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首页> 外文期刊>First Break >The role of thermal stress in near wellbore instabilities and its implications: a case study from the HTHP well, offshore East India
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The role of thermal stress in near wellbore instabilities and its implications: a case study from the HTHP well, offshore East India

机译:热力应力在井筒局部不稳定性附近的作用及其含义:HTHP井的案例研究,近海印度

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摘要

Drilling through a narrow pore pressure-fracture pressure window, especially under HTHP (high temperature-high pressure) conditions, is one of the most challenging and costly operations in the oil and gas industry. In this case study, drilling results and thermal stress modelling emphasized the role of thermal stress in several borehole failures encountered at shallow depths and severe formation breakdown incidents at deeper depths. The thermal stress from cooling effects delayed the shear failure conditions by reducing the maximum tangential stress of the formation around the wellbore, but induced formation breakdown as the minimum tangential stress exceeded the tensile strength of the formation. The result from this study shows both the rock stiffness (Young's Modulus, Poisson Ratio) and differential temperatures (ΔT) have a critical control on thermal stress-related instabilities. Thermal stress-based wellbore stability modelling shows that temperature fluctuations in the dynamic drilling environment can induce a stress change at the rate of 300-500 psi/10°C. Our study results show that the range of thermal stress magnitudes in stiff rocks can vary between 300-4000 psi for a ΔT range of 20-60°C.
机译:钻孔通过狭窄的孔隙压力 - 断裂压力窗口,特别是在HTHP(高温高压)条件下,是石油和天然气工业中最具挑战性和昂贵的运营之一。在这种情况下,研究,钻井结果和热应力建模强调了热应力在浅层深度遇到的几种钻孔故障中的作用,并且在更深的深度处遇到严重的形成击穿事件。通过降低井筒周围形成的形成的最大切向应力,冷却效应的热应力延迟了剪切失效条件,但随着最小切向应力超过形成的拉伸强度,诱导的形成击穿。本研究的结果表明,岩石刚度(杨氏模量,泊松比)和差动温度(ΔT)对热应力相关的不稳定性具有关键控制。基于热应力的井筒稳定性建模表明,动态钻井环境中的温度波动可以以300-500psi / 10°C的速率引起应力变化。我们的研究结果表明,硬质岩石中的热应力幅度范围可以在300-4000psi之间变化,ΔT范围为20-60℃。

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