Development of MMM95 transport model for predicting deuteron and carbon ion densities evolution in H-mode tokamak
© 2020, Chiang Mai University. All rights reserved. The BALDUR code is used for predicting core profiles in H-mode plasma, by employing a combination of the MMM95 anomalous transport model and the NCLASS neoclassical transport model. The pedestal temperature and density of Deuteron and Carbon are ta...
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th-mahidol.561422020-06-02T12:42:41Z Development of MMM95 transport model for predicting deuteron and carbon ion densities evolution in H-mode tokamak Wannapa Buangam Sujin Suwanna Thawatchai Onjun Mahidol University Sirindhorn International Institute of Technology, Thammasat University Thailand Institute of Nuclear Technology Biochemistry, Genetics and Molecular Biology Chemistry Materials Science Mathematics Physics and Astronomy © 2020, Chiang Mai University. All rights reserved. The BALDUR code is used for predicting core profiles in H-mode plasma, by employing a combination of the MMM95 anomalous transport model and the NCLASS neoclassical transport model. The pedestal temperature and density of Deuteron and Carbon are taken from the experiment as a boundary conditions in the simulations. The simulated profiles, including those of the electron and ion temperature, electron, Deuteron and Carbon ion density profiles, are compared with the corresponding experimental data. The multi-parameter optimization is used for obtaining the most suitable coefficients for hydrogenic and impurity diffusion coefficient for new MMM95 transport model. This new set of coefficients for hydrogenic and impurity transport can improve the prediction of the electron and ion temperature, electron, Deuteron and Carbon ion density profiles of JET H-mode discharges within the RMS errors of 13%. 2020-06-02T04:16:38Z 2020-06-02T04:16:38Z 2020-01-01 Article Chiang Mai Journal of Science. Vol.47, No.3 (2020), 588-597 01252526 2-s2.0-85084485654 https://repository.li.mahidol.ac.th/handle/123456789/56142 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85084485654&origin=inward |
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Biochemistry, Genetics and Molecular Biology Chemistry Materials Science Mathematics Physics and Astronomy Wannapa Buangam Sujin Suwanna Thawatchai Onjun Development of MMM95 transport model for predicting deuteron and carbon ion densities evolution in H-mode tokamak |
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© 2020, Chiang Mai University. All rights reserved. The BALDUR code is used for predicting core profiles in H-mode plasma, by employing a combination of the MMM95 anomalous transport model and the NCLASS neoclassical transport model. The pedestal temperature and density of Deuteron and Carbon are taken from the experiment as a boundary conditions in the simulations. The simulated profiles, including those of the electron and ion temperature, electron, Deuteron and Carbon ion density profiles, are compared with the corresponding experimental data. The multi-parameter optimization is used for obtaining the most suitable coefficients for hydrogenic and impurity diffusion coefficient for new MMM95 transport model. This new set of coefficients for hydrogenic and impurity transport can improve the prediction of the electron and ion temperature, electron, Deuteron and Carbon ion density profiles of JET H-mode discharges within the RMS errors of 13%. |
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Mahidol University |
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Mahidol University Wannapa Buangam Sujin Suwanna Thawatchai Onjun |
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Wannapa Buangam Sujin Suwanna Thawatchai Onjun |
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Wannapa Buangam |
title |
Development of MMM95 transport model for predicting deuteron and carbon ion densities evolution in H-mode tokamak |
title_short |
Development of MMM95 transport model for predicting deuteron and carbon ion densities evolution in H-mode tokamak |
title_full |
Development of MMM95 transport model for predicting deuteron and carbon ion densities evolution in H-mode tokamak |
title_fullStr |
Development of MMM95 transport model for predicting deuteron and carbon ion densities evolution in H-mode tokamak |
title_full_unstemmed |
Development of MMM95 transport model for predicting deuteron and carbon ion densities evolution in H-mode tokamak |
title_sort |
development of mmm95 transport model for predicting deuteron and carbon ion densities evolution in h-mode tokamak |
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2020 |
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https://repository.li.mahidol.ac.th/handle/123456789/56142 |
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