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D-T Beam Fusion Reactor

机译:D-T束聚变反应堆

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The Beam Fusion Reactor (BFR) is based on a field-reversed configuration and confined ion energies in the range of hundreds of keV Repetitively pulsed, intense ion beams sustain the ion distributions and provide current drive. In the BFR the ion orbit size is comparable to the dimensions of the confined plasma and the expectation is for classical transport of the particles and energy. Based on technologies that readily exist, or nearly so, a D-T fueled BFR could be assembled in a compact configuration that is scaleable in terms of its output energy as well as to the advanced fuel regime. In the simplest case the mean azimuthal velocities and temperatures of the two ion (fuel) species are equal and the plasma current is unneutralized by electrons; the resulting distribution functions are thermal in a moving frame of reference. Reactor kinetic calculations are based on the Vlasov- Maxwell equation, including a Fokker Planck collision operator and all sources and sinks for energy and particle flow. The quality factor for this system is projected to be: Q ≡ P_fusion / P_ bremsstrahlung = 104.
机译:束聚变反应堆(BFR)基于反向磁场配置,将离子能量限制在数百keV范围内。重复脉冲的强离子束维持离子分布并提供电流驱动。在BFR中,离子轨道的尺寸可与受限等离子体的尺寸相媲美,并且期望对粒子和能量进行经典的传输。基于已经存在或接近存在的技术,可以将D-T燃料BFR组装成紧凑的构造,该构造可根据其输出能量以及先进的燃料状况进行缩放。在最简单的情况下,两种离子(燃料)物质的平均方位角速度和温度相等,并且等离子体电流不会被电子抵消。所得的分布函数在移动参考系中是热的。反应堆动力学计算基于Vlasov-Maxwell方程,包括Fokker Planck碰撞算子以及能量和颗粒流的所有源和汇。该系统的质量因子预计为:Q≡P_fusion / P_ bremsstrahlung = 104。

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