Lost-circulation control for formation-damage prevention in naturally fractured reservoir: Mathematical model and experimental study

被引:0
|
作者
Xu C. [1 ,3 ]
Kang Y. [1 ,3 ]
You L. [1 ,3 ]
You Z. [2 ,4 ]
机构
来源
SPE J | / 5卷 / 1654-1670期
基金
中国国家自然科学基金;
关键词
D O I
10.2118/182266-pa
中图分类号
学科分类号
摘要
Drill-in fluid loss is the most important cause of formation damage during the drill-in process in fractured tight reservoirs. The addition of lost-circulation material (LCM) into drill-in fluid is the most popular technique for loss control. However, traditional LCM selection is mainly performed by use of the trial-and-error method because of the lack of mathematical models. The present work aims at filling this gap by developing a new mathematical model to characterize the performance of drill-in fluid-loss control by use of LCM during the drill-in process of fractured tight reservoirs. Plugging-zone strength and fracture-propagation pressure are the two main factors affecting drill-in fluid-loss control. The developed mathematical model consists of two submodels: the plugging-zone-strength model and the fracture-propagation-pressure model. Explicit formulae are obtained for LCM selection dependent on the proposed model to control drill-in fluid loss and prevent formation damage. Effects of LCMmechanical and geometrical properties on loss-control performance are analyzed for optimal fracture plugging and propagation control. Laboratory tests on loss-control effect by use of different types and concentrations of LCMs are performed. Different combinations of acid-soluble rigid particles, fibers, and elastic particles are tested to generate a synergy effect for drill-in fluidloss control. The derived model is validated by laboratory data and successfully applied to the field case study in Sichuan Basin, China. Copyright © 2017 Society of Petroleum Engineers.
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页码:1654 / 1670
页数:16
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