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    • 2. 发明公开
    • 초고속 총알과 플라즈마를 이용한 핵융합 발전
    • 等离子体和高压电池的核熔断功率
    • KR1020140123177A
    • 2014-10-22
    • KR1020130039889
    • 2013-04-11
    • 전홍석
    • 전홍석
    • G21B1/00
    • G21B3/006
    • The present invention relates to nuclear fusion power generating by plasma and a hypervelocity bullet, which makes bullets and a target with a metal absorbing or carrying deuterium and tritium at a high density and then generates a fusion reaction by causing a head-on collision of the bullets fired by a hypervelocity gun or crashing the bullet to the target or which generates the fusion reaction by compressing high-temperature plasma composed of deuterium and tritium. When the bullets collide to each other or to the target, any one side of the collision may be in the state of hydride having absorbed tritium and the other side may be in the state of hydride having absorbed deuterium or both deuterium and tritium. It may be metallic hydride carrying deuterium and tritium like a capsule, or common a metal like the capsule carrying deuterium and tritium. The bullets do not have to be a metal if it may comprise a nuclear fusion fuel at high density. The target may be composed of only a hard target material. The high-temperature plasma may be composed of deuterium and tritium or one thereof. If a high density fuel is compressed into a smaller space instantly by a hypervelocity collision, a fusion reaction is generated due to a high temperature and high pressure, and the remaining fuels cause a fusion reaction by the energy from the nuclear fusion reaction. A fusion reaction is caused by collecting the high-temperature plasma between the bullets or the bullets and the target and compressing the same at an excessive velocity. At this moment, a large quantity of neutrons is generated and heats a coolant of a blanket surrounding a reactor. The coolant heats water through a heat exchanger so as to drive a steam turbine generator. In the blanket, lithium reacts with the neutrons so as to generate tritium.
    • 本发明涉及通过等离子体产生的核聚变能量和超高速子弹,其使子弹和目标物具有以高密度吸收或携带氘和氚的金属,然后通过引起 通过超高速炮发射的子弹或将子弹撞击目标,或通过压缩由氘和氚组成的高温等离子体来产生聚变反应。 当子弹彼此碰撞或碰撞时,碰撞的任何一侧可能处于具有吸收的氚的氢化物的状态,另一侧可处于氢化物的状态,氢化物已被吸收的氘或氘和氚两者。 它可以是携带氘和氚的金属氢化物,如胶囊,或常见的是像携带氘和氚的胶囊的金属。 如果子弹可以包含高密度的核聚变燃料,那么子弹不必是金属。 目标可能只由硬目标材料组成。 高温等离子体可以由氘和氚或其中的一种组成。 如果通过超高速碰撞立即将高密度燃料压缩成较小的空间,则由于高温高压而产生熔融反应,剩余的燃料通过来自核聚变反应的能量引起熔融反应。 通过在子弹或子弹和靶子之间收集高温等离子体并以过高的速度对其进行压缩而引起聚变反应。 此时,产生大量的中子并加热反应堆周围的毯子的冷却剂。 冷却剂通过热交换器加热水以驱动蒸汽轮机发电机。 在毯子中,锂与中子发生反应以产生氚。