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Tritium Production in Secondary Neutron Sources in Pressurized Water Reactors

机译:压水堆中次级中子源的Production生产

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Currently there are large uncertainties associated with the source of tritium in a Pressurized Water Reactor (PWR) Reactor Coolant System (RCS). The measured amount of tritium in the coolant cannot be separated out empirically into its individual sources. Therefore, all sources of tritium in the RCS of a PWR must be understood theoretically. One potential source of tritium in the RCS is due to tritium production in secondary sources. Neutron sources provide a flux of neutrons that are used to support reactor startup. Primary startup neutron source rods made of Cf-252 are inserted into the reactor during the first cycle of a new nuclear reactor. The primary neutron sources are used to produce enough neutrons through spontaneous fission to create a sufficient neutron flux to be seen by the ex-core neutron detectors and facilitate reactor startup. Antimony-Beryllium secondary startup neutron sources are also inserted in the first reactor cycle to provide a neutron source for startups in future cycles. The Beryllium in the secondary sources is a source of tritium when irradiated in a neutron flux. This paper will discuss tritium produced within the secondary sources.
机译:当前,在压水堆(PWR)反应堆冷却剂系统(RCS)中in的来源存在很大的不确定性。不能凭经验将冷却剂中测得的量分成单独的来源。因此,必须从理论上理解压水堆RCS中所有all的来源。 RCS中的一种潜在来源是由于次级来源中的production产生。中子源提供用于支持反应堆启动的中子通量。在新核反应堆的第一个循环期间,将由Cf-252制成的初级启动中子源棒插入反应堆。初级中子源用于通过自发裂变产生足够的中子,以产生足够的中子通量,以供堆芯前中子探测器看到,并有助于反应堆启动。锑铍二次启动中子源也插入了第一个反应堆循环中,以为将来的循环中的启动提供中子源。次级源中的铍在中子通量照射下是is的来源。本文将讨论在次要来源中产生的tri。

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