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Measurements of Permeability Change in Inter-Bedded Shale at Elevated Temperatures

机译:高温下卧间页岩渗透性变化的测量

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The geomechanical response of a reservoir to the Steam Assisted Gravity Drainage (SAGD) process involves changes in stress, deformation (strain), and permeability. For example, in many SAGD operations the steam injection pressure is greater than the initial reservoir pressure. As the local pore pressure is elevated by steam injection the effective stress in the reservoir is reduced. This may bring local shear failure and dilation of the reservoir material if the change in effective stress is large enough, particularly where the initial stress environment is anisotropic. In turn, dilation can result in substantial permeability enhancement. A better understanding of the interdependence between stress, deformation and permeability could help in improving the design of SAGD operations to take advantage of the effects of dilation, particularly on vertical permeability barriers such as zones of inter-bedded shale (IBS). This paper presents the results of experiments investigating changes in the permeability of IBS samples under pressure and temperature conditions similar to those that exist during SAGD operations. The IBS samples used in the tests were cut from cores that had been obtained from a relatively shallow depth (~ 160 m) at the Dover site in the Athabasca region. The samples consisted predominantly of quartz (~ 70%), with a clay content of just over 20%. Experiments were performed at both ambient temperature (~ 22°C) and elevated temperature (~ 200°C). Elastic properties (Young's modulus, Poisson's ratio) and shear strength parameters (cohesive strength, friction angle) for the IBS samples were also measured at both ambient temperature and elevated temperature. The experiments were performed in a triaxial cell, under conditions in which the pore pressure and the axial and confining (radial) stress were controlled. The measured increases in permeability caused by a reduction in effective stress were significant at low effective stress. At ambient temperature, the permeability increased by as much as a factor of 15,000 to a level in the range of 1-5 millidarcies (md). At elevated temperature, the permeability increase was even larger, by another order of magnitude, to a level in the range of 10-50 md. The triaxial compression tests indicated that the elastic properties and shear strength of the IBS samples were also sensitive to temperature. The samples became much stiffer (higher Young's modulus) and stronger at elevated temperature. The study presented here was focused on measurements of permeability change under conditions representative of SAGD in IBS samples obtained from one site, a relatively shallow one. Further tests should be undertaken to investigate permeability change in IBS samples that originate from different sites and different depths, to search for broader trends in the permeability behaviour of IBS under SAGD conditions.
机译:的贮存器,以辅助重力泄油(SAGD)过程中的蒸汽地质力学响应涉及应力,变形(应变)的变化,和渗透性。例如,在许多SAGD操作蒸汽喷射压力高于初始储层压力。由于当地孔隙压力通过蒸汽注入升高储器中的有效应力减小。这可以带来局部剪切破坏和贮存器的材料的扩张如果在有效应力的变化是足够大的,特别是在初始应力环境是各向异性的。反过来,扩张可能会导致大量通透性增强。更好地理解应力,变形和渗透性之间的相互依赖性可以帮助改善SAGD操作的设计采取的扩张的效果,特别是在垂直渗透性屏障优点如间层状页岩(IBS)的区域。本文呈现的实验研究类似于压力和温度条件下在IBS样品的渗透性变化期间SAGD操作存在的结果。在测试中使用的样品IBS从已从相对浅的深度(〜160米)在阿萨巴斯卡区域中的多佛部位获取芯被切断。将样品主要由石英(〜70%)的,具有刚刚超过20%的粘土含量。实验在两个环境温度(〜22℃)和高温(〜200℃)进行。弹性性能(杨氏模量,泊松比)和剪切强度参数(内聚强度,摩擦角)为IBS样品在两个环境温度和升高的温度下进行了测定。实验在三轴细胞进行,其中,所述孔隙压力和轴向和围(径向)应力被控制的条件下。渗透率的测量的增加所引起的有效应力的降低是在低有效应力显著。在环境温度下,透气性增加了高达15000的一个因素,以在1-5毫达西(MD)的范围内的水平。在升高的温度下,通透性增加甚至更大,由另一个量级,以便在10-50 MD的范围内的水平。的三轴压缩试验表明,IBS样品的弹性性能和剪切强度也对温度敏感。将样品变得更硬(高杨氏模量),并在升高的温度下更强。这里提出的研究集中在渗透率变化的测量IBS样品中从一个网站,一个比较浅的一个获得代表SAGD的条件下。进一步的测试应进行调查IBS样品,从不同的地点和不同深度来源于通透性的改变,来搜索IBS的SAGD条件下渗透行为更广泛的趋势。

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