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Title: Unified Fracturing Design for Water Injection Well Under Steady State Flow Regime Author: Luo, Dan; Yang, Zhaozhong; et al. DOI: 10.4028/www.scientific.net/AMM.295-298.3175 |
版主 (文學(xué)泰斗)
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Unified Fracturing Design for Water Injection Well Under Steady State Flow Regime 作者:Luo, D (Luo, Dan)[ 1 ] ; Yang, ZZ (Yang, Zhaozhong)[ 1 ] ; Li, XG (Li, Xiaogang)[ 1 ] ; Su, Z (Su, Zhou)[ 1 ] 編者:Tang, X; Zhong, W; Zhuang, D; Li, C; Liu, Y PROGRESS IN ENVIRONMENTAL PROTECTION AND PROCESSING OF RESOURCE, PTS 1-4 叢書: Applied Mechanics and Materials 卷: 295-298 頁: 3175-3182 DOI: 10.4028/www.scientific.net/AMM.295-298.3175 出版年: 2013 會議名稱 會議: International Conference on Sustainable Energy and Environmental Engineering (ICSEEE 2012) 會議地點: Guangzhou, PEOPLES R CHINA 會議日期: DEC 29-30, 2012 會議贊助商:Guangdong Univ Business Studies 摘要 Unified Fracture Design for fracturing optimization is a simple and reliable way to push the limit of the injection ability, reported frequently in recent years. However, most studies focus on fracture design under pseudo-steady state flow regime. The analysis of the different pressure systems between water injection well and oil production well tells us that the steady flow regime in the formation takes up most life span of water injection wells, associated with the field experience. To maximize injection capability for fractured vertical water wells under this regime, a physical optimization method is developed based on the concept of proppant number. Meanwhile, two new type curves without consideration of formation damage are obtained for quantifying the correlation between dimensionless injectivity and dimensionless conductivity. Then, calibrated design procedures accounting for gel damage and non-darcy effect, are also proposed. Finally, sensitivity studies are addressed to clarify the effect of several variables on the optimum fracture geometry. 關(guān)鍵詞 作者關(guān)鍵詞:fracturing design; water injectivity; proppant number; steady state flow; non-darcy; gel damage 作者信息 通訊作者地址: Luo, D (通訊作者) Southwest Petr Univ, State Key Lab Oil & Gas |
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