Determining Dependency of Gas Centrifuge Separation Factor to Some Principals Parameters

For increasing isotopic separation power of a gas centrifuge, the axial circulating flows are created by mechanical or thermal drives. In this paper, the feed injection (mechanical drive) and the axial temperature gradient (thermal drive) are used to induce an internal circulating flow and a model i...

Full description

Bibliographic Details
Main Authors: A Noroozi, P Makarachi, A Zolfaghari, A Minoochehr, A Haghighattalab
Format: Article
Language:fas
Published: Nuclear Science and Technology Research Institute 2011-05-01
Series:مجله علوم و فنون هسته‌ای
Subjects:
Online Access:https://jonsat.nstri.ir/article_423_47e16c4f13f277e1e4b4d910f97985ab.pdf
_version_ 1827955507494649856
author A Noroozi
P Makarachi
A Zolfaghari
A Minoochehr
A Haghighattalab
author_facet A Noroozi
P Makarachi
A Zolfaghari
A Minoochehr
A Haghighattalab
author_sort A Noroozi
collection DOAJ
description For increasing isotopic separation power of a gas centrifuge, the axial circulating flows are created by mechanical or thermal drives. In this paper, the feed injection (mechanical drive) and the axial temperature gradient (thermal drive) are used to induce an internal circulating flow and a model is applied as a governing differential equation of the gas motion. The outcoming of the purely axial flow model is used along with the diffusion equation to obtain concentrations of different isotopes at the gas exodus orifices. The machine separative factor is obtained after specifying xP (the product concentration of lighter isotope) and xW (the waste concentration of lighter isotope) from the enriching and stripping sections. Finally, the dependency of the separative factor to rotor speed, cut and feed flow rate was investigated.
first_indexed 2024-04-09T14:47:35Z
format Article
id doaj.art-37ee90992328443abd613fb640ae1f55
institution Directory Open Access Journal
issn 1735-1871
2676-5861
language fas
last_indexed 2024-04-09T14:47:35Z
publishDate 2011-05-01
publisher Nuclear Science and Technology Research Institute
record_format Article
series مجله علوم و فنون هسته‌ای
spelling doaj.art-37ee90992328443abd613fb640ae1f552023-05-02T10:46:49ZfasNuclear Science and Technology Research Instituteمجله علوم و فنون هسته‌ای1735-18712676-58612011-05-01321815423Determining Dependency of Gas Centrifuge Separation Factor to Some Principals ParametersA Noroozi0P Makarachi1A Zolfaghari2A Minoochehr3A Haghighattalab4دانشکده مهندسی هسته‌ای، دانشگاه شهید بهشتی، صندوق پستی: 1983963113، تهران-ایراندانشکده مهندسی هسته‌ای، دانشگاه شهید بهشتی، صندوق پستی: 1983963113، تهران-ایراندانشکده مهندسی هسته‌ای، دانشگاه شهید بهشتی، صندوق پستی: 1983963113، تهران-ایراندانشکده مهندسی هسته‌ای، دانشگاه شهید بهشتی، صندوق پستی: 1983963113، تهران-ایراندانشکده مهندسی هسته‌ای، دانشگاه شهید بهشتی، صندوق پستی: 1983963113، تهران-ایرانFor increasing isotopic separation power of a gas centrifuge, the axial circulating flows are created by mechanical or thermal drives. In this paper, the feed injection (mechanical drive) and the axial temperature gradient (thermal drive) are used to induce an internal circulating flow and a model is applied as a governing differential equation of the gas motion. The outcoming of the purely axial flow model is used along with the diffusion equation to obtain concentrations of different isotopes at the gas exodus orifices. The machine separative factor is obtained after specifying xP (the product concentration of lighter isotope) and xW (the waste concentration of lighter isotope) from the enriching and stripping sections. Finally, the dependency of the separative factor to rotor speed, cut and feed flow rate was investigated.https://jonsat.nstri.ir/article_423_47e16c4f13f277e1e4b4d910f97985ab.pdfgas centrifugemechanical or thermal drivesseparative factordiffusion dquationaxial flow
spellingShingle A Noroozi
P Makarachi
A Zolfaghari
A Minoochehr
A Haghighattalab
Determining Dependency of Gas Centrifuge Separation Factor to Some Principals Parameters
مجله علوم و فنون هسته‌ای
gas centrifuge
mechanical or thermal drives
separative factor
diffusion dquation
axial flow
title Determining Dependency of Gas Centrifuge Separation Factor to Some Principals Parameters
title_full Determining Dependency of Gas Centrifuge Separation Factor to Some Principals Parameters
title_fullStr Determining Dependency of Gas Centrifuge Separation Factor to Some Principals Parameters
title_full_unstemmed Determining Dependency of Gas Centrifuge Separation Factor to Some Principals Parameters
title_short Determining Dependency of Gas Centrifuge Separation Factor to Some Principals Parameters
title_sort determining dependency of gas centrifuge separation factor to some principals parameters
topic gas centrifuge
mechanical or thermal drives
separative factor
diffusion dquation
axial flow
url https://jonsat.nstri.ir/article_423_47e16c4f13f277e1e4b4d910f97985ab.pdf
work_keys_str_mv AT anoroozi determiningdependencyofgascentrifugeseparationfactortosomeprincipalsparameters
AT pmakarachi determiningdependencyofgascentrifugeseparationfactortosomeprincipalsparameters
AT azolfaghari determiningdependencyofgascentrifugeseparationfactortosomeprincipalsparameters
AT aminoochehr determiningdependencyofgascentrifugeseparationfactortosomeprincipalsparameters
AT ahaghighattalab determiningdependencyofgascentrifugeseparationfactortosomeprincipalsparameters