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(EX4/4) Reversed Field Pinch Experiment on a New Large Machine, TPE-RX

Y. Hirano, T. Shimada, Y. Yagi, S. Sekine, H. Sakakita, H. Koguchi, T. Osakabe, K. Hayase, Y. Sato, Y. Maejima and I. Hirota

Electrotechnical Laboratory, 1-1-4 Umezono, Tsukuba-shi, Ibaraki, Japan 305

Abstract.  Reversed field pinch (RFP) experiment on a new large machine, TPE-RX has been started from March 1998. Major and minor radii of TPE-RX are 1.7175m and 0.45m, and the maximum designed plasma current ( Ip) and discharge duration are 1MA and 100ms, respectively. TPE-RX is being operated in the medium Ip region ( Ip < 500kA) with discharge duration about 80ms and RFP discharges with good reproducibility are routinely obtained, where the precise compensation of error field at poloidal gap of thick shell is indispensable. In a series of initial phase of experiment, following results are obtained. Non-inductive part of toroidal loop voltage ( RpIp) as low as 12 V is obtained at low Ip ($ \sim$ 150kA), but it increases with Ip and becomes 22V at Ip $ \sim$ 450kA. However, it is shown that RpIp is gradually decreasing as the discharge cleaning has been continued. Further decrease of RpIp will be expected under the improved wall condition. In almost of all discharges, especially with large Ip (> 250kA) the wall and phase locking of the MHD fluctuations is observed. However, several discharges without this mode locking are found in low Ip and low filling pressure cases. Measurements of electron density ( $ \langle$ne$ \rangle$) by CO2 laser interferometer, electron temperature ( Te) by soft x-ray pulse height analysis and ion temperature ( Ti) by CV Doppler broadening have been started. Measured values are $ \langle$ne$ \rangle$ $ \simeq$ 5×1018m- 3, Te $ \sim$ 1000 - 1200eV and Ti $ \sim$ 130±50eV for the discharge with Ip $ \sim$ 270kA and reversal/pinch parameters $ \sim$ -0.1/1.6, although it is possible that this high Te may correspond to high energy part and low Ti may correspond to the value near the edge since the radiation profile of CV line is very hollow. An interesting dependence of plasma rotation on Ip is found in the Doppler shift measurement of CV line.

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IAEA 2001