AbstractThe problem of separation of isotopes in a concurrent gas centrifuge is solved analytically for an arbitrary binary mixture of isotopes. The separative power of the optimised concurrent gas centrifuges for the uranium isotopes equals to δU = 12.7 (V/700 m/s)2(300 K/T)(L/1 m) kg·SWU/yr, where L and V are the length and linear velocity of the rotor of the gas centrifuge and T is the temperature. This equation agrees well with the empirically determined separative power of optimised counter-current gas centrifuges
The applicability of the gas centrifuge to the separation of the isotopes of the elements from Ti th...
Was considered a problem of an optimization of concurrent gas centrifuges for separation of Boron is...
An analysis is presented that describes a theoretical approach to assess the separative power of red...
AbstractAn analytical equation defining separative power of an optimized concurrent gas centrifuge i...
AbstractNumerical modelling and optimization of the gas flow and isotope separation in the Iguasu ga...
A method for calculating and optimizing a cascade of gas centrifuges with an arbitrary scheme for co...
The gas circulation in a gas centrifuge due to temperature differences, differential rotation and in...
The gas circulation in a gas centrifuge due to temperature differences, differential rotation and in...
The gas circulation in a gas centrifuge due to temperature differences, differential rotation and in...
The gas circulation in a gas centrifuge due to temperature differences, differential rotation and in...
The gas circulation in a gas centrifuge due to temperature differences, differential rotation and in...
A theory is developed for the separation of isotopes in a long countercurrent gas centrifuge. With t...
This article presents results of development of the mathematical model of nonstationary separation p...
Onsager's analysis of the hydrodynamics of fluid circulation in the boundary layer on the rotor wall...
As it is known, uranium enrichment is carried out on industrial scale by means of multistage separat...
The applicability of the gas centrifuge to the separation of the isotopes of the elements from Ti th...
Was considered a problem of an optimization of concurrent gas centrifuges for separation of Boron is...
An analysis is presented that describes a theoretical approach to assess the separative power of red...
AbstractAn analytical equation defining separative power of an optimized concurrent gas centrifuge i...
AbstractNumerical modelling and optimization of the gas flow and isotope separation in the Iguasu ga...
A method for calculating and optimizing a cascade of gas centrifuges with an arbitrary scheme for co...
The gas circulation in a gas centrifuge due to temperature differences, differential rotation and in...
The gas circulation in a gas centrifuge due to temperature differences, differential rotation and in...
The gas circulation in a gas centrifuge due to temperature differences, differential rotation and in...
The gas circulation in a gas centrifuge due to temperature differences, differential rotation and in...
The gas circulation in a gas centrifuge due to temperature differences, differential rotation and in...
A theory is developed for the separation of isotopes in a long countercurrent gas centrifuge. With t...
This article presents results of development of the mathematical model of nonstationary separation p...
Onsager's analysis of the hydrodynamics of fluid circulation in the boundary layer on the rotor wall...
As it is known, uranium enrichment is carried out on industrial scale by means of multistage separat...
The applicability of the gas centrifuge to the separation of the isotopes of the elements from Ti th...
Was considered a problem of an optimization of concurrent gas centrifuges for separation of Boron is...
An analysis is presented that describes a theoretical approach to assess the separative power of red...