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Fuelling and Diagnostics with Pellet Injection in the HL-1M Tokamak

机译:HL-1M托卡马克中的颗粒注射助燃和诊断

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The pellet injection experiments for fuelling and diagnostics have been carried out on the HL-1M tokamak. The eight-pellet injector was installed on HL-1M. A reliable monitor-detector and camera system was set up to take initial pellet photographs and measure the initial pellet speed and size. High fuelling efficiency of 60% ~ 100% and a density profile with a peaking factor of 1.8 ~ 2.0 were obtained. The maximum density close to 10~(14)/cm~3 in HL-1M was achieved with newly optimized combined fuelling techniques. Two typical models of pellet ablation have been utilized for simulative calculation of the ablation rates in HL-1M. In comparison with the distribution of the measured H_α emission intensity from the digital data of the CCD camera, the experimental result seems more optimistic for core fuelling than theoretical predictions by the two models. The safety factor profile q(r) has been extracted from the information provided by the CCD camera during the pellet injection. The reliability of the measured results depends mainly on the calibration of the imaging space position. Based on the calibration, the measured q-profile becomes more reasonable than those published previously for the same shot number and same photograph.
机译:已在HL-1M托卡马克上进行了用于加油和诊断的颗粒喷射实验。八粒注射器安装在HL-1M上。设置了可靠的监控器和摄像头系统以拍摄初始颗粒照片并测量初始颗粒速度和尺寸。获得了60%〜100%的高燃油效率,并获得了峰值系数为1.8〜2.0的密度分布。通过新优化的组合加油技术,HL-1M的最大密度接近10〜(14)/ cm〜3。两种典型的颗粒消融模型已用于HL-1M的消融率的模拟计算。与从CCD摄像机的数字数据中测得的H_α发射强度的分布相比,与两种模型的理论预测相比,对于核燃料加注的实验结果似乎更为乐观。安全系数曲线q(r)已从药丸注射过程中CCD摄像机提供的信息中提取。测量结果的可靠性主要取决于成像空间位置的校准。基于校准,对于相同的拍摄张数和相同的照片,所测量的q轮廓比以前发布的q轮廓更加合理。

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