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Water Chemistry Contorol To Meet The Advanced Design And Operation Of Light Water Reactors

机译:水化学控制满足轻水反应器的先进设计和运行

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Water chemistry control is one of the key technologies to establish safe and reliable operation of nuclear power plants. The road maps on R&D plans for water chemistry of nuclear power systems in Japan have been proposed along with promotion of R&D related water chemistry improvement for the advanced application of light water reactors (LWRs). The technical trends were divided into four categories, dose rate reduction, structural integrity, fuel integrity and radioactive waste reduction, and latest technical break through for each category was shown for the advanced application of LWRs. At the same time, the technical break through and the latest movements for regulation of water chemistry were introduced for each of major organizations related to nuclear engineering in the world. The conclusions were summarized as follows; 1. Water chemistry improvements might contribute to achieve the advanced application of LWRs, while water chemistry should be often changed to achieve the advanced application of LWRs. 2. Only one solution for water chemistry control was not obtained for achieving the advanced application of LWRs, but miscellaneous solutions were possible for achieving one. Optimal water chemistry control was desired for having the good practices for satisfying multi-targets at the same time and it was much affected by the plant unique systems and operational history. 3. That meant it was difficult to determine water chemistry regulation targets for achieving application of LWRs but it was necessary to prepare suitable guideline for good achievement of application of LWRs. That meant the guideline should be recommendation for good practice in the plant. 4. The water chemistry guide line should be modified along with progress of plant operation and water chemistry and related technologies.
机译:水化学控制是建立核电站安全可靠运行的关键技术之一。促进R&D相关水化学改进的核电系统研发水化学水化的路线图,促进了Light水反应器的先进应用(LWRS)。技术趋势分为四类,剂量率降低,结构完整性,燃料完整性和放射性废物减少,以及每个类别的最新技术突破为LWRS的先进应用。与此同时,为世界上有关核工程有关的每个主要组织引入了技术突破和水化学调节的最新变动。结论总结如下; 1.水化学改善可能有助于实现LWRS的先进应用,而水化学应该经常改变以实现LWRS的先进应用。 2.没有获得一种用于水化学控制的一个解决方案,以实现LWRS的先进应用,但杂项溶液可以实现杂项。期望最佳水化学控制对于在同一时间满足多目标的良好实践,并且受工厂独特的系统和操作史的影响很大。 3.这意味着难以确定用于实现LWRS应用的水化学调控目标,但有必要准备适当的良好申请LWR的准则。这意味着该指南应该是植物良好做法的建议。 4.应随着植物运行和水化学及相关技术的进展来修改水化学指导线。

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