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首頁» 過刊瀏覽» 2020» Vol.5» Issue(4) 458-466???? DOI : 10.3969/j.issn.2096-1693.2020.04.040
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基于數(shù)字巖心與格子 Boltzmann 方法的致密砂巖自發(fā)滲吸模擬研究
汪勇,,孫業(yè)恒 ,,梁棟,,蔡建超
1 中國石化勝利油田分公司勘探開發(fā)研究院,,東營 257015 2 中國石化勝利油田分公司科技管理部,,東營 257015 3 中國石油大學(xué)油氣資源與探測國家重點(diǎn)實(shí)驗(yàn)室,,北京 102249
Spontaneous imbibition simulation of tight sandstone based on digital rock and lattice Boltzmann method
WANG Yong , SUN Yeheng , LIANG Dong , CAI Jianchao
1 Research Institute of Exploration and Development, Shengli Oilfield Company, SINOPEC, Dongying 257015, China 2 Science and Technology Management Department, Shengli Oilfield Company, SINOPEC, Dongying 257015, China 3 State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum-Beijing, Beijing 102249, China

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摘要? 自發(fā)滲吸廣泛存在于低滲—致密油藏的水力壓裂與注水開發(fā)過程中,受巖石微觀結(jié)構(gòu),、流體特性及邊界 條件等眾多因素影響,,精確刻畫自發(fā)滲吸規(guī)律是有效提高油藏采收率的關(guān)鍵基礎(chǔ)問題之一。為研究致密油藏微 觀孔隙結(jié)構(gòu)及巖石潤濕性對自發(fā)滲吸的影響機(jī)制,,本文針對勝利油田樊 154 區(qū)塊致密砂巖樣品,,應(yīng)用CT掃描技 術(shù)建立微觀孔隙結(jié)構(gòu)的數(shù)字巖心模型,利用格子Boltzmann多相流模型開展孔隙尺度自發(fā)滲吸模擬,,分析三種典 型孔隙結(jié)構(gòu)特征及不同潤濕條件影響下的滲吸前緣演化和采出程度變化規(guī)律,。結(jié)果表明,孔隙片狀發(fā)育且連通 性較好的結(jié)構(gòu)中滲吸速率快且非潤濕流體主要以“卡斷”形式捕集,,最終采出程度高,,孔隙尺寸細(xì)小且連通性 較好的結(jié)構(gòu)內(nèi)滲吸速率穩(wěn)定,無較大波動,,滲吸現(xiàn)象持續(xù)時間長,,非潤濕流體可以通過“繞流”和“卡斷”方 式捕集,最終采出程度一般,,形態(tài)特征以片狀發(fā)育但連通性較差的結(jié)構(gòu)中滲吸速率波動顯著,,非潤濕流體主要 以“卡斷”方式捕集,最終采出程度低,;不同潤濕性影響兩相流體前緣的演化規(guī)律,,潤濕角越小,潤濕流體優(yōu) 先侵入孔隙角隅,,兩相界面雜亂,、分散,主終端液面滯后明顯,,滲吸前緣后非潤濕相滯留明顯,,而潤濕角越大, 角流現(xiàn)象減少,,滲吸前緣形態(tài)規(guī)則,,但滲吸速率減慢,滲吸程度低,;滲吸前期的逆向滲吸在強(qiáng)潤濕條件下,,發(fā) 生程度高且位置多,同時后期的順向滲吸過程中,,潤濕性越強(qiáng),,滲吸作用越明顯,,滲吸速率越快,最終采出程 度越高,。研究結(jié)果有助于厘清致密油藏壓裂開發(fā)中自發(fā)滲吸作用特征及其影響因素,。
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關(guān)鍵詞 : 數(shù)字巖心,;致密砂巖;自發(fā)滲吸,;格子Boltzmann,;潤濕性
Abstract
Spontaneous imbibition occurs widely in the hydraulic fracturing and the waterflooding process of low-permeability and tight oil reservoirs and is affected by various factors such as rock microstructure, fluid characteristics and boundary conditions. Accurately characterizing spontaneous imbibition is the key to effectively improve the recovery from tight oil reservoirs. In order to study the influence of micropore structures and wettability on spontaneous imbibition in tight oil reservoirs, in this paper,    
we first establish the digital rock model based on CT scanning of tight sandstone samples from the Fan 154 block in the Shengli Oilfield. Then pore-scale spontaneous imbibition is simulated by using a lattice Boltzmann method based multiphase model. Finally, the evolution of the imbibition front and the characteristics of the recovery factor during spontaneous imbibition within three different pore structures and under different wettability conditions are analyzed. The results show that the imbibition rate is fast in a flaky pore structure with good connectivity, and the non-wetting fluid is mainly trapped by "snap-off", and the ultimate recovery degree is high. Pore structures with small pore size and good connectivity have stable spontaneous imbibition rates without big fluctuations, and the spontaneous imbibition phenomenon lasts for a long time. The non-wetting fluid is captured by "bypass" and "snap-off", and the ultimate recovery degree is generally good. The spontaneous imbibition rate of pore structures with flaky development but poor connectivity has obvious fluctuation. The non-wetting fluid is mainly trapped by "snap-off",    
and the ultimate recovery degree is low; The change of wettability affects the evolution of the imbibition front. The smaller the wetting angle, the more wetting phase preferentially invades the pore corners, the two-phase interface is messy and dispersed, the main terminal interface exhibits obvious hysteresis, and the retention of the non-wetting phase after the leading edge of the imbibition front is obvious. However, the larger the wetting angle, the less the angular flow phenomenon, the more compact the morphology of the imbibition front, but the slower the imbibition rate and the lower the degree of imbibition. In the early stage of spontaneous imbibition, the counter-current imbibition process occurs strongly in many positions under strong wetting    conditions, in the later stage of spontaneous imbibition, the stronger the wettability, the more obvious the co-current imbibition    and the faster the rate of co-current imbibition, and the higher the ultimate recovery degree. The results are helpful to clarify the    characteristics of spontaneous imbibition and its influencing factors in fracturing development of tight oil reservoirs.  


Key words: digital rock; tight sandstone; spontaneous imbibition; lattice Boltzmann method; wettability
收稿日期: 2020-12-29 ????
PACS: ? ?
基金資助:國家科技重大專項(xiàng)“渤海灣盆地濟(jì)陽坳陷致密油開發(fā)示范工程”(2017ZX05072005) 資助
通訊作者: [email protected]
引用本文: ??
WANG Yong, SUN Yeheng, LIANG Dong, CAI Jianchao. Spontaneous imbibition simulation of tight sandstone based on digital rock and lattice Boltzmann method. Petroleum Science Bulletin, 2020, 04: 458-466.
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