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首页> 外文期刊>The APPEA Journal >THE EFFECTS OF DRILLING FLUID-SHALE INTERACTIONS ON WELLBORE STABILITY
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THE EFFECTS OF DRILLING FLUID-SHALE INTERACTIONS ON WELLBORE STABILITY

机译:钻井液-页岩相互作用对井筒稳定性的影响

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摘要

Wellbore instability, experienced mainly in shale sections, has resulted in significant drilling delays and suspension of wells in major Australian petroleum basins. These instabilities may be induced by either in-situ stresses that are high relative to the strength of the formations or physico-chemical interactions of the drilling fluid with the shales. This paper describes fundamental concepts of mud pressure penetration and flow of water between the wellbore and formation due to their chemical potential difference, and associated mud support changes as the drilling fluid interacts with shales. Due to the low permeability of shales, the penetration of the drilling fluid filtrate would result in an increase in pore pressure over a considerable distance from the wellbore. This instability mechanism strongly depends on properties of the drilling fluid filtrate and pore fluid, and the rock material composition. In addition to mud pressure penetration, water would be induced to either flow into or out of the formation depending on the relative chemical potential of the drilling fluid and the formation. A more stable wellbore condition could be achieved by optimising the chemical potential of drilling fluids. Drilling fluid and shale properties required for the models, which are determined using analytical and laboratory techniques, are presented herein. The effects of the time-dependent mechanisms on wellbore stability are demonstrated for a polyacry-lamide, an ester-based and an oil-based mud. The results demonstrate that a more effective mud support can be obtained by optimising the adhesion and viscosity of the drilling fluid filtrate, and chemical potential of the drilling fluid.
机译:主要在页岩段中经历的井筒失稳,导致严重的钻探延误和澳大利亚主要石油盆地中的油井暂停。这些不稳定性可能是由相对于地层强度而言较高的原地应力或钻井液与页岩的物理化学相互作用引起的。本文介绍了由于化学势差造成的泥浆压力渗透和井眼与地层之间的水流的基本概念,以及随着钻井液与页岩的相互作用而引起的相关泥浆支撑的变化。由于页岩的渗透率低,钻井液滤液的渗透将导致在距井眼相当远的距离上的孔隙压力增加。这种不稳定性机制在很大程度上取决于钻井液滤液和孔隙液的性质以及岩石材料的组成。除渗透泥浆压力外,还会根据钻井液和地层的相对化学势来促使水流入或流出地层。通过优化钻井液的化学势可以实现更稳定的井筒条件。本文介绍了使用分析和实验室技术确定的模型所需的钻井液和页岩属性。对于聚丙烯酰胺,酯基和油基泥浆,证明了时间依赖性机理对井筒稳定性的影响。结果表明,通过优化钻井液滤液的附着力和粘度以及钻井液的化学势,可以获得更有效的泥浆支持。

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