首页> 外文会议>NPC 2010;International radiolysis, electrochemistry and materials performance workshop;Nuclear plant chemistry conference;Internaional conference on water chemistry of nuclear reactor systems >PWR WATER CHEMISTRY CONTROLS: A PERSPECTIVE ON INDUSTRY INITIATIVES AND TRENDS RELATIVE TO OPERATING EXPERIENCE AND THE EPRI PWR WATER CHEMISTRY GUIDELINES
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PWR WATER CHEMISTRY CONTROLS: A PERSPECTIVE ON INDUSTRY INITIATIVES AND TRENDS RELATIVE TO OPERATING EXPERIENCE AND THE EPRI PWR WATER CHEMISTRY GUIDELINES

机译:压水堆水化学控制:对与行业经验和EPRI压水堆水化学指南有关的行业倡议和趋势的看法

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摘要

An effective PWR water chemistry control program must address the following goals: 1. Minimize materials degradation (e.g., PWSCC, corrosion of fuel, corrosion damage of steam generator (SG) tubes); 2. Maintain fuel integrity and good performance; 3. Minimize corrosion product transport (e.g., transport and deposition on the fuel, transport into the SGs where it can foul tube surfaces and create crevice environments for the concentration of corrosive impurities); 4. Minimize dose rates. Water chemistry control must be optimized to provide overall improvement considering the sometimes variant constraints of the goals listed above. New technologies are developed for continued mitigation of materials degradation, continued fuel integrity and good performance, continued reduction of corrosion product transport, and continued minimization of plant dose rates. The EPRI chemistry program, in coordination with other EPRI programs, strives to improve these areas through application of chemistry initiatives, focusing on these goals. This paper highlights the major initiatives and issues with respect to PWR primary and secondary system chemistry and outlines the recent, on-going, and proposed work to effectively address them. These initiatives are presented in light of recent operating experience, as derived from EPRI's PWR chemistry monitoring and assessment program, and EPRI's water chemistry guidelines.
机译:有效的PWR水化学控制程序必须实现以下目标:1.最小化材料降解(例如PWSCC,燃料腐蚀,蒸汽发生器(SG)管的腐蚀损坏); 2.保持燃油完整性和良好性能; 3.最大限度地减少腐蚀产物的运输(例如,在燃料上的运输和沉积,运输到SG中,在那里它们可能污染管子表面并为腐蚀性杂质的浓缩创造缝隙环境); 4.最小化剂量率。考虑到上述目标有时会有所不同,必须优化水化学控制以提供整体改进。开发了新技术以持续减轻材料降解,持续保持燃料完整性和良好性能,持续减少腐蚀产物的运输以及持续最小化工厂剂量率。 EPRI化学计划与其他EPRI计划协调,致力于通过应用化学计划来改善这些领域,并着重于这些目标。本文重点介绍了有关PWR一级和二级系统化学的主要举措和问题,并概述了有效解决这些问题的近期,正在进行的和拟议的工作。这些举措是根据EPRI的PWR化学监测和评估计划以及EPRI的水化学指南得出的最新操作经验提出的。

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