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Simulation of Fault Arc Based on Different Radiation Models in a Closed Tank

机译:基于不同辐射模型的密闭储罐故障电弧仿真

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This paper focuses on the simulation of a fault arc in a closed tank based on the magneto-hydrodynamic (MHD) method, in which a comparative study of three radiation models, including net emission coefficients (NEC), semi-empirical model based on NEC as well as the P1 model, is developed. The pressure rise calculated by the three radiation models are compared to the measured results. Particularly when the semi-empirical model is used, the effect of different boundary temperatures of the re-absorption layer in the semi-empirical model on pressure rise is concentrated on. The results show that the re-absorption effect in the low-temperature region affects radiation transfer of fault arcs evidently, and thus the internal pressure rise. Compared with the NEC model, P1 and the semi-empirical model with 0.7 < alpha < 0.83 are more suitable to calculate the pressure rise of the fault arc, where is an adjusted parameter involving the boundary temperature of the re-absorption region in the semi-empirical model.
机译:本文重点研究了基于磁流体动力学(MHD)方法的密闭储罐中故障电弧的仿真,其中对三种辐射模型进行了比较研究,包括净发射系数(NEC),基于NEC的半经验模型以及P1模型。将三个辐射模型计算出的压力上升与测量结果进行比较。特别地,当使用半经验模型时,集中在半经验模型中的再吸收层的不同边界温度对压力升高的影响。结果表明,低温区的重吸收作用明显影响了断层弧的辐射传递,内部压力升高。与NEC模型相比,P1和0.7

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