水冷裂变和聚变反应堆中辐射分解问题的评述:第一部分,辐射分解模型的评估

D. Macdonald, G. Engelhardt, A. Petrov
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引用次数: 4

摘要

以ITER为重点,综述了核动力反应堆冷却水辐射分解模型的研究进展。该综述分为两部分:在第一部分中,我们根据重要的化学原理评估了以前的工作,并得出结论,在这方面,迄今为止提出的任何模型都不完全令人满意。因此,在各种辐射分解模型中提出的一些反应本质上不是基本反应,可以分解成两个或两个以上的基本反应,其中一些已经包含在模型中。在制定可行的模型时,必须排除这些反应。此外,类电荷种之间的基本反应也通常包括在内,但它们可以在普遍条件下(T < 350°C)根据库仑斥力打折,也必须去除。同样,得出的结论是,目前关于辐射分解产率(即g值)的知识状况也不能令人满意。需要做更多的工作,以确保辐射分解模型中使用的产率是真正的“初级”产率,对应于纳秒或更短的时间尺度。这是必要的,以确保在马刺(介质中的电离粒子轨迹)之外发生的反应的影响不会被计算两次。在第二部分中,作者回顾了将辐射分解模型与电化学模型相结合来预测沸水堆、压水堆和试验核聚变反应堆(ITER)冷却剂回路中304型SS的水化学、腐蚀电位、裂纹扩展速率和累积损伤。根据裂变反应堆的经验,重点应放在电化学腐蚀电位的控制上,因为它是最能描述冷却剂回路腐蚀状态的参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Critical Review of Radiolysis Issues in Water-Cooled Fission and Fusion Reactors: Part I, Assessment of Radiolysis Models
A critical review is presented on modeling of the radiolysis of the coolant water in nuclear power reactors with emphasis on ITER. The review is presented in two parts: In Part I, we assess previous work in terms of compliance with important chemical principles and conclude that no model proposed to date is completely satisfactory, in this regard. Thus, some reactions that have been proposed in various radiolysis models are not elementary in nature and can be decomposed into two or more elementary reactions, some of which are already included in the models. These reactions must be removed in formulating a viable model. Furthermore, elementary reactions between species of like charge are also commonly included, but they can be discounted upon the basis of Coulombic repulsion under the prevailing conditions (T < 350 °C) and must also be removed. Likewise, it is concluded that the current state of knowledge with respect to radiolytic yields (i.e., G-values) is also unsatisfactory. More work is required to ensure that the yields used in radiolysis models are truly “primary” yields corresponding to a time scale of nanoseconds or less. This is necessary to ensure that the impact of the reactions that occur outside of the spurs (ionizing particle tracks in the medium) are not counted twice. In Part II, the authors review the use of the radiolysis models coupled with electrochemical models to predict the water chemistry, corrosion potential, crack growth rate in Type 304 SS, and accumulated damage in the coolant circuits of boiling water reactors, pressurized water reactors, and the test fusion reactor, ITER. Based on experience with fission reactors, the emphasis should be placed on the control of the electrochemical corrosion potential because it is the parameter that best describes the state of corrosion in coolant circuits.
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