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Pebble divertor concept for high power density fusion reactors

机译:高功率密度聚变反应堆的卵石偏滤器概念

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The pebble divertor is a new concept applicable to the strike zone with very high heat ( > 20 MW/m~2) and particle load ( > 10~(24) atoms/m~2s). In this concept, a large number of small pebbles made from refractory materials with multifunctions are used as a moving surface. A marked feature of our pebble divertor concept is the use of multi-layer pebbles. The multi-layer pebble consists of a kernel, a plasma facing layer (PFL) and an intermediate tritium permeation barrier. In the case of the pebble with a diameter of 1―2 mm, it is found that the pebble can resist high heat loads of about 30 MW/m~2. When the PFL of the pebble is made from carbon material, pebbles also perform fuel gas pumping due to the hydrogen gettering characteristic of carbon. From the estimation of the energy conversion in the pebble divertor system, the maximum operation temperature should be larger than about 800 K to obtain a energy gain, which is the ratio of recovery energy in Calnot cycle to the additional heat energy, larger than one in the divertor system.
机译:卵石偏滤器是一个新概念,适用于具有很高热量(> 20 MW / m〜2)和颗粒载荷(> 10〜(24)原子/ m〜2s)的冲击区。在这个概念中,大量的由多功能耐火材料制成的小卵石被用作活动表面。我们的卵石分流器概念的显着特征是多层卵石的使用。多层鹅卵石由籽粒,面向等离子体的层(PFL)和中间的tri渗透阻挡层组成。发现在直径为1-2 mm的卵石的情况下,卵石可以抵抗约30 MW / m〜2的高热负荷。当卵石的PFL由碳材料制成时,由于碳的吸氢特性,卵石也执行燃料气体泵送。根据对卵石分流器系统中能量转换的估计,最大工作温度应大于约800 K,以获得能量增益,该能量增益是卡诺循环中的回收能量与附加热能之比,大于1。分流器系统。

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