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首页> 外文期刊>Cryogenics >An update of dynamic thermal-hydraulic simulations of the JT-60SA Toroidal Field coil cooling loop for preparing plasma operation
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An update of dynamic thermal-hydraulic simulations of the JT-60SA Toroidal Field coil cooling loop for preparing plasma operation

机译:JT-60SA环形线圈冷却回路的动态热液压模拟更新,用于制备等离子体操作

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摘要

The JT-60SA cryogenic system was commissioned in 2016 in closed loop, without the cryogenic users (superconducting magnets, current leads, thermal shields). The first plasma operation is expected in 2020. This paper updates the heat load profiles resulting from the cooling loop of TF magnets, and received by the refrigerator and its thermal damper. The heat load profiles are calculated through thermal-hydraulic simulations of the magnets and the associated cryo-distribution, also named as supercritical helium loops. This update was performed by taking into account new data from the TF magnets (measured pressure drops, updated heat loads coming from the plasma), as well as a more accurate thermal model of the TF magnet. Previous simulation had been performed using the Vincenta code in 2010 and were used for the cryogenic system acceptance tests. The new thermal-hydraulic model is performed by using Simcryogenics, the modeling tool dedicated to refrigeration and cryo-distribution developed by CEA (Commissariat a l'energie atomique et aux energies alternatives). The differences between the two simulation results are highlighted and analyzed. These simulations provide the pulsed heat load profiles smoothed by the cryo-distribution and deposited into the thermal damper.
机译:JT-60SA低温系统于2016年在闭环中委托,无低温用户(超导磁铁,电流引线,热屏蔽)。预期在2020年的第一等离子体操作。本文更新了由TF磁体的冷却环产生的热负荷曲线,并由冰箱及其热阻尼器接收。通过磁铁的热液压模拟和相关的光盘分配的热液压模拟来计算热负荷轮廓,也被称为超临界氦气环。通过考虑来自TF磁体的新数据(测量压降,来自等离子体的更新的热负荷)来执行该更新,以及TF磁体的更精确的热模型。以前的仿真已经在2010年使用Vincenta码进行,用于低温系统验收测试。新的热液压模型是通过使用Simcryogenics进行的,致力于CEA开发的制冷和冷冻分布的建模工具进行(Commassariat A Energie Atomique Et Aux Energies替代品)。两个仿真结果之间的差异突出显示并分析。这些模拟提供了光滑分布平滑的脉冲热负载型材并沉积到热阻尼器中。

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