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Tritium Recovery Efficiency from an Array of PbLi Droplets in Vacuum

机译:从真空中的PbLi液滴阵列中回收Recovery的效率

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Quantitative feasibility analysis of the tritium recovery efficiency from multiple columns of liquid PbLi droplets was conducted. Then a case study based on the HCLL specification was performed. Main concern was whether the experimentally obtained recovery efficiency from a column of droplets is applicable for the efficiency estimation from the multiple columns of droplets without any mutual degrading effects. To maintaining a safe side assumption, the tritium once released and reabsorbed on another droplet was considered to be not re-emitted while falling. By the analogy with the thermal radiation theory, the view factor which expresses the intersection ratio of radiation on another surface was applied for the estimation. The dependences on nozzle design parameters, such as nozzle pitch, number of nozzles, chamber wall clearance, and exhaust port design, were investigated. Case study results suggest that, by choosing well-suited parameters approximately 40% to 60% of the single column recovery efficiency was secured for multiple columns even on the conservative condition. The release chamber exhaust port design had a major influence. Nozzle pitch and array design have less influences, but are not negligible. However, it has to be experimentally verified to the scale-size effects and experimental programs are currently underway.
机译:从多列液态PbLi液滴回收the的效率进行了定量可行性分析。然后,根据HCLL规范进行了案例研究。主要关注的是从实验中从一滴液滴获得的回收效率是否适用于多滴液滴的效率估算,而没有任何相互降解的影响。为了维持安全的假设,once一旦释放并重新吸收在另一个液滴上,就被认为在下落时不会重新发射。通过与热辐射理论的类比,将表示另一个表面上辐射的交叉比的视场因子应用于估算。研究了对喷嘴设计参数​​的依赖性,例如喷嘴间距,喷嘴数量,腔室壁间隙和排气口设计。案例研究结果表明,即使在保守的条件下,通过选择合适的参数,对于多根色谱柱,也可以确保大约40%至60%的单色谱柱回收率。释放室排气口的设计具有重大影响。喷嘴间距和阵列设计影响较小,但不可忽略。但是,必须对它的规模效应进行实验验证,并且目前正在进行实验程序。

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