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首頁(yè)» 過(guò)刊瀏覽» 2020» Vol.5» Issue(3) 376-391???? DOI : 10.3969/j.issn.2096-1693.2020.03.032
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基于微流控模型的孔隙尺度剩余油流動(dòng)狀態(tài)變化規(guī)律研究
王川,,姜漢橋,,馬夢(mèng)琪,,徐飛 ,,于馥瑋,趙玉云,,李俊鍵
1 中國(guó)石油大學(xué)(北京)油氣資源與探測(cè)國(guó)家重點(diǎn)實(shí)驗(yàn)室,,北京 102249 2 中石化國(guó)際石油勘探開(kāi)發(fā)有限公司,北京 100083
Study of the variation of pore-scale residual oil flow based on a microfluidic model
WANG Chuan, JIANG Hanqiao , XU Fei , YU Fuwei, ZHAO Yuyun, LI Junjian
1 State Key Laboratory of Petroleum Resources and Engineering, China University of Petroleum-Beijing, Beijing 102249, China 2 Sinopec International Exploration and Production Corporation, Beijing 100083, China

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摘要? 水驅(qū)是我國(guó)常規(guī)砂巖油藏最主要的開(kāi)發(fā)方式,,研究微觀剩余油流動(dòng)動(dòng)態(tài)對(duì)于指導(dǎo)處于高含水階段的水驅(qū) 油藏開(kāi)發(fā)具有重要意義,。本文在微觀玻璃模型驅(qū)替實(shí)驗(yàn)的基礎(chǔ)上,建立了微觀剩余油特征參數(shù)定量表征方法,, 以“微觀剩余油占據(jù)的孔喉數(shù)”,、“形狀因子”、“油—巖石接觸比”和“歐拉數(shù)”為特征參數(shù),,對(duì)微觀剩余油進(jìn) 行了分類(lèi)識(shí)別和定量統(tǒng)計(jì),,進(jìn)而研究了水驅(qū)過(guò)程中微觀剩余油的賦存狀態(tài)和動(dòng)態(tài)演化特征。在此基礎(chǔ)上,,進(jìn)一 步地以不同類(lèi)型微觀剩余油所占據(jù)孔隙的“平均孔隙半徑”,、“平均孔喉比”和“平均配位數(shù)”為特征參數(shù),研 究了微觀剩余油的流動(dòng)路徑特征,。研究結(jié)果表明:孔隙半徑是決定簇狀剩余油賦存的主控因素,,孔喉比是形成 多孔狀剩余油的主控因素,而滴狀微觀剩余油分布的孔隙半徑,、孔喉比和配位數(shù)都更加寬泛,,柱狀和膜狀剩余 油分布的孔喉比和配位數(shù)也均較為寬泛;在非均質(zhì)模型中,,非均質(zhì)性對(duì)簇狀和多孔狀微觀剩余油流動(dòng)動(dòng)態(tài)起著 主導(dǎo)作用,,微觀剩余油主要存在于孔喉半徑較小的低滲區(qū)域,孔喉比和配位數(shù)的影響不大,,而其他三類(lèi)非連續(xù) 相剩余油均在水驅(qū)過(guò)程中尤其是高含水階段形成,,并且多存在與水驅(qū)已波及區(qū)域,非均質(zhì)性對(duì)其微觀剩余油的 流動(dòng)動(dòng)態(tài)影響較小。
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關(guān)鍵詞 : 微流控模型;微觀剩余油,;賦存狀態(tài),;流動(dòng)路徑變化特征
Abstract

Water flooding is the most important development mode of conventional sandstone reservoirs in China. Studying the flow dynamics of the microscopic residual oil is of great significance to guide the development of water flooding reservoirs in the high water cut stage. In this paper, on the basis of flooding experiments conducted on microscopic glass models, a method that uses the parameters including the number of pores occupied by the microscopic residual oil, the Euler number, the contact ratio of oil and rock and shape factor was established to quantify the microscopic remaining oil. The remaining oil was classified into 5 five kinds based on its occupancy characteristics: cluster, multi-porous, columnar, droplet and membranous. Then the identifi cation and quantitative statistics of the microscopic residual oil were carried out, and the occupancy characteristics and dynamic variation characteristics of micro residual oil in the process of water flooding were studied. Moreover, the average pore radius, the average pore-throat ratio and the average coordination number of the pores occupied by the residual oil was used to analyze the flow dynamics of the residual oil. The results show that the pore radius is the main controlling factor of the occurrence of the clustered residual oil, and the pore-throat ratio is the main controlling factor for forming porous residual oil, while the poreradius, the pore-throat ratio and the coordination number of the droplet residual oil distribution are widely distributed, and the pore-throat ratio and the coordination number of the columnar and membranous residual oil distribution are also widespread. In the heterogeneous model, inhomogeneity plays a leading role in the flow of the cluster and the multi-porous micro-residual oil, and the micro-residual oil mainly exists in low-permeability areas with small pore throat radius, and the effect of pore-throat ratio and coordination number is not large, while the remaining three types of non-continuous-phase residual oil are formed in the water-drive process, especially the high-water-cut stage, and they are mostly in the area where water flooding has spread, and heterogeneity has little effect on the flow dynamics of this microscopic residual oil. The methods proposed by this paper may also be useful for other researchers in the EOR area.     


Key words: microfluidic model; micro remaining oil; occurrence state; oil field development; characteristics of flow path variation
收稿日期: 2020-09-29 ????
PACS: ? ?
基金資助:中國(guó)石油大學(xué)( 北京) 優(yōu)秀青年學(xué)者科研基金“致密油儲(chǔ)層提高排驅(qū)效率微觀機(jī)制研究(No. 2462019QNXZ04)”資助
通訊作者: [email protected]
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WANG Chuan, JIANG Hanqiao, XU Fei1, YU Fuwei, ZHAO Yuyun, LI Junjian. Study of the variation of pore-scale residual oil flow based on a microfluidic model. Petroleum Science Bulletin, 2020, 03: 376-391
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