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An Experimental Investigation of the Impact of Diffusion Osmosis and Chemical Osmosis on the Stability of Shales

机译:渗透渗透和化学渗透对页岩稳定性影响的实验研究

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摘要

Wellbore instability in shales is the most challenging and costly issue in drilling operations. Wellbore instability in shales can be attributed to many factors, some of which have been well studied and documented. However, the physicochemical and mechanical properties alterations in shahs that eventually lead to wellbore failure have been largely ignored. Water and ion movements in and out of shales play a major role in the alteration of the physicochemical and mechanical properties of shales, thus leading to wellbore instability problems and possible hole collapse. Water and ions can move in and out of shales by many mechanisms, including, but not limited to, diffusion osmosis, chemical osmosis, convective flow, and capillary suction.This work presents experimental data analyzing the impact of chemical osmosis and diffusion osmosis on water and ion movements when shale interacts with drilling fluids. The adopted experimental work minimized the effect of convective flow and capillary suction. Results show that water movement is not only controlled by chemical osmosis (water activity) as previously thought but is also influenced by diffusion osmosis. This insight provides information and guidelines to optimize drilling fluids to effectively control and mitigate wellbore instability when drilling through troublesome shale.
机译:页岩中的井眼失稳是钻井作业中最具挑战性和成本最高的问题。页岩中井眼的不稳定性可以归因于许多因素,其中一些因素已经得到了充分的研究和记录。但是,shah的物理化学和机械性能改变最终导致井眼破裂,这一点已被很大程度上忽略。页岩内外的水和离子运动在改变页岩的物理化学和机械性能中起着重要作用,从而导致井筒失稳问题和可能的井眼塌陷。水和离子可以通过多种机制进出页岩,包括但不限于扩散渗透,化学渗透,对流和毛细吸力。这项工作提供了分析化学渗透和扩散渗透对水的影响的实验数据。页岩与钻井液相互作用时的离子运动。通过的实验工作将对流和毛细管抽吸的影响降到最低。结果表明,水的运动不仅像以前所认为的那样受到化学渗透(水的活动)的控制,而且还受到扩散渗透的影响。该见解提供了信息和指导方针,以优化钻井液,以有效控制和减轻钻探麻烦页岩时井眼的不稳定性。

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