plasma in the ZaP flow -pinch. A multiple shooting method was used to solve the nonlinear coupled differential equation system, with ohmic heating and bremsstrahlung radiation as sources and sinks, respectively. Data from a single ZaP pulse are reported including profiles of magnetic field and temperature and their evolution. Profiles are dominated by high thermal conductivity near the axis which quickly decreases with radius. This is due to the plasma being weakly magnetized near the axis which increases thermal conductivity and flattens the temperature profile, but strongly magnetized near the characteristic radius, significantly reducing thermal conductivity and resulting in a large temperature gradient. The equilibrium evolution indicates that plasmas in ZaP heat and compress with increasing current as a result of magnetic compression during the quiescent period.
机译:使用四弦干涉仪和一系列表面安装磁探针的测量结果,结合径向热传导和径向力平衡方程式,计算ZaP流量捏合过程中收缩等离子体的平衡演化。采用多重射击法求解非线性耦合微分方程组,分别以欧姆加热和致辐射为源和汇。报告了来自单个ZaP脉冲的数据,包括磁场和温度的分布及其演变。轮廓主要由轴附近的高导热率决定,该导热率随半​​径迅速减小。这是由于等离子体在轴附近被弱磁化,从而增加了导热性并使温度分布变平坦,但是在特征半径附近被强磁化了,从而显着降低了导热性并导致了较大的温度梯度。平衡演变表明,在静态期间,由于磁性压缩,ZaP中的等离子体随着电流的增加而加热并压缩。

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