全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

促缝增效体积压裂技术研究与实践
Research and Practice of Anti-Pressure Channeling Fracturing Technology for Promote Fractures and Increase Efficiency

DOI: 10.12677/ag.2024.144037, PP. 402-410

Keywords: 促缝增效,防压窜,封堵,天然裂缝,优势通道
Promote Fractures and Increase Efficiency
, Anti-pressure Channeling, Plugging, Natural Crack, Advantage Channel

Full-Text   Cite this paper   Add to My Lib

Abstract:

页岩、煤岩等非常规油气配套体积压裂2.0技术实现效益开发,因降本增效,丛式水平井平台的井间距减小到300 m左右,使得压窜问题频发,给生产带来了很多不利影响。为了在不降低压裂施工规模,不降低单井EUR的基础上,达到防治压窜目的,进行了促缝增效防压窜压裂技术研究。通过对压窜特征进行深入分析,找出了导致压窜发生最主要的原因,是压裂过程中受到断裂系统天然弱面、母子井压差驱动等牵引作用,形成了液流优势通道,单缝突进,从而窜通邻段或邻井。为此提出了促缝增效防压窜压裂技术思路,研发了具有不同性能优势的防压窜多种材料,根据不同压窜风险,设计不同的材料组合方式,形成了针对性地现场工艺实施方案。在川内页岩气现场进行了实验应用,取得了较好的防压窜效果。
The unconventional oil and gas matching volume fracturing 2.0 technology, such as shale and coal, has achieved beneficial development. Due to cost reduction and efficiency improvement, the well spacing of the cluster horizontal well platform has been reduced to about 300 meters, resulting in frequent pressure channeling problems and bringing many adverse effects to production. In order to achieve the goal of preventing and controlling pressure channeling without reducing the scale of fracturing construction and single well EUR, research on expanding and controlling fractures to prevent pressure channeling fracturing technology was carried out. Through in-depth analysis of the characteristics of pressure channeling, the main cause of pressure channeling has been identified, which is caused by the natural weak surface of the fracture system and the pressure difference between the mother and child wells during the fracturing process, forming a fluid flow advantage channel and a single fracture advancing, thereby channeling through adjacent sections or wells. To this end, the concept of expanding and controlling fractures to prevent pressure channeling and fracturing technology has been proposed, and various materials with different performance advantages have been developed to prevent pressure channeling. Based on different pressure channeling risks, different material combinations have been designed, forming targeted on-site process implementation plans. Experimental applications were conducted on shale gas sites in Sichuan, and good anti pressure channeling effects were achieved.

References

[1]  杨学锋, 黄浩勇, 王颂夏, 等. 长宁地区页岩气井压窜原因分析及对策研究[C]//中国石油学会天然气专业委员会, 第33届全国天然气学术年会(2023)论文集(03非常规气藏). 2023: 8.
[2]  李亚茜, 阴丽诗, 李芝力, 等. 威荣页岩气田压窜影响特征与管控对策研究[J]. 石化技术, 2023, 30(3): 167-169.
[3]  何乐, 袁灿明, 龚蔚. 威远页岩气井间压窜影响特征与控制措施[C]//中国石油学会天然气专业委员会, 第31届全国天然气学术年会(2019)论文集(03非常规气藏). 2019: 9.
[4]  王喆. 延川南煤层气田压窜井影响因素分析和措施[J]. 中国石油和化工标准与质量, 2022, 42(16): 9-11.
[5]  王大为, 高振南, 李俊飞, 等. 裂缝性低渗透油藏窜流规律实验研究[J]. 非常规油气, 2021, 8(4): 43-47.
[6]  金智荣, 孙悦铭, 包敏新, 等. 基于真三轴压裂物理模拟系统的暂堵压裂裂缝扩展规律试验研究[J]. 非常规油气, 2021, 8(6): 98-105.
[7]  胡浩浩, 鞠玮, 郭伟, 宁卫科, 梁艳, 于国栋. 川南海坝区块页岩气储层裂缝发育特征与预测[J]. 非常规油气, 2023, 10(1): 61-68.
[8]  彭越, 张满郎, 李明秋, 等. 基于图像识别技术的裂缝发育程度定量评价新方法——以安岳气田须二气藏为例[J]. 非常规油气, 2024, 11(1): 12-21.
[9]  刘明, 李彦婧, 潘兰, 等. 南川地区页岩储层构造裂缝特征及其定量预测[J]. 非常规油气, 2023, 10(3): 8-14.

Full-Text

comments powered by Disqus

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133

WeChat 1538708413