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CONTROL OF A LASER INERTIAL CONFINEMENT FUSION-FISSION POWER PLANT

机译:激光惰性约束熔解裂变电站的控制

摘要

A laser inertial-confinement fusion-fission energy power plant is described. The fusion-fission hybrid system uses inertial confinement fusion to produce neutrons from a fusion reaction of deuterium and tritium. The fusion neutrons drive a sub-critical blanket of fissile or fertile fuel. A coolant circulated through the fuel extracts heat from the fuel that is used to generate electricity. The inertial confinement fusion reaction can be implemented using central hot spot or fast ignition fusion, and direct or indirect drive. The fusion neutrons result in ultra-deep burn-up of the fuel in the fission blanket, thus enabling the burning of nuclear waste. Fuels include depleted uranium, natural uranium, enriched uranium, spent nuclear fuel, thorium, and weapons grade plutonium. LIFE engines can meet worldwide electricity needs in a safe and sustainable manner, while drastically shrinking the highly undesirable stockpiles of depleted uranium, spent nuclear fuel and excess weapons materials.
机译:描述了一种激光惯性约束聚变裂变能量发电厂。聚变裂变混合系统利用惯性约束聚变从氘和tri的聚变反应中产生中子。聚变中子驱动可裂变或可燃燃料的次临界覆盖层。通过燃料循环的冷却剂从燃料中提取热量,用于发电。惯性约束聚变反应可以使用中心热点或快速点火聚变以及直接或间接驱动来实现。聚变中子使裂变层中的燃料超深度燃烧,从而燃烧核废料。燃料包括贫化铀,天然铀,浓缩铀,废核燃料,or和武器级p。 LIFE发动机可以以安全和可持续的方式满足全球电力需求,同时大大减少了极不受欢迎的贫铀,乏核燃料和多余武器材料的库存。

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