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Measurement-based, in-service method for determining the time to the next internal inspection of an AST

机译:基于测量的在役方法,用于确定下次进行AST内部检查的时间

摘要

Methods for quantitatively determining the time (TNI) between (1) the application of this method and (2) the time at which an out-of-service internal inspection of a steel, field-erected, aboveground storage tank (AST) containing a petroleum product or water should be performed. These methods combine in-service measurements of the thickness, integrity, and corrosion rate of the tank bottom with an empirical corrosion rate cumulative frequency distribution (CFD) for the tank of interest to develop a Bayesian tank bottom survival probability distribution to determine TNI. During this entire TNI time period, the risk of tank bottom failure is less than at the time these methods were applied. If available, the results of a previous out-of-service API 653 internal inspection are also used. These methods are applied to a single tank and can be applied at any time during the service life of a tank to check or update the internal inspection interval that was previously determined that is based on the condition of the tank bottom. These methods focus on refined petroleum applications, but they can be applied to a wide range of liquid products providing the maximum corrosion rate CFD of the tank bottom can be determined.
机译:定量确定(1)应用此方法与(2)停运装有钢制管道的地面上地面储罐(AST)的内部停用状态之间的时间(TNI)的方法应使用石油产品或水。这些方法将在役油罐底部的厚度,完整性和腐蚀速率的测量结果与目标油罐的经验腐蚀速率累积频率分布(CFD)相结合,以开发贝叶斯油罐底部生存概率分布来确定TNI。在整个TNI时间段内,油箱底部故障的风险小于应用这些方法时的风险。如果可用,还将使用以前的服务停用API 653内部检查的结果。这些方法适用于单个储罐,并且可以在储罐使用寿命期间的任何时间应用,以检查或更新基于储罐底部状况预先确定的内部检查间隔。这些方法侧重于精炼石油应用,但只要可以确定罐底的最大腐蚀速率CFD,它们就可以应用于多种液体产品。

著录项

  • 公开/公告号US10345270B1

    专利类型

  • 公开/公告日2019-07-09

    原文格式PDF

  • 申请/专利权人 VISTA PRECISION SOLUTIONS INC.;

    申请/专利号US201715490688

  • 发明设计人 JOSEPH W. MARESCA JR.;

    申请日2017-04-18

  • 分类号G06F11/30;G01N29/14;G01B17/02;G01N29/07;G01N29/04;B65D90/50;G01B21/18;G01M3;

  • 国家 US

  • 入库时间 2022-08-21 12:13:29

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