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Engineered Methodology for Design Verification and Validation of Ultra-Deep High Pressure High Temperature Oil and Gas Well Control Equipment

机译:超深高压高温油气井控制设备设计验证的工程方法论

摘要

A process for the verification and validation testing of equipment and components for drilling, completion, production and general well construction (typically such as subsurface safety valves, wellhead trees, blowout preventers and wireline pressure control equipment) to determine the suitability of such equipment for use in oil and gas wells in high pressure high temperature environments. In particular, the process of the present invention comprises, among other steps, the steps of analyzing such components using an elastic-plastic finite element model with respect to certain preset load conditions and establishing stable model convergence, conducting a ratcheting assessment by running analysis on such model on all components that exhibit local plasticity, and examining all components to determine fatigue sensitive locations and subjecting such components to a fatigue analysis. The process may further comprise a process for qualifying the materials to be used in the manufacture of the equipment components with respect to their ability to withstand high pressure and high temperature environmental conditions.
机译:确定用于钻探,完井,生产和一般井道的设备和部件(通常是地下安全阀,井口树,防喷器和电缆压力控制设备)的验证和确认测试的过程,以确定此类设备的适用性在高压高温环境下的油气井中使用。特别地,本发明的方法除其他步骤外,还包括以下步骤:使用弹性塑性有限元模型针对某些预设载荷条件分析此类组件,并建立稳定的模型收敛性,通过对在具有局部可塑性的所有组件上建立此类模型,并检查所有组件以确定疲劳敏感位置,并对此类组件进行疲劳分析。该方法可以进一步包括用于根据其承受高压和高温环境条件的能力来鉴定用于制造设备部件的材料的方法。

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