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Effect of pulse pressure on borehole stability during shear swirling flow vibration cementing

机译:脉动压力对剪切旋流振动固井过程中井眼稳定性的影响

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摘要

The shear swirling flow vibration cementing (SSFVC) technique rotates the downhole eccentric cascade by circulating cementing fluid. It makes the casing eccentrically revolve at high speed around the borehole axis. It produces strong agitation action to the annulus fluid, makes it in the state of shear turbulent flow, and results in the formation of pulse pressure which affects the surrounding rock stress. This study was focused on 1) the calculation of the pulse pressure in an annular turbulent flow field based on the finite volume method, and 2) the analysis of the effect of pulse pressure on borehole stability. On the upside, the pulse pressure is conducive to enhancing the liquidity of the annulus fluid, reducing the fluid gel strength, and preventing the formation of fluid from channeling. But greater pulse pressure may cause lost circulation and even formation fracturing. Therefore, in order to ensure smooth cementing during SSFVC, the effect of pulse pressure should be considered when cementing design.
机译:剪切旋流振动固井技术(SSFVC)通过循环固井液来旋转井下偏心叶栅。它使套管绕井眼轴线高速偏心旋转。它对环空流体产生强烈的搅拌作用,使其处于剪切湍流状态,并形成影响周围岩石应力的脉冲压力。这项研究的重点是:1)基于有限体积法的环形湍流场中脉压的计算,以及2)脉压对井眼稳定性的影响分析。从好的方面来看,脉冲压力有利于增强环空液体的流动性,降低液体的凝胶强度,并防止形成流体。但是更大的脉冲压力可能会导致漏失甚至地层破裂。因此,为确保在SSFVC期间顺利进行固井,固井设计时应考虑脉冲压力的影响。

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