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Progress in Hanford's Double-Shell Tank Integrity Project

机译:汉福德双壳坦克完整性项目的进展

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The U.S. Department of Energy's Office of River Protection has an extensive integrity assessment program for the Hanford Site Double-Shell Tank System. The DOE Orders and environmental protection regulations provide the guidelines for the activities used to inspect and maintain 28 double-shell tanks (DSTs), the waste evaporator, and ancillary equipment that compose this system. This program has been reviewed by oversight and regulatory bodies and found to comply with the established guidelines.The basis for the DOE Order 435.1-1 for tank integrity comes from the Tank Structural Integrity Panel led by Brookhaven National Laboratory during the late 1990s. These guidelines established criteria for performing Non-Destructive Examination (NDE), for acceptance of the NDE results, for waste chemistry control, and for monitoring the tanks. The environmental regulations mirror these requirements and allow for the tank integrity program to provide compliant storage of the tanks. Both sets of requirements provide additional guidance for the protection of ancillary equipment.CH2M HILL uses two methods of NDE: visual inspection and Ultrasonic Testing (UT). The visual inspection program examines the primary tank and secondary liner of the DST. The primary tank is examined both on the interior surface above the waste in the tank and on the exterior surface facing the annulus of the DST. The interior surface of the tank liner is examined at the same time as the outer-surface of the primary tank. The UT program examines representative areas of the primary tank and secondary liner by deploying equipment in the annulus of the tank.Both programs have led to the development of new equipment for remote inspection of the tanks. Compact camera and enhanced lighting systems have been designed and deployed through narrow access ports (called risers) into the tanks. The UT program has designed two generations of crawlers and equipment for deployment through risers into the thermally hot and radioactive environment. Also extensions were developed to allow inspection of the tank's curve upper (haunch) and lower (knuckle) surfaces.CH2M HILL primarily maintains chemistry control of the DST by ensuring that the concentrations of hydroxide and nitrite ions are favorable with respect to the nitrate ion concentration in the waste. This control program is supported by an extensive sampling program that obtains samples from the supernatant and solid layers in the tank to ensure compliance with the chemical specification. At DOE direction, CH2M HILL has embarked on a waste chemistry optimization program to enhance the protection of the tank surface and the understanding of the parameters that affect general and localized corrosion in the tanks.Over the past decade, DOE has deployed Electrochemical Noise corrosion probes in the DST to monitor localized corrosion. From the information gathered as part of the chemistry control, new information has been identified about the parameters requiring control to ensure tank integrity. CH2M HILL is deploying a series of corrosion probes to test and employ these parameters to provide real time corrosion monitoring of the DSTs.
机译:美国能源部河道保护办公室对汉福德工地双壳储罐系统进行了广泛的完整性评估计划。 DOE指令和环境保护法规为检查和维护组成该系统的28个双壳储罐(DST),废物蒸发器和辅助设备提供了活动指南。监督和监管机构对该程序进行了审查,发现该程序符合既定的准则。 美国能源部第435.1-1号令关于储罐完整性的依据来自1990年代后期由布鲁克海文国家实验室领导的储罐结构完整性专家组。这些准则为执行非破坏性检查(NDE),接受NDE结果,进行废物化学控制以及监测储罐建立了标准。环境法规反映了这些要求,并允许储罐完整性计划提供对储罐的合规存储。这两套要求为保护辅助设备提供了额外的指导。 西图集团使用两种无损检测方法:外观检查和超声检测(UT)。外观检查程序检查DST的主油箱和辅助衬管。在储罐中废物上方的内表面和面向DST环空的外表面上均检查主储罐。同时检查油箱衬里的内表面和主油箱的外表面。 UT程序通过在储罐环带中部署设备来检查主储罐和辅助衬套的代表性区域。 这两个程序都导致开发了用于远程检查储罐的新设备。紧凑型相机和增强型照明系统已通过狭窄的检修口(称为立管)设计和部署到了油箱中。 UT程序设计了两代履带和设备,可通过立管部署到热和放射性环境中。还开发了扩展件,以允许检查油箱的曲线上(腰部)和下(指关节)表面。 CH2M HILL通过确保氢氧根和亚硝酸根离子的浓度相对于废物中的硝酸根离子浓度而言是主要的,来保持DST的化学控制。该控制程序由广泛的采样程序提供支持,该程序可从罐中的上清液和固体层中获取样品,以确保符合化学规格。在DOE方向上,CH2M HILL已着手进行废物化学优化计划,以增强对储罐表面的保护以及对影响储罐普遍腐蚀和局部腐蚀的参数的理解。 在过去的十年中,DOE在DST中部署了“电化学噪声”腐蚀探头,以监控局部腐蚀。从作为化学控制一部分收集的信息中,已经确定了有关需要控制以确保罐完整性的参数的新信息。西图集团正在部署一系列腐蚀探针来测试和使用这些参数来提供对DST的实时腐蚀监控。

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