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首页> 外文期刊>Journal of natural gas science and engineering >Research on wellbore stress in under-balanced drilling horizontal wells considering anisotropic seepage and thermal effects
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Research on wellbore stress in under-balanced drilling horizontal wells considering anisotropic seepage and thermal effects

机译:考虑各向异性渗流和热效应的平衡钻井水平井井筒应力研究

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摘要

Under-balanced drilling (UBD) is widely used in petroleum drilling engineering, and regarding wellbore safety, it is necessary to analyze stress distribution around the wellbore during drilling procedures. Aiming at seepage and thermal effects during UBD, a model of pore pressure distribution under anisotropic seepage of horizontal wells was derived using conformal transformation. Combined with elastic theory, a new model of seepage stress around welibores has been constructed. Moreover, based on a heat transfer model solved by finite difference methods, this paper studied wellbore and formation temperature fields during horizontal drilling when heat sources (circulating pressure drops and mechanical friction) are considered. This study shows that both pore pressure and seepage stress are present in an elliptical manner under anisotropic seepage. The annulus temperature of the horizontal section is greater than the geothermal temperature, thus compressive thermal stress forms in the surrounding rock; in contrast, tensile thermal stress develops when heat sources are excluded. The two factors, therefore, should be considered sufficiently important. The heat sources with thermal effects and anisotropy of seepage, which are usually omitted, have been treated again, leading to more accurate results of horizontal UBD and providing a theoretical basis for subsequent wellbore stability analysis. (C) 2017 Elsevier B.V. All rights reserved.
机译:平衡钻井(UBD)广泛用于石油钻井工程,并考虑到井筒安全性,在钻井过程中有必要分析井筒周围的应力分布。旨在在UBD期间渗透和热效应,使用保形转化来衍生出水平孔各向异性孔下孔隙压力分布模型。结合弹性理论,建造了宽阔的渗流压力的新模型。此外,基于通过有限差分方法解决的传热模型,当考虑热源(循环压降和机械摩擦)时,本文研究了水平钻井期间的井筒和形成温度场。该研究表明,在各向异性渗流下,孔隙压力和渗流应力均以椭圆形方式存在。水平部分的环度大于地热温度,从而在周围岩石中形成压缩热应力;相反,当排除热源时,拉伸热应力发生。因此,两个因素应该被认为是足够重要的。通常省略了具有热效应和渗透的各向异性的热源,其再次得到处理,导致水平UBD的更准确的结果,并为随后的井眼稳定性分析提供理论基础。 (c)2017 Elsevier B.v.保留所有权利。

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