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Plasma performance enhancement and impurity control using a novel technique of argon–hydrogen mixture fueled glow discharge wall conditioning in the ADITYA-U tokamak

Title: Plasma performance enhancement and impurity control using a novel technique of argon–hydrogen mixture fueled glow discharge wall conditioning in the ADITYA-U tokamak
Authors: K.A. Jadeja; J. Ghosh; K.M. Patel; A.B. Patel; R.L. Tanna; Kiran Patel; B.G. Arambhadiya; K.D. Galodiya; Rohit Kumar; S. Aich; Harshita Raj; L. Pradhan; M.B. Chowdhuri; R. Manchanda; N. Ramaiya; Nandini Yadava; Sharvil Patel; Kajal Shah; Dipexa Modi; A. Gauttam; K. Singh; S. Dolui; Ankit Kumar; B. Hegde; A. Kumawat; Minsha Shah; R. Rajpal; U. Nagora; P.K. Atrey; S.K. Pathak; Shishir Purohit; A. Adhiya; Manoj Kumar; Kumudni Assudani; D. Kumavat; S.K. Jha; K.S. Shah; M.N. Makwana; Shivam Gupta; Supriya Nair; Kishore Mishra; D. Raju; P.K. Chattopadhyay; B.R. Kataria
Source: Nuclear Fusion, Vol 64, Iss 10, p 106048 (2024)
Publisher Information: IOP Publishing
Publication Year: 2024
Collection: Directory of Open Access Journals: DOAJ Articles
Subject Terms: tokamak; wall conditioning; plasma wall interaction; Nuclear and particle physics. Atomic energy. Radioactivity; QC770-798
Description: Effective control of impurities and precise regulation of the fueling gas are supreme prerequisites for optimal operation in any fusion device. Conventional wall-conditioning methods fall short of achieving optimal wall conditioning. Conventional wall-conditioning methods, such as vessel baking and H _2 /(D _2 )-fueled glow discharge cleaning (GDC), are generally required to remove wall-absorbed impurities in bulk after vessel venting. The excess amount of hydrogen, injected during H _2 GDC, can be reduced by helium (He)-fueled GDC. However, He removal from the vessel is more challenging due to its low molecular mass, very low condensation temperature, and inert characteristics. In ADITYA-U, optimal wall conditioning cannot be achieved using H _2 followed by He-fueled GDC when applied for extended periods spanning hours or days. A GDC with a mixture of argon and hydrogen (Ar–H _2 ) is introduced in the ADITYA-U tokamak to obtain better wall conditioning than H _2 followed by He GDC. In Ar–H _2 GDC, long-lived ArH ^+ ions are formed in sufficient numbers and accelerated toward the vessel wall with high momentum. This results in the breaking of high energy bonds of impurities with the wall/plasma facing components, which is not possible by H ^+ , H _2 ^+, H _3 ^+ ions in H _2 GDC due to their lower momentum. An optimal blend ratio of Ar to H _2 is established at 15%–20% for the mixture. This composition ensures that the introduction of high- Z Ar does not adversely affect tokamak plasma operations. The C- and O-containing impurities are reduced beyond the limit of the prolonged operation of H _2 GDC. Relative low pressures of dominant impurities such as CO, CH _4 , and H _2 O are obtained due to the Ar–H _2 GDC compared to routinely operated H _2 GDC. A comparison study of H _2 GDC and the developed Ar–H _2 GDC is performed in terms of wall conditioning and tokamak plasma operation. The encouraging results of the Ar–H _2 GDC are obtained in both wall cleaning and tokamak operation scenarios in the midsize tokamak ...
Document Type: article in journal/newspaper
Language: English
Relation: https://doi.org/10.1088/1741-4326/ad6a6e; https://doaj.org/toc/0029-5515; https://doaj.org/article/06d53f57a8074693b2f3497191a371a2
DOI: 10.1088/1741-4326/ad6a6e
Availability: https://doi.org/10.1088/1741-4326/ad6a6e; https://doaj.org/article/06d53f57a8074693b2f3497191a371a2
Accession Number: edsbas.C52A79AC
Database: BASE