ECRH experiments on Tokamaks SST-1 & Aditya-U and ECRH upgradation plan for SST-1

Author:

Shukla Braj Kishore,Patel Jatin,Patel Harshida,Purohit Dharmesh,Mistry Hardik,Parmar K.G., ,

Abstract

A 42GHz-500kW ECRH system [1-6] is used to carry out various experiments related to plasma breakdown and ECR heating on tokamaks SST-1 and Aditya-U. The system has been upgraded with new anode modulator power supply to launch two ECRH pulses to carry out breakdown and heating simultaneously. In SST-1, ECRH system is used routinely for plasma breakdown at fundamental harmonic, approximately 150kW power is launched for 70ms to 150ms duration and consistent plasma start-up is achieved in SST-1. In the recent experiments, second EC pulse is also launched at the plasma flat-top to heat the plasma, some heating signatures are seen but more experiments will be carried out to confirm the plasma heating with ECRH. In Aditya-U tokamak, simultaneous plasma breakdown and heating experiments are carried out successfully [2]. In the first pulse around 100kW power in fundamental O-mode is launched for 70ms duration for the breakdown at low-loop voltage and around 150kW ECRH power for 50ms duration is launched in second EC pulse to heat the plasma. In case of Aditya-U, plasma heating is observed clearly as soft X-ray signal increases sharply with ECRH. In AdityaU tokamak, deuterium plasma experiments have been carried out and ECRH launched at the flat-top of deuterium plasma current. In deuterium plasma also ECR heating is observed as soft X-ray signal increases with ECH power. For SST-1, ECRH system is being upgraded with another 82.6GHz system, this system would be used to carry out plasma heating and start-up at second harmonic. The 82.6GHz system is already connected with the SST-1 tokamak, the old 82.6GHz-200kW Gyrotron will be upgraded to 400kW system to carry out effective heating experiments on SST-1 at higher ECRH power. The paper discusses the recent results of ECRH experiments carried out on tokamaks SST-1 & Aditya-U and presents the upgradation plan of EC system for SST-1.

Publisher

EDP Sciences

Subject

General Medicine

Reference7 articles.

1. Shukla Braj Kishore et.al. “EC-wave experiments on SST-1”,, 31st ITPA meeting of TG SOL and Divertor Physics (18.01.–26.01.2022), ITER Online Presentation

2. Tanna R.L., Macwan Tanmay, Ghosh J., ….., Shukla B.K.,, … Saxena Y.C., Sen A., Pal R. and Chaturvedi S., “Overview of Recent Experimental Results from the ADITYA-U Tokamak”, 28th IAEA Fusion Energy Conference (FEC-2020), 10th – 15th May, 2021

3. “Fundamental O-mode ECRH assisted Low-loop voltage plasma start-up in tokamak ADITYA-U”, Shukla B.K., et.al., 46thEPS Conference on Plasma Physics, Milan (Italy), 8-12 July, 2019

4. Shukla BK., et.al. “Gyrotron control system for plasma start-up and heating experiments in AdityaU tokamak” Jatin kumar Patel, ICPSA-2019, Univ. of Lucknow, Nov 11-14, 2019

5. Shukla Braj K. et. al. “42GHz ECRH system on Aditya Upgrade” 30th Symposium on Fusion Technology, 2018 at Sicily-Italy September 16-21, 2018

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