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Experimental study of shear and hydraulic bonding strength between casing and cement under complex temperature and pressure conditions

机译:复杂温度和压力条件下套管与水泥之间的剪切力和水力粘结强度的试验研究

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摘要

The cement sheath plays a vital role in preventing gas channelling. It is important to understand the interfacial bonding between the casing and cement sheath when the downhole temperature and pressure change. This paper demonstrates the results of an experimental study to investigate the effect of high temperature and high pressure and their variations on the cement sheath interfacial bonding strength (CSIBS). An experimental device was developed that is used to test the shear and hydraulic bonding strength with the method of uniaxial compression and gas channelling. The results show that both temperature and pressure have a significant influence on the CSIBS. As the curing temperature increases with a constant curing time or as the curing time increases with a constant curing temperature, the CSIBS first increases and then converges to a stable value. The casing roughness has a crucial effect on the shear bonding strength but little effect on the hydraulic bonding strength. Though the CSIBS decreases obviously with the decrease in temperature, it undergoes little change when the temperature first increases and then recovers to the initial value. When the internal casing pressure decreases to a certain value or first increases to a certain value followed by recovery to the initial state, the hydraulic bonding strength tends to be 0 MPa, which means that the interface undergoes debonding between the casing and cement.
机译:水泥护套在防止气体窜动中起着至关重要的作用。了解井下温度和压力变化时套管与水泥护套之间的界面粘结非常重要。本文展示了一项实验研究的结果,以研究高温和高压的影响及其变化对水泥护套界面粘结强度(CSIBS)的影响。开发了一种实验设备,用于通过单轴压缩和气体通道化方法测试剪切力和水力粘结强度。结果表明,温度和压力均对CSIBS有显着影响。随着固化温度随着恒定的固化时间而增加或随着固化时间随着恒定的固化温度而增加,CSIBS首先增加,然后收敛到稳定值。套管的粗糙度对剪切粘结强度有关键影响,而对水硬粘结强度影响很小。尽管CSIBS随温度降低而明显降低,但当温度先升高然后恢复到初始值时,它几乎没有变化。当内部套管压力降低到某个值或首先增加到某个值,然后恢复到初始状态时,水力粘结强度趋于为0 MPa,这意味着该界面在套管和水泥之间发生剥离。

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