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Perspectives on Magnetized Target Fusion Power Plants

机译:磁化目标聚变电厂的前景

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One approach to Magnetized Target Fusion (MTF) builds upon the ongoing experimental effort (FRX-L) to generate a Field Reversed Configuration (FRC) target plasma suitable for translation and cylindrical-liner (i.e., converging flux conserver) implosion. Numerical modeling is underway to elucidate key performance drivers for possible future power-plant extrapolations. The fusion gain, Q (ratio of DT fusion yield to the sum of initial liner kinetic energy plus plasma formation energy), sets the power-plant duty cycle for a nominal design electric power [e.g. 1,000 MWe(net)]. A pulsed MTF power plant of this type derives from the historic Fast Liner Reactor (FLR) concept and shares attributes with the recent Inertial Fusion Energy (IFE) Z-pinch and laser-driven pellet HYLIFE-II conceptual designs.
机译:磁化目标聚变(MTF)的一种方法是基于正在进行的实验工作(FRX-L)来生成适用于平移和圆柱内衬(即会聚通量储能器)内爆的场反转配置(FRC)目标等离子体。正在进行数值建模,以阐明可能的未来电厂外推的关键性能驱动因素。聚变增益Q(DT聚变产率与初始衬里动能与等离子体形成能之和的比)设置了标称设计电功率的动力装置占空比[例如, 1,000 MWe(净)]。这种类型的脉冲式MTF发电厂源于历史悠久的快速内衬电抗器(FLR)概念,并且与最新的惯性聚变能量(IFE)Z型捏和激光驱动的小球HYLIFE-II概念设计具有相同的属性。

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