Maximizing Production from Shale Reservoir by Using Micro-Sized Proppants

H. Lau, A. Radhamani, S. Ramakrishna
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引用次数: 11

Abstract

This paper describes the interaction between hydraulic fractures and the multi-porosity system of matrix porosity and natural fracture porosity in shale reservoirs. During the process of hydraulic fracturing, a complex fracture network consisting of primary and secondary hydraulic fractures as well as natural fractures is created. It is postulated that only shale porosities connected with this network will contribute to hydrocarbon production. Furthermore, we propose a way to maximise well productivity by injecting micro-sized proppants that are less than 150 μm (100 mesh) into the natural fractures and secondary hydraulic fractures to prevent them from closing and thereby increasing the stimulated reservoir volume. The size of the micro-sized proppant should be designed to be between one-seventh and one-third the aperture size of the natural fractures. In addition, various materials for micro-sized proppants are proposed and discussed. Of these, hollow glass microsphere shows more promise because of its light density and track record of being used as an additive material in the oilfield. Although limited laboratory experiments and field tests have shown encouraging results of using micro-sized proppants to enhance the productivity of Barnett shale, more research is warranted to optimize the use of these micro-sized proppants in production enhancement in various shale formations.
通过使用微尺寸支撑剂实现页岩储层产量最大化
本文描述了页岩储层中水力裂缝与基质孔隙度和天然裂缝孔隙度多孔隙系统的相互作用。在水力压裂过程中,形成了由水力裂缝、次生裂缝和天然裂缝组成的复杂裂缝网络。假设只有与该网络相连的页岩孔隙才有助于油气生产。此外,我们提出了一种方法,通过向天然裂缝和次生水力裂缝注入小于150 μm(100目)的微尺寸支撑剂来最大限度地提高油井产能,以防止它们关闭,从而增加增产油藏的体积。微尺寸支撑剂的尺寸应设计在天然裂缝孔径尺寸的七分之一到三分之一之间。此外,还提出并讨论了各种微尺寸支撑剂的材料。其中,中空玻璃微球由于其轻密度和在油田中用作添加剂的记录而显示出更大的前景。虽然有限的实验室实验和现场测试已经显示了使用微尺寸支撑剂提高Barnett页岩产能的令人鼓舞的结果,但需要进行更多的研究来优化这些微尺寸支撑剂在各种页岩地层中的增产效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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