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Development of a Sour HPHT Environment Corrosion-Fatigue S-N Design Curve

机译:酸性HPHT环境腐蚀疲劳S-N设计曲线的开发

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In Deepwater Gulf of Mexico (USA), industry and regulatory requirements now require fatigue analysis of in-well barrier equipment for HPHT development wells. The S-N (stress-life) based analysis, specifically utilizing ASME BPVC Sec. VIII Div-2 Part 5 (2013), was the selected analysis methodology for a project. The project required analysis of oilfield grade precipitation hardened nickel-based alloys cyclically loaded in a high temperature environment with sour corrosive produced fluid characterized by significant H2S, C02, and chlorides, and low pH. As part of the fatigue analysis, a suitable fatigue design curve needed to be selected for the desired metallurgy and environmental exposure. The team initially focused on utilizing an existing industry standard fatigue design curve, but after review, development of a unique corrosion fatigue design curve was required. The targeted initial fatigue design curve was the applicable curve found in ASME BPVC Sec. VIII Div-2 (2013). The team used a proprietary data set, from an environment representative of the expected downhole conditions of the project, collected for a previous project. The data set clearly demonstrated that the applicable ASME BPVC design curve (ASME BPVC Sec. VIII Div-2 2013) did not meet the required level of conservatism in this sour corrosive HPHT environment. The original intent of the data set likely was not to validate or develop a fatigue design curve and the test protocol did yield data that could readily be input into typical design curve analysis. Therefore, some advanced and novel analysis techniques were used to develop a unique S-N fatigue design curve that met the industry standard requirements for conservatively predicting fatigue failure and met the requirements for use within ASME BPVC Sec. VIII Div-2 Part 5 based analysis.
机译:在墨西哥深水湾(美国),工业和法规要求现在需要对HPHT开发井的井内阻隔设备进行疲劳分析。基于S-N(应力-寿命)的分析,特别是利用ASME BPVC Sec。 VIII Div-2第5部分(2013年)是项目选择的分析方法。该项目需要分析在高温环境下循环加载的酸性酸性采出液,其特征在于含有大量的H2S,CO2和氯化物,并且pH值低,因此需要对油田级沉淀硬化镍基合金进行循环分析。作为疲劳分析的一部分,需要为所需的冶金和环境暴露选择合适的疲劳设计曲线。该团队最初专注于利用现有的行业标准疲劳设计曲线,但经过审查,需要开发独特的腐蚀疲劳设计曲线。目标初始疲劳设计曲线是ASME BPVC Sec中的适用曲线。 VIII Div-2(2013)。该团队使用了一个专有数据集,该数据集来自于代表先前项目的预期井下状况的环境。数据集清楚地表明,在这种酸性腐蚀性HPHT环境中,适用的ASME BPVC设计曲线(ASME BPVC第VIII分类第2节2013)未达到要求的保守度。数据集的原始意图可能是不验证或开发疲劳设计曲线,而测试协议确实产生了可以轻松输入到典型设计曲线分析中的数据。因此,一些先进和新颖的分析技术被用于开发一条独特的S-N疲劳设计曲线,该曲线满足行业标准要求,以保守地预测疲劳失效,并满足在ASME BPVC Sec中使用的要求。 VIII Div-2第5部分基于分析。

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