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APPLICATION OF CODE CASE N-597 FOR LOCAL THINNING ASSESSMENT FOR CLASS 1 PIPING

机译:代码案例N-597在1级管道中的局部稀释评估中的应用

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Process piping components such as elbows, bends and tees experience local wall thinning due to Flow Accelerated Corrosion (FAC). Fitness for service studies of the piping components that are affected by FAC for continued operation have gained importance in light of the plant life extension resulting in economic benefits for the operating utilities. ASME Code Case N-597 provides the guidelines for acceptance for continued service of Classes 2 and 3 piping components experiencing wall thinning during operation. However, for Class 1 systems, the Code Case recommends that the owner develop the methodology and criteria for the assessment of wall thinning. This paper establishes a criteria and methodology for the assessment of thinned Class 1 piping system components. The rules of NB-3221 and NB-3650 of ASME Boiler & Pressure Vessel Code (Ref.1) have been considered in establishing the criteria. The requirements of NB-3221 have been utilized for evaluating the adequacy of pressure design. After meeting this requirement, further evaluation of the piping with thinned area is carried out as per NB-3650 requirements for all loadings corresponding to design and service conditions. To illustrate the criteria and the methodology, an assessment of a sample problem of a locally thinned region in a pipe bend is provided in this paper. Finite element analysis and piping analysis are used for the assessment of the thinned region of the pipe bend. Loading considered includes pressure, deadweight, thermal transients and seismic effects.
机译:处理管道部件,例如肘部,弯曲和TEES,由于流量加速腐蚀(FAC)而受到局部壁变薄。根据植物寿命延伸,受到FAC用于持续运作影响的管道组件的服务研究的健身性研究旨在为经营公用事业公司产生经济效益。 ASME Code Case N-597提供了在运行期间持续持续的墙体变薄的持续服务的持续服务的持续服务的准则。但是,对于第1类系统,代码案件建议所有者制定用于评估墙面变薄的方法和标准。本文建立了评估减少的1级管道系统组件的标准和方法。在建立标准时考虑了ASME锅炉和压力容器代码(REF.1)的NB-3221和NB-3650的规则。已经利用NB-3221的要求来评估压力设计的充分性。在满足这一要求之后,根据对应于设计和服务条件的所有负载量的所有负载,进一步评估管道的进一步评估。为了说明标准和方法,本文提供了对管弯中的局部变薄区域的样本问题的评估。有限元分析和管道分析用于评估管弯的稀释区域。被认为的装载包括压力,重量级,热瞬变和地震效果。

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