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UPDATED DESIGN AND DEVELOPMENT ROUTE FOR CH HCCB TBM AND ITS MOCKUP

机译:CH HCCB TBM及其样机的更新设计和开发路线

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Chinese helium-cooled ceramics breeder test blanket module (CH HCCB TBM) is determined to be tested in ITER machine to get data for fusion reactor design and development in future. Chinese TBM is designed to occupy half of port C with 484mm in torroidal and 1660mm in poloidal. Radial length is 675mm. TBM is composed of box, 12 submodules and independent backplate. Box formed by first wall, grids and caps have 12 caivities to hold submodules. Box and submodules are supported by backplate by welding. Backplate distribute helium with flow rate 1.36kg/s to cool first wall and then part of it go out of TBM by bypass. The rest 0.77kg/s go on to cool caps and girds first and then cool submodules. Submodules with dimensions 250mm×202mm×318mm have independent cooling and purging systems connected to backplate manifold systems. In a submodule, two U-shaped structures hold breeding material Li_4SiO_4 pebbles. Out of the structure filled beryllium pebbles. Neutronics results show that tritium production is ~64mg/FPD. Maximum temperature 538°C of structure material occurs in the front of first wall with surface heat flux 0.5MW/m~2. Maximum total stress at first wall is 471MPa at 394°C; that in submodules is 426MPa at 400°C; that in backplate is 526MPa at 410°C, In order to explore development technologies for the TBM, a mockup with dimensions 484mm (torroidal) × 592mm (poloidal) × 675mm (radial) has been designed. The mockup with similar structure ignores bypass and purge gas systems. In the mockup, there's only one submodule and the other three are replaced by submodule replacements. By discussions and investigations, development route has been decided and the mockup is being fabricated.
机译:确定中国氦冷却陶瓷实验包层模块(CH HCCB TBM)在ITER机进行测试,以得到用于聚变反应堆的设计和开发中的未来数据。中国TBM设计占据与484毫米在圆环柱和1660毫米极向C口的一半。径向长度675毫米。 TBM是由盒的,子模块12和独立的背板。盒由第一壁,网格形成,并且盖12个具有向caivities保持子模块。盒和子模块通过背板通过焊接支持。背板分发氦气流量1.36公斤/ s的冷却第一壁,然后部分的它通过旁通去TBM出来。其余0.77公斤/ s的去到第一冷帽和girds,然后冷却子模块。子模块与尺寸250毫米×202毫米×318毫米具有独立的冷却和清洗连接到背板歧管系统的系统。在一个子模块,两个U形结构保持繁殖材料Li_4SiO_4鹅卵石。出了结构填充铍鹅卵石。中子结果表明,氚产量〜64mg / FPD。结构材料的538℃与表面热第一壁的前部发生最大温度通量0.5MW /米〜2。在第一壁最大总应力为471MPa,在394℃;在子模块是426MPa,在400℃;在背板是526MPa在410℃,为了探索为TBM开发技术,具有尺寸的实体模型484毫米(环面)×592毫米(极向)×675毫米(径向)被设计。具有相似结构的实体模型忽略旁路和净化气体系统。在样机,只有一个子模块,其他三个被替换子模块更换。通过讨论和研究,发展路线已经确定,该样机正在制造。

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