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Hydrogen inventories in the vacuum pumping systems of ITER

机译:国际热核实验堆真空泵系统中的氢气清单

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The ITER in-vessel hydrogen inventory is highly dynamic and determined by a broad range of parameters. Moreover, it is of prime importance to allocate the inventory as accurately as possible. Two essential control issues have to be met. The basic safety approach is to limit the amount of hydrogen such that the resulting pressure in case of an explosion accident is compatible to the design criteria of the vacuum vessel. This requirement drives the operational philosophy and the design of the cryogenic pumps which are connected to the vessel. The administrative limitation of the tritium inventory is another essential requirement on reactor operation. This paper illustrates how hydrogen inventory control issues are reflected by the operational schemes of the vacuum pumping systems. Latest results include the release characteristics of hydrogens and tritium during normal regeneration of the cryopumps and under off-normal events. The different semi-permanent contributions to the overall tritium inventory are discussed. The forepumping systems reduce the in-vessel inventory and act as interface to the tritium plant. A typical example of an integral pump-out curve is discussed. It is shown that sufficient safety margin is included in the ITER vacuum pumping design.
机译:ITER船上氢的库存量是动态变化的,并由一系列参数决定。此外,至关重要的是尽可能准确地分配库存。必须满足两个基本的控制问题。基本的安全方法是限制氢气的数量,以使发生爆炸事故时所产生的压力与真空容器的设计标准兼容。该要求驱动了连接到容器的低温泵的操作原理和设计。 inventory库存的行政限制是反应堆运行的另一个基本要求。本文说明了真空泵系统的运行方案如何反映出氢气库存控制问题。最新结果包括低温泵正常再生过程中和非正常事件下氢和tri的释放特性。讨论了to对总inventory的不同半永久性贡献。前推系统减少了船内库存,并充当了plant工厂的接口。讨论了积分泵出曲线的典型示例。结果表明,ITER真空泵设计中包含足够的安全裕度。

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