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EPRI BWR WATER CHEMISTRY GUIDELINES REVISION

机译:epri bwr水化学指南修订版

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BWRVIP-190: BWR Water Chemistry Guidelines - 2008 Revision has been revised. The revision committee consisted of U.S. and non-U.S. utilities (members of the BWR Vessel and Internals Protection (BWRVIP) Mitigation Committee), reactor system manufacturers, fuel suppliers, and EPRI and industry experts. The revised document, BWRVIP-190 Revision 1, was completely reformatted into two volumes, with a simplified presentation of water chemistry control, diagnostic and good practice parameters in Volume 1 and the technical bases in Volume 2, to facilitate use. The revision was developed in parallel and in coordination with preparation of the Fuel Reliability Guidelines Revision 1: BWR Fuel Cladding Crud and Corrosion. Guidance is included for plants operating under normal water chemistry (NWC), moderate hydrogen water chemistry (HWC-M), and noble metal application (GE-Hitachi NobleChem) plus hydrogen injection. Volume 1 includes significant changes to BWR feedwater and reactor water chemistry control parameters to provide increased assurance of intergranular stress corrosion cracking (IGSCC) mitigation of reactor materials and fuel reliability during all plant conditions, including cold shutdown (≤200 °F (93 °C)), startup/hot standby (>200 °F (93 °C) and ≤ 10%) and power operation (>10% power). Action Level values for chloride and sulfate have been tightened to minimize environmentally assisted cracking (EAC) of all wetted surfaces, including those not protected by hydrogen injection, with or without noble metals. Chemistry control guidance has been enhanced to minimize shutdown radiation fields by clarifying targets for depleted zinc oxide (DZO) injection while meeting requirements for fuel reliability. Improved tabular presentations of parameter values explicitly indicate levels at which actions are to be taken and required sampling frequencies. Volume 2 provides the technical bases for BWR water chemistry control for control of EAC, flow accelerated corrosion (FAC), fuel reliability, radiation field control, chemistry program optimization and data monitoring and evaluation. New appendices are included on the BWRVIP Mitigation Performance Indicator (MPI) and new technologies to mitigate cracking. Volume 2 is also a valuable resource for training new BWR Chemistry personnel.
机译:BWRVIP-190:BWR水化学指南 - 2008年修订已修订。修订委员会包括美国和非美国。公用事业(BWR船舶和内部保护(BWRVIP)缓解委员会),反应堆系统制造商,燃料供应商和EPRI和工业专家。修订后的文件BWRVIP-190修订版1完全重新格式化为两卷,在第1卷和第2卷中的技术碱基中简化了水化学控制,诊断和良好实践参数,以促进使用。修订版是并行开发的,并协调燃料可靠性指南修订版1:BWR燃料包层CRUD和腐蚀。在正常水化学(NWC),中等氢水化学(HWC-M)和贵金属应用(Ge-Hitachi Noblechem)加氢注射液中,包括指导植物。第1卷包括BWR Feedswater和反应器水化学控制参数的显着变化,以提供晶间应力腐蚀裂纹(IGSCC)缓解反应器材料和燃料可靠性在所有植物条件下的增加的保证,包括冷关断(≤200°F(93°C) )),启动/热备用(> 200°F(93°C)和≤10%)和电源操作(> 10%功率)。氯化物和硫酸盐的作用水平值已被拧紧,以最小化所有湿润表面的环保开裂(EAC),包括未受氢注射的那些,有或没有贵金属。化学控制引导已经增强,以通过澄清耗尽氧化锌(DZO)注射的靶标在满足燃料可靠性要求时最小化停机辐射场。改进了参数值的表格呈现明确表示要采取动作和所需采样频率的级别。第2卷为BWR水化学控制提供了用于控制EAC,流量加速腐蚀(FAC),燃料可靠性,辐射现场控制,化学节目优化和数据监测和评估的技术基础。新的附录包含在BWRVIP缓解性能指标(MPI)和新技术上,以减轻开裂。第2卷也是培训新BWR化学人员的有价值资源。

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