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Heat management for water-hydraulic systems at ITER remote handling

机译:通过ITER远程处理对水压系统进行热管理

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The full exchange of the ITER Divertor is performed with the Divertor Remote Handling System during ITER maintenance campaigns. Equipment with high power density are required to transport the 10-tonne cassettes into and out of the vessel. Water hydraulics has proven to deliver the required power and tracking accuracy. The ambient temperature within the Divertor area (in-vessel) is between 15 degrees C to 55 degrees C, which is at the upper limit of allowed temperature range for water hydraulic components. As the Cassette Toroidal Mover (CTM) Hydraulic Power Unit (HPU) must be situated within the CTM chassis and power for the Cassette Multifunctional Mover (CMM) hydraulics is supplied from the transfer cask, they are under increased thermal load from the radioactive components. To address this, a project to investigate solutions for heat management of CTM and CMM hydraulics was undertaken. Multiple heat management methods were analysed and the best solutions for these cases were selected after trade-off analyses. As a result, a traditional liquid/air heat management solution was selected for the CMM and no dedicated cooling was selected for the CTM. Whether the solutions proposed herein are applicable to other ITER systems is discussed.
机译:在ITER维护活动期间,使用Divertor远程处理系统执行ITER Divertor的完整更换。需要具有高功率密度的设备才能将10吨暗盒运入和运出容器。事实证明,水液压系统可提供所需的功率和跟踪精度。分流器区域(容器内)内的环境温度在15摄氏度至55摄氏度之间,这是水液压组件允许的温度范围的上限。由于必须在CTM机架内安装盒式环形移动器(CTM)液压动力单元(HPU),并且从转移桶提供盒式多功能移动器(CMM)液压动力,因此它们承受着来自放射性组件的不断增加的热负荷。为了解决这个问题,开展了一个研究CTM和CMM液压系统热管理解决方案的项目。分析了多种热管理方法,并在权衡分析之后为这些情况选择了最佳解决方案。结果,为CMM选择了传统的液体/空气热管理解决方案,而没有为CTM选择专用的冷却系统。讨论了本文提出的解决方案是否适用于其他ITER系统。

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