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Optimized Separative Power of Hyperspeed Iguassu Gas Centrifuge: Dependence on the Rotor Diameter and Velocity

机译:超高速公路煤气离心机的优化分型功率:对转子直径和速度的依赖性

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The dependence of the separative power of Iguassu gas centrifuges (GCs) on the rotor diameter and velocity of rotation V above 1000 m/s is investigated. The separative power is calculated exploring numerical modeling of the gas dynamics and diffusion of the binary mixture in a strong centrifugal field. The separative power is optimized on five internal parameters of the GC: pressure at the wall of the rotor, feed flux, temperature drop along the rotor wall, friction power of the waste scoop and radius of the baffle of the product chamber. The optimized separative power does not depend on the diameter and grows with the velocity as V~(2.2). Optimal values of the internal parameters do not depend on the diameter except optimal pressure, which is inversely proportional to the diameter squared. The optimal pressure grows with velocity as V~4 while the optimal feed flux is proportional to V~(2.2±0.2). Enrichment of the product flux does not depend on the velocity and diameter in the optimal regime of exploration. Growth of the separative power with V is determined by growth of the feed flux with the velocity.
机译:研究了IGUASSU气体离心机(GCS)对转子直径和旋转V速度V上方1000m / s的速度的依赖性。分散功率计算出探索强离心场中二元混合物的气体动力学和扩散的数值模型。在GC的五个内部参数上优化了分散功率:转子壁的压力,馈电通量,沿转子壁的温度下降,摩擦铲的摩擦力和产品室的挡板的半径。优化的分散功率不依赖于直径并随着V〜(2.2)的速度而生长。内部参数的最佳值不依赖于除最佳压力之外的直径,这与直径平方成反比。最佳压力随速度为V〜4而生长,而最佳馈送通量与V〜(2.2±0.2)成比例。富集产品磁通量不依赖于最佳勘探制度中的速度和直径。利用V的分散功率的生长通过具有速度的饲料通量的生长来确定。

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