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SHELL CORROSION ALLOWANCE FOR ABOVEGROUND STORAGE TANKS

机译:面上储罐的壳腐蚀津贴

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Enbridge Pipelines Inc. utilizes aboveground crude oil storage tanks for operational flexibility and merchant storage purposes. Most of these tanks are built in accordance with the requirements of API 650. This standard requires that an appropriate corrosion allowance be included in the minimum shell thickness calculations. A variety of sources were researched in an effort to develop a process that ensures the selected corrosion allowance allows for the safe operation of a tank for its entire service life. Some of these sources include other API standards, historical API 653 tank inspection reports, published atmospheric corrosion rates, and corrosion allowance specifications of industrial counterparts. Defining an appropriate corrosion allowance requires consideration of a number of factors: 1. Whether or not the product contains significant sediments and water 2. Whether or not an internal lining will be applied in accordance with API 652 The length of time to the first out-of-service inspection 3. Whether or not the tank will be externally coated 4. The temperature of the product stored The annual precipitation at the specified location 5. The average chloride concentration in rainwater at the specified location During the course of the corrosion allowance study, the issue of maximum allowable design stress was also considered. The allowable stress values specified in the standard for construction of new tanks (API 650) differs from the allowable stress values specified in the inspection standard for existing tanks (API 653). It has been suggested that the incremental difference between the minimum shell thicknesses calculated using API 650 instead of API 653 could be designated as corrosion allowance. This paper will describe the corrosion allowance calculations in detail as well as address the issue of maximum allowable design stress.
机译:Enbridge Pipelines Inc.利用以下原油储罐进行操作灵活性和商家储存目的。大多数这些罐都是根据API 650的要求构建的。本标准要求适当的腐蚀允许包含在最小壳体厚度计算中。研究了各种来源,努力开发一种可确保所选择的腐蚀允许允许坦克的安全操作的过程来实现一种过程。其中一些来源包括其他API标准,历史API 653坦克检验报告,公布的大气腐蚀速度和工业对应物的腐蚀津贴规范。定义适当的腐蚀津贴需要考虑许多因素:1。产品是否含有显着的沉积物和水2.内衬是否将根据API 652施加内部衬里,这是第一个出局的时间长度服务水箱是否将在外部涂布4.产品的温度储存在指定位置的年降水量。在腐蚀津贴研究过程中,在指定位置的雨水中的平均氯化物浓度,还考虑了最大允许设计应力的问题。在建造新罐(API 650)的标准中规定的允许应力值与现有罐的检查标准中规定的允许应力值不同(API 653)。已经建议使用API​​ 650计算的最小壳体厚度之间的增量差异而不是API 653可以被指定为腐蚀余量。本文将详细描述腐蚀允许计算,以及解决最大允许设计应力的问题。

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