Stress Analysis of the Integrity of Casing-Cement Ring-Structural Consolidation Body by Volume Fracturing

Y. Ouyang, Yun-kai Gao, Xianwen Wang, Zhifeng Duan
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引用次数: 3

Abstract

For unconventional oil and gas reservoirs, the main body at home and abroad adopts segmented fracturing technology for cemented well completion bridge plugs, and the application ratio accounts for more than 85%. In order to improve the development effect of the tight oil and gas reservoirs in the Ordos Basin and increase the output of single wells, the horizontal wells in the Sulige tight gas reservoir adopt casing cementing well completion + bridge plug fracturing. The integrity between the casing-cement ring and the formation consolidation body is the precondition for ensuring the effectiveness of the segmented fracturing closure and the transformation effect. In this paper, the wellbore is subjected to alternating pressure when the volume of horizontal wells is compressed. By analyzing the force of the casing-cement-soil consolidated body and the temperature and casing internal pressure, the calculated relationship between the force of the consolidated body and the displacement of the first and second cemented surfaces was obtained. It provides an important reference for guiding the on-site construction design and follow-up research.
套管-水泥环-结构固结体体积压裂完整性应力分析
对于非常规油气藏,国内外主体采用分段压裂技术进行固井完井桥塞,应用比例达85%以上。为提高鄂尔多斯盆地致密油气藏开发效果,提高单井产量,苏里格致密气藏水平井采用套管固井完井+桥塞压裂。套管-水泥环与地层固结体之间的完整性是保证分段压裂封堵效果和改造效果的前提。在本文中,水平井体积被压缩时,井筒承受交变压力。通过分析套管-水泥土固结体的受力与温度、套管内压的关系,得到了套管-水泥土固结体受力与第一、第二胶结面位移的计算关系。为指导现场施工设计和后续研究提供了重要参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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