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编制了零维三流体粒子和功率平衡的等离子体动力学时关模拟程序。在物理上把等离子体动力学与新经典输运理论结果结合起来,通过辅助加热、燃料注入和纵场纹波控制堆芯等离子体燃烧。数值结果表明:通过控制完全可以实现堆芯等离子体的稳定燃烧和排灰。
A zero-dimensional three-fluid particle and power balance plasma dynamics simulation program was developed. Physically combining plasma dynamics with neoclassical transport theory results in controlling core plasma combustion by assisting heating, fuel injection, and longitudinal field ripple. The numerical results show that stable combustion and ash discharge of the core plasma can be achieved by controlling completely.