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Physical simulation of fluid flow and production performance in extra-low permeability porous media 被引量:2
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作者 You Yuan Yue Xiang’an +2 位作者 Li Mingyi Zhao Chunpeng Zhang Tao 《Petroleum Science》 SCIE CAS CSCD 2009年第4期415-420,共6页
For extra-low permeability reservoirs, with a permeability of about 0.3×10?3 μm2, fluid flow and production performance in cores were studied. A long core holder with a multi-location piezometric measurement was... For extra-low permeability reservoirs, with a permeability of about 0.3×10?3 μm2, fluid flow and production performance in cores were studied. A long core holder with a multi-location piezometric measurement was specially designed. An artificial long core, about 700 mm long and with a cross section of 45mm×45mm, was used. In the experiment, pressure distribution along the core can be measured in real time. Single phase flow in the core was investigated. Different modes of production in long cores were also simulated including natural depletion, water flooding, and advanced water flooding. Through physical simulation, flow parameters were collected and production characteristics in extra-low permeability cores were studied. From experimental results, it can be seen that fluid flow in extra-low permeability cores is different from that in high permeability cores. Transmission of pressure in extra-low permeability cores is very slow, and it needs a long time for the pressure to become stable. The distribution curve of pressure along the core is nonlinear and the production rate in extra-low permeability reservoirs decreases sharply. The development effects of different production modes in extra-low permeability cores were compared with one another. Among the production modes, advanced water flooding has much potential for effective development of extra-low permeability reservoirs. Natural depletion and conventional water flooding can also be used in early production periods. In addition, the countermeasures and some ideas especially for the potential development of extra-low permeability reservoirs are suggested. 展开更多
关键词 extra-low permeability reservoirs physical simulation fluid flow production performance
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Pore structure differences of the extra-low permeability sandstone reservoirs and the causes of low resistivity oil layers: A case study of Block Yanwumao in the middle of Ordos Basin, NW China 被引量:3
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作者 WANG Jianmin ZHANG San 《Petroleum Exploration and Development》 2018年第2期273-280,共8页
The influence of pore structure difference on rock electrical characteristics of reservoir and oil reservoir was analyzed taking Triassic Chang 6 reservoir in Block Yanwumao in the middle of Ordos Basin as an example.... The influence of pore structure difference on rock electrical characteristics of reservoir and oil reservoir was analyzed taking Triassic Chang 6 reservoir in Block Yanwumao in the middle of Ordos Basin as an example. The relationship between the pore structure difference and the low resistivity oil layer was revealed and demonstrated through core observation, lab experiments, geological research, well log interpretation and trial production etc. The results show that there were two kinds of oil layers in Chang 6 oil layer set, normal oil layer and low resistivity oil layer in the region, corresponding to two types of pore structures, pore type mono-medium and micro-fracture-pore type double-medium; the development of micro-fracture changed greatly the micro-pore structure of the reservoir, and the pore structure difference had an important influence on the rock electrical characteristics of the extra-low permeability sandstone reservoir and oil reservoir; the normal oil layers had obvious characteristics of pore-type mono-medium, and were concentrated in Chang 61, Chang 6232 and Chang 62; the low resistivity oil layers had obvious characteristics of micro-fracture-pore type double-medium, which were mainly distributed in Chang 612 and Chang 63. The mud filtrate penetrated deep into the oil layers along the micro-cracks, leading to sharp reduction of resistivity, and thus low resistivity of the oil layer; the low resistivity oil layers had better storage capacity and higher productivity than the normal oil layers. 展开更多
关键词 ORDOS Basin Chang 6 OIL layers extra-low permeability reservoir LOW RESISTIVITY OIL layer pore structure MUD invasion LOW RESISTIVITY cause
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Threshold pressure gradient of fluid flow through multi-porous media in low and extra-low permeability reservoirs 被引量:8
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作者 DOU HongEn MA ShiYing +1 位作者 ZOU CunYou YAO ShangLin 《Science China Earth Sciences》 SCIE EI CAS 2014年第11期2808-2818,共11页
After analyzing many studies of fluid flow theory of multi-porous media in low and extra-low permeability reservoirs and the numerical simulation of non-Darcy flow, we found that a negative flow rate occurs in the exi... After analyzing many studies of fluid flow theory of multi-porous media in low and extra-low permeability reservoirs and the numerical simulation of non-Darcy flow, we found that a negative flow rate occurs in the existing non-Darcy flow equation, which is unreasonable. We believe that the existing equation can only be considered as a discriminant to judging Darcy flow or non-Darcy flow, and cannot be taken as a fluid flow governing equation of multi-porous media. Our analysis of the experimental results shows that the threshold pressure gradient(TPG) of low and extra-low permeability reservoirs is excessively high, and does not conform to fluid flow through multi-porous media in the actual reservoir situation. Therefore, we present a reasonable TPG ranging from 0.006 to 0.04 MPa/m at the well depth of 1500 m and oil drainage distance of 500 m. The results of our study also indicate that the non-Darcy flow phenomenon will disappear when the TPG reaches a certain value. In addition, the TPG or non-Darcy flow in low and extra-low permeability reservoirs does not need to be considered in the productivity prediction and reservoir numerical simulation. At present, the black oil model or dual-porous media is suitable for simulating low and extra-low permeability reservoirs. 展开更多
关键词 low permeability extra-low permeability non-Darcy flow threshold pressure gradient MATRIX FRACTURE dual-porositymedia
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低渗透油田开发技术措施
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作者 郭斌斌 郭庆 郑玉兰 《化工设计通讯》 CAS 2018年第10期46-46,共1页
低渗透油田开发过程中,采取最佳的采油工程技术措施,提高油藏的渗透能力,降低油流的阻力,最大限度地开采油流,满足油田生产的产能要求。优化注采井网,重新布局油水井,保证水驱开发的效果。加强油层改造,实施精细注水,不断提高低渗透油... 低渗透油田开发过程中,采取最佳的采油工程技术措施,提高油藏的渗透能力,降低油流的阻力,最大限度地开采油流,满足油田生产的产能要求。优化注采井网,重新布局油水井,保证水驱开发的效果。加强油层改造,实施精细注水,不断提高低渗透油田开发的效率。 展开更多
关键词 低渗透油田 开发技术 措施
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MBR处理特低渗透油田采出水的研究 被引量:1
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作者 董晶颢 田禹 《中国给水排水》 CAS CSCD 北大核心 2014年第19期91-94,共4页
针对物化工艺无法满足特低渗透油田采出水回注水质要求的现状,将MBR引入到处理工艺中。对大庆外围特低渗透油田采出水破乳除油后的出水采用MBR工艺进行处理,出水含油量为2.04—4.11mg/L,SS稳定在lmg/L以下,悬浮固体颗粒粒径中... 针对物化工艺无法满足特低渗透油田采出水回注水质要求的现状,将MBR引入到处理工艺中。对大庆外围特低渗透油田采出水破乳除油后的出水采用MBR工艺进行处理,出水含油量为2.04—4.11mg/L,SS稳定在lmg/L以下,悬浮固体颗粒粒径中值平均为0.7μm,COD在25mg/L左右,且出水中未检测出硫酸盐还原菌,铁细菌和腐生菌均少于30个/mL,满足特低渗透油田采出水回注指标要求,并且MBR具有良好的抗冲击负荷能力。采用清水-破-酸-杀菌剂对污染膜进行清洗,膜通量恢复率可达到90%以上。 展开更多
关键词 膜生物反应器 特低渗透油田 采出水 含油量 悬浮固体
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