首页> 外文会议>SPE Improved Oil Recovery Conference >Solvent Leakoff During Gel Placement in Fractures: Extension to Oil-Saturated Porous Media
【24h】

Solvent Leakoff During Gel Placement in Fractures: Extension to Oil-Saturated Porous Media

机译:在裂缝中凝胶放置过程中的溶剂泄漏:延伸到油饱和多孔介质

获取原文

摘要

Crosslinked polymers extrude through fractures during placement of many conformance improvement treatments, as well as during hydraulic fracturing. Dehydration of polymer gel during extrusion through fractures has often been observed, and was extensively investigated during the last decades. Injection of highly-viscous gel increases the pressure in a fracture, which promotes gel dehydration by solvent leakoff into the adjacent matrix. The present comprehension of gel behavior dictates that the rate of solvent leakoff will be controlled by the gel and fracture properties, and to a less extent impacted by the properties of an adjacent porous medium. However; several experimental results, presented in this work, indicate that solvent leakoff deviates from expected behavior when oil is present in the fracture-adjacent matrix. We investigated solvent leakoff from Cr(III)-Acetate-HPAM gels during extrusion through oil-saturated, fractured core plugs. The matrix properties were varied to evaluate the impact of pore size, permeability and heterogeneity on gel dehydration and solvent leakoff rate. A deviating leakoff behavior during gel propagation through fractured, oil-saturated core plugs was observed, associated with the formation of a capillary driven displacement front in the matrix. Magnetic Resonance Imaging (MRI) was used to image water leakoff in a fractured, oil-saturated carbonate core plug and verified the position and existence of a stable displacement front. The use of MRI also identified the presence of wormholes in the gel, during and after gel placement, which supports gel behavior similar to the previously proposed Seright filter-cake model. An explanation is offered for when the matrix impacts gel dehydration and supported by imaging. Our results show that the properties of a reservoir rock may impact gel dehydration; which, in turn, strongly impacts the depth of gel penetration into a fracture network, and the gel strength during chase floods.
机译:交联聚合物在放置许多一致性改善处理期间通过骨折挤出,以及在液压压裂期间。经常观察到通过骨折挤出过程中聚合物凝胶的脱水,并在过去几十年中进行了广泛的调查。注射高粘性的凝胶增加了骨折中的压力,该压力通过溶剂泄漏促进凝胶脱水进入相邻基质。本发明的凝胶行为的理解决定了溶剂泄漏的速率将由凝胶和裂缝性能控制,并且在邻近多孔介质的性质施加的程度上的控制。然而;在这项工作中提出的几种实验结果表明,当油状物相邻基质中存在时,溶剂泄漏偏离预期的行为。我们通过油饱和的裂缝芯塞挤出过程中研究了Cr(III) - 乙酸HPAM凝胶的溶剂泄漏。改变基质特性以评估孔径,渗透性和异质性对凝胶脱水和溶剂泄漏率的影响。观察到凝胶传播期间的偏离泄漏行为,观察到与基质中的毛细管驱动的位移前面的形成相关联的释放油饱和芯塞。磁共振成像(MRI)用于在裂缝,油饱和碳酸酯芯塞中的图像泄漏,并验证了稳定位移前部的位置和存在。 MRI的使用还确定了凝胶中的虫洞,期间和凝胶放置期间和之后的存在,其支持类似于先前提出的连续滤饼模型的凝胶行为。当矩阵冲击凝胶脱水并通过成像支持时,提供了解释。我们的研究结果表明,储层岩石的性质可能会影响凝胶脱水;反过来,这反过来强烈影响凝胶渗透到骨折网络中的深度,以及追逐洪水期间的凝胶强度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号