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FABRICATION OF EXPERIMENTAL SETUP FOR INVESTIGATION OF DRILL STRING FATIGUE FAILURE

机译:实验装置对钻弦疲劳失效的实验设置

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Drill string and downhole tool failure usually results from failing to control one or more of the vibration mechanisms. The solution starts with the ability to measure different modes and hence identify the different vibration mechanisms. An in house experimental setup was developed to imitate the downhole axial, lateral and torsional vibration modes and mechanisms. Single and coupled vibration modes and mechanisms were created. This paper mainly focused the design and fabrication of the experimental setup. Capability of the setup for creating different vibration modes were examined. Experiments were performed to investigate the effects of rotational speeds and lateral vibration mode on the fatigue life of drill strings. Fatigue life is measured from the number of cycles associated with the amplitude of the stress cycles created due to lateral vibration Results showed that drill string size and lateral vibration stress cycles have significant effects on the fatigue life of the drill string. Investigations also showed that operating on a rotation speed higher than 90% of the drill string critical speed leads to yielding of the drill string. Such setup is essential for oil/gas industries as it can be utilized to investigate and provide solutions for very common problems such as drill string fatigue failure.
机译:钻柱和井下工具故障通常不会导致无法控制一个或多个振动机制。解决方案以测量不同模式的能力开始,因此识别不同的振动机制。开发了一个在房屋实验设置中,以模仿井下轴向,横向和扭转振动模式和机构。创建单个和耦合振动模式和机制。本文主要集中了实验设置的设计和制造。检查了创建不同振动模式的设置的能力。进行实验以研究转速和横向振动模式对钻弦疲劳寿命的影响。从与由于横向振动结果产生的应力循环的幅度相关的循环数量测量疲劳寿命,显示钻柱尺寸和横向振动应力循环对钻柱的疲劳寿命具有显着影响。研究还表明,在高于90%的钻柱临界速度的旋转速度上运行导致钻头串。这种设置对于石油/天然气行业至关重要,因为它可以用于调查和提供非常常见问题的解决方案,例如钻串疲劳失败。

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