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首頁» 過刊瀏覽» 2023» Vol.8» Issue(3) 303-317     DOI : 10.3969/j.issn.2096-1693.2023.03.022
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縫洞型碳酸鹽巖儲層人工裂縫擴展數值模擬
考佳瑋, 金衍, 韋世明
1 中國石油大學(北京)油氣資源與工程全國重點實驗室,北京 102249 2 中石化石油工程技術研究院有限公司,北京 102206
Numerical simulation of hydraulic fracture propagation in fracture-cavity carbonate formation
KAO Jiawei, JIN Yan, WEI Shiming
1 National Key Laboratory of Petroleum Resources and Engineering, China University of Petroleum-Beijing, Beijing 102249, China 2 SINOPEC Research Institute of Petroleum Engineering Co., Ltd, Beijing 102206, China

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摘要  縫洞碳酸鹽巖儲層中,當洞周存在天然裂縫時,人工裂縫可以通過與 洞周縫相交,提升溝通縫洞體的概率;增加人工裂縫內凈壓力,可 提升人工裂縫與縫洞體相交時的主導作用,使其偏轉程度降低,有 利于突破洞體的排斥,與主應力方向縫洞體溝通。
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關鍵詞 : 縫洞型碳酸鹽巖,儲層改造,人工裂縫擴展,數值模擬,非連續(xù)離散裂縫模型
Abstract

There are fracture-cavity systems with different shapes and sizes distributed in the fracture-cavity carbonate formation in Tahe Oil Filed, China, while they are also the main oil and gas reservoirs. Due to the uneven distribution of fracture-cavity systems in the carbonate reservoirs, hydraulic fracturing is used to communicate with the fracture-cavity systems to establish the flow channels between the fracture-cavity systems and the wellbore. So it is worth studying the propagation rule of hydraulic fracture in fracture-cavity carbonate formation, which determines the effect of reservoir reconstruction. In this paper, based on the discontinuous discrete fracture model, we built a hydraulic fracture propagation model in the fracture-cavity carbonate formation. First, we built the fluid-solid coupled stress field model for the fracture-cavity reservoir and then used the discrete fracture model to construct the hydraulic fracture. The model allowed the hydraulic fracture to expand along the initially divided grid, and the minimum strain energy density criterion was used to determine the propagation path. According to the different fracture-cavity distribution rules, we set three fracture-cavity reservoir models with different characteristics in this paper. Based on the simulation result of different fracture-cavity formation characteristics, we found that: In fracture-cavity carbonate reservoirs, the hydraulic fracture would be deflected by the local stress field disturbed around the caves. The larger the cave was, the more pronounced the disturbance was. According to the different relative positions, the  disturbance could divide into two cases, frontal repulsion and lateral attraction, which were not conducive to the communication between the hydraulic fracture and the caves. However, when there were nature fractures around the caves, the communication probability was raised as the hydraulic fracture could easily intersect these nature fractures around the cave. By increasing the hydraulic fracture’s net pressure, the leading role of the hydraulic fracture could enhance when it intersected with the fracture-cavity systems so that it was able to break through the repulsion of the cave to communicate with the fracture-cavity systems in the direction of the principal stress. When the hydraulic fracture penetrated the fracture cavity systems, the injection pressure was mainly controlled by the flow energy loss within the hydraulic fracture and the fracture-cavity systems’ fluid loss rate. Optimizing the fracturing fluid performance could reduce the penetration pressure and improve the propagation range of hydraulic fractures. The results of this paper could provide a reference for the fracturing evaluation of the fracture-cavity carbonate reservoir.

Key words: fracture-cavity carbonate formation; reservoir reformation; hydraulic fracture propagation; numerical simulation; discontinuous discrete fracture model
收稿日期: 2023-06-29     
PACS:    
基金資助:國家自然科學基金企業(yè)創(chuàng)新發(fā)展聯(lián)合基金項目(U19B6003-05-05) 和中國石油大學( 北京) 青年拔尖人才項目( ZX20230042)聯(lián)合資助
通訊作者: [email protected]
引用本文:   
考佳瑋, 金衍, 韋世明. 縫洞型碳酸鹽巖儲層人工裂縫擴展數值模擬. 石油科學通報, 2023, 03: 303-317 KAO Jiawei, JIN Yan, WEI Shiming. Numerical simulation of hydraulic fracture propagation in fracture-cavity carbonate formation. Petroleum Science Bulletin, 2023, 03: 303-317.
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