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Investigation of the physico-chemical and mechanical properties of hard brittle shales from the Shahejie Formation in the Nanpu Sag, northern China

机译:中国北方南浦凹陷南浦凹陷中硬脆页岩物理化学和力学性能研究

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With increasing demand for energy and advances in exploration and development technologies, more attention is being devoted to exploration and development of deep oil and gas reservoirs. The Nanpu Sag contains huge reserves in deep oil and gas reservoirs and is a promising area. In this paper, the physico-chemical and mechanical properties of hard brittle shales from the Shahejie Formation in the Nanpu Sag in the Bohai Bay Basin of northern China were investigated using a variety of methods, including x-ray diffraction analysis, cation exchange capacity (CEC) analysis, contact angle measurements, scanning electron microscope observations, immersion experiments, ultrasonic testing and mechanical testing. The effects of the physico-chemical properties of the shales on wellbore instability were observed, and the effects of hydration of the shales on wellbore instability were also examined. The results show that the major mineral constituents of the investigated shales are quartz and clay minerals. The clay mineral contents range from 25.33% to 52.03%, and the quartz contents range from 20.03% to 46.45%. The clay minerals do not include montmorillonite, but large amounts of mixed-layer illite/smectite were observed. The CEC values of the shales range from 90 to 210 mmol kg(-1), indicating that the shales are partly hydrated. The wettability of the shales is strongly water-wetted, indicating that water would enter the shales due to the capillary effect. Hydration of hard brittle shales can generate cracks, leading to changes in microstructure and increases in the acoustic value, which could generate damage in the shales and reduce their strength. With increasing hydration time, the shale hydration effect gradually becomes stronger, causing an increase in the range of the acoustic travel time and decreases in the ranges of cohesion and internal friction angles. For the hard brittle shales of the Nanpu Sag, drilling fluid systems should aim to enhance sealing ability, decrease drilling fluid filter loss and increase the amount of clay-hydration inhibitor used.
机译:随着对勘探开发技术的能源和进步的日益增加,探讨了深石油和天然气储层的更多关注。 Nanpu SAG包含深度油气藏的巨大储备,是一个有希望的区域。在本文中,使用多种方法研究了南浦渤海湾渤海湾盆地渤海湾盆地的Shahejie凹陷的物理化学和力学性能,包括X射线衍射分析,阳离子交换能力( CEC)分析,接触角测量,扫描电子显微镜观测,浸没实验,超声波检测和机械测试。还观察到霍尔斯对井眼不稳定性的物理化学性质的影响,还研究了Shales水合对井眼不稳定性的影响。结果表明,调查的Shales的主要矿产成分是石英和粘土矿物质。粘土矿物质含量为25.33%至52.03%,石英含量为20.03%至46.45%。粘土矿物质不包括蒙脱石,但观察到大量的混合层伊晶/蒙脱石。 Shales的CEC值范围为90至210 mmol kg(-1),表明节子部分是水合的。 Shales的润湿性强烈润湿,表明水将由于毛细血管效应而进入Shales。硬脆页面的水合可以产生裂缝,导致微观结构的变化,并增加声值,这可能会产生损伤,并降低它们的强度。随着水化时间的增加,页岩水合效果逐渐变得更强,导致声学行进时间的范围增加并且在内聚力和内部摩擦角的范围内降低。对于Nanpu SAG的硬脆性股,钻孔流体系统应旨在增强密封能力,降低钻井液过滤器损失,增加所用粘土水合抑制剂的量。

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