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成像碳氢化合物储层岩石中的流体/固体相互作用。

Imaging fluid/solid interactions in hydrocarbon reservoir rocks.

作者信息

Uwins P J, Baker J C, Mackinnon I D

机构信息

Centre for Microscopy and Microanalysis, University of Queensland, Brisbane, Australia.

出版信息

Microsc Res Tech. 1993 Aug;25(5-6):465-73. doi: 10.1002/jemt.1070250518.

Abstract

The environmental scanning electron microscope (ESEM) has been used to image liquid hydrocarbons in sandstones and oil shales. Additionally, the fluid sensitivity of selected clay minerals in hydrocarbon reservoirs was assessed via three case studies: HCl acid sensitivity of authigenic chlorite in sandstone reservoirs, freshwater sensitivity of authigenic illite/smectite in sandstone reservoirs, and bleach sensitivity of a volcanic reservoir containing abundant secondary chlorite/corrensite. The results showed the suitability of using ESEM for imaging liquid hydrocarbon films in hydrocarbon reservoirs and the importance of simulating in situ fluid-rock interactions for hydrocarbon production programmes. In each case, results of the ESEM studies greatly enhanced prediction of reservoir/borehole reactions and, in some cases, contradicted conventional wisdom regarding the outcome of potential engineering solutions.

摘要

环境扫描电子显微镜(ESEM)已被用于对砂岩和油页岩中的液态烃进行成像。此外,通过三个案例研究评估了烃类储层中选定粘土矿物的流体敏感性:砂岩储层中自生绿泥石的盐酸敏感性、砂岩储层中自生伊利石/蒙脱石的淡水敏感性以及含有大量次生绿泥石/柯绿泥石的火山岩储层的漂白剂敏感性。结果表明,ESEM适用于对烃类储层中的液态烃膜进行成像,以及模拟原位流体-岩石相互作用对烃类生产方案的重要性。在每种情况下,ESEM研究结果都极大地增强了对储层/井眼反应的预测,并且在某些情况下,与关于潜在工程解决方案结果的传统观念相矛盾。

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