科学技术与工程2024,Vol.24Issue(1) :195-204.DOI:10.12404/j.issn.1671-1815.2301064

青海油田弱胶结生物泥岩气压裂裂缝起裂

Fracture Initiation of Weakly Consolidated Biological Mudstone Gas Fracturing in Qinghai Oilfield

刘永 王景鹤 赵文凯 张少斌 冯昕媛 雷丰宇 刘伟
科学技术与工程2024,Vol.24Issue(1) :195-204.DOI:10.12404/j.issn.1671-1815.2301064

青海油田弱胶结生物泥岩气压裂裂缝起裂

Fracture Initiation of Weakly Consolidated Biological Mudstone Gas Fracturing in Qinghai Oilfield

刘永 1王景鹤 2赵文凯 1张少斌 1冯昕媛 1雷丰宇 1刘伟2
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作者信息

  • 1. 青海油田钻采工艺研究院,敦煌 736200
  • 2. 中国石油大学(北京)石油工程学院,北京 102249
  • 折叠

摘要

涩北气田第四系泥岩生物成因气区块储层改造过程中压裂工艺参数优化缺乏理论基础和指导原则的问题日益突出.为探究第四系弱胶结生物泥岩裂缝起裂机理及影响规律,首先通过岩石基础实验,明确了弱胶结生物泥岩的矿物组成与力学特性,开展了弱胶结生物泥岩裂缝起裂实验研究,并通过数值模拟方法详细探究了固井质量和射孔深度对裂缝起裂的影响规律.研究结果表明,固井质量和射孔深度都是影响裂缝起裂的重要影响因素;在固井质量较差的情况下,压裂液进入第二界面堆积延伸,导致井眼发生严重扩径,无法达到裂缝起裂条件;深穿透射孔可以减小裂缝起裂尖端的塑性形变,降低裂缝的起裂压力.研究结果对弱胶结生物泥岩压裂工艺参数优化有一定的指导意义.

Abstract

In order to investigate the fracture initiation mechanism and influencing factors of weakly consolidated biological mudstone in the Quaternary system of the Qinghai oilfield,a series of experiments was currently underway.Rock-based experiments were being used to determine the mineral composition and mechanical properties of the weakly consolidated biological mudstone.Additionally,fracture initiation experiments were taking place to investigate the crack initiation law in detail,while taking into account cementing quality and perforation depth.The results show that cementing quality and perforation depth are critical factors that affect fracture initiation.Specifically,the results indicate that poor cementing quality can lead to wellbore enlargement,making it difficult to achieve the conditions necessary for fracture initiation.Conversely,deep perforation reduces the plastic deformation of the fracture initiation tip and lowers the fracture initiation pressure.These results will have significant implications for the optimization of fracturing process parameters for weakly consolidated biological mudstone in the Quaternary system of the Qinghai oilfield.

关键词

弱胶结泥岩/压裂充填/室内实验/数值模拟

Key words

weakly consolidated mudstone/frac and pack/laboratory experiment/numerical simulation

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基金项目

国家自然科学基金(52074313)

中国石油大学(北京)科研基金(ZX20200116)

出版年

2024
科学技术与工程
中国技术经济学会

科学技术与工程

CSTPCD北大核心
影响因子:0.338
ISSN:1671-1815
参考文献量23
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