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Thermo-mechanical design and structural analysis of the first wall for ARIES-III, a 100 MWe D-/sup 3/He power reactor

机译:100 MWe D- / sup 3 / He功率反应堆ARIES-III第一壁的热机械设计和结构分析

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The ARIES-III first wall (FW) is made of a low-activation ferritic steel (MHT-9) and is cooled with an organic coolant (HB-40) at a pressure of 2 MPa. The FW has a coating of 0.01 cm tungsten on the MHT-9, followed by 0.15 cm of Be on the plasma side. This is needed for synchrotron radiation reflection and as a melt layer to guard against the thermal effects of a plasma disruption. Two-dimensional finite element models are used with the ANSYS computer code to determine both thermal stresses and temperature profiles. At the midplane, where the surface heating peaks at 1.86 MW/m/sup 2/, the bulk coolant temperature is 385 degrees C, the coolant velocity is 16 m/s, and the combined primary and secondary stresses are 350 MPa at a bulk steel temperature of 497 degrees C. The maximum Be surface temperature facing the plasma is 571 degrees C. It is shown that the ARIES-III FW can be relatively simple in design and can be made to meet the synchrotron reflectivity requirements and conform to all the design limitations, both thermal and structural.
机译:ARIES-III第一壁(FW)由低活化铁素体钢(MHT-9)制成,并用有机冷却剂(HB-40)在2 MPa的压力下冷却。 FW在MHT-9上具有0.01 cm的钨涂层,然后在等离子体侧具有0.15 cm的Be。这对于同步加速器辐射反射以及作为防止等离子体破坏的热效应的熔体层是必需的。二维有限元模型与ANSYS计算机代码一起使用,可以确定热应力和温度曲线。在中平面处,表面加热达到1.86 MW / m / sup 2 /的峰值,整体冷却液温度为385摄氏度,冷却液速度为16 m / s,整体一次和二次应力的总和为350 MPa钢的温度为497摄氏度。面对等离子体的最高Be表面温度为571摄氏度。表明ARIES-III FW的设计相对简单,可以满足同步加速器反射率要求并符合所有要求。设计限制,包括热和结构上的限制。

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