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Measurement of divertor neutral pressure in EAST tokamak by ASDEX pressure gauge

•In-situ measurement of neutral pressure in divertor region was successfully achieved by ASDEX gauge in EAST tokamak.•The in-situ measurement is ∼ 100 ms faster, and more sensitive than the conventional gauge located on the port far away from divertor region.•The in-situ measurement by ASDEX gauge s...

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Published in:Fusion engineering and design 2023-11, Vol.196, p.114024, Article 114024
Main Authors: Zhou, Deze, Yu, Yaowei, Wang, Chao, Cao, Bin, Zuo, Guizhong, Hu, Jiansheng
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Yu, Yaowei
Wang, Chao
Cao, Bin
Zuo, Guizhong
Hu, Jiansheng
description •In-situ measurement of neutral pressure in divertor region was successfully achieved by ASDEX gauge in EAST tokamak.•The in-situ measurement is ∼ 100 ms faster, and more sensitive than the conventional gauge located on the port far away from divertor region.•The in-situ measurement by ASDEX gauge shows stable performance in over 200 s long pulse discharges and in >10 MW heating power discharges. In the tokamak plasma operation, divertor neutral particles play a key role in the study of fuel recycling, heat load mitigation, plasma confinement, and so on. Therefore, the in-situ measurement of neutral pressure in the divertor region is essential for the divertor physics studies. Two ASDEX pressure gauges were installed in the lower divertor dome region and passive plate region, respectively, for the in-situ pressure measurement. Experimental results show that, the ASDEX pressure gauge diagnostic is more sensitive, and its measurement on divertor neutral pressure is about 100 milliseconds faster than the external gauge of the divertor. Moreover, the ASDEX pressure gauge diagnostic is applicable for long pulse and high power plasma operation, and the in-situ pressure measurement of the divertor during over 200 s and higher than 10 MW discharges were successfully achieved in EAST. In addition, ASDEX pressure gauge diagnostic sensitively reacts to the changes in plasma parameters, and the neutral pressure is found to be significantly influenced by the plasma heating power. These results provide powerful technical support for the key divertor physical studies in EAST tokamak and the future fusion devices.
doi_str_mv 10.1016/j.fusengdes.2023.114024
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In the tokamak plasma operation, divertor neutral particles play a key role in the study of fuel recycling, heat load mitigation, plasma confinement, and so on. Therefore, the in-situ measurement of neutral pressure in the divertor region is essential for the divertor physics studies. Two ASDEX pressure gauges were installed in the lower divertor dome region and passive plate region, respectively, for the in-situ pressure measurement. Experimental results show that, the ASDEX pressure gauge diagnostic is more sensitive, and its measurement on divertor neutral pressure is about 100 milliseconds faster than the external gauge of the divertor. Moreover, the ASDEX pressure gauge diagnostic is applicable for long pulse and high power plasma operation, and the in-situ pressure measurement of the divertor during over 200 s and higher than 10 MW discharges were successfully achieved in EAST. In addition, ASDEX pressure gauge diagnostic sensitively reacts to the changes in plasma parameters, and the neutral pressure is found to be significantly influenced by the plasma heating power. 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In the tokamak plasma operation, divertor neutral particles play a key role in the study of fuel recycling, heat load mitigation, plasma confinement, and so on. Therefore, the in-situ measurement of neutral pressure in the divertor region is essential for the divertor physics studies. Two ASDEX pressure gauges were installed in the lower divertor dome region and passive plate region, respectively, for the in-situ pressure measurement. Experimental results show that, the ASDEX pressure gauge diagnostic is more sensitive, and its measurement on divertor neutral pressure is about 100 milliseconds faster than the external gauge of the divertor. Moreover, the ASDEX pressure gauge diagnostic is applicable for long pulse and high power plasma operation, and the in-situ pressure measurement of the divertor during over 200 s and higher than 10 MW discharges were successfully achieved in EAST. In addition, ASDEX pressure gauge diagnostic sensitively reacts to the changes in plasma parameters, and the neutral pressure is found to be significantly influenced by the plasma heating power. 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In the tokamak plasma operation, divertor neutral particles play a key role in the study of fuel recycling, heat load mitigation, plasma confinement, and so on. Therefore, the in-situ measurement of neutral pressure in the divertor region is essential for the divertor physics studies. Two ASDEX pressure gauges were installed in the lower divertor dome region and passive plate region, respectively, for the in-situ pressure measurement. Experimental results show that, the ASDEX pressure gauge diagnostic is more sensitive, and its measurement on divertor neutral pressure is about 100 milliseconds faster than the external gauge of the divertor. Moreover, the ASDEX pressure gauge diagnostic is applicable for long pulse and high power plasma operation, and the in-situ pressure measurement of the divertor during over 200 s and higher than 10 MW discharges were successfully achieved in EAST. 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subjects ASDEX pressure gauge
Divertor
EAST tokamak
Neutral pressure
title Measurement of divertor neutral pressure in EAST tokamak by ASDEX pressure gauge
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