致密砂岩储层压裂液渗吸滞留及解除水锁微观作用机制研究
批准号:
51804257
项目类别:
青年科学基金项目
资助金额:
25.0 万元
负责人:
刘雄
依托单位:
学科分类:
油气开采
结题年份:
2021
批准年份:
2018
项目状态:
已结题
项目参与者:
林加恩、任龙、任大忠、师煜涵、李鸣
中文摘要
“缝网压裂+渗吸置换+解锁返排”是致密砂岩储层有效开发的一种新尝试,压裂液不仅是携砂造缝的载体,更是渗吸置换的工具。目前,致密砂岩储层压裂液渗吸滞留微观机理及解除水锁微观作用机制尚不明确,鲜有文献对不同类型致密砂岩储层渗吸滞留主流喉道界限及量化表征进行研究,解除水锁技术优化方法及界限指标亟待进一步完善。本项目以国内致密砂岩储层为主要研究对象,物模实验为主要研究手段,在致密砂岩储层分类及孔喉结构量化表征基础上,构建压裂液渗吸滞留及解除水锁微观可视化物理模型,系统研究不同类型致密砂岩储层压裂液渗吸滞留微观渗流机理及解除水锁微观作用机制,分析不同类型致密砂岩储层压裂液渗吸滞留效应动静态特征,给出不同类型致密砂岩储层压裂液渗吸滞留主流喉道界限,探索不同配置关系对应的解水锁技术方法及界限指标。研究对致密砂岩储层评价及筛选、压裂返排制度优化设计、提高致密储层产能都具有重要意义。
英文摘要
"Fracture network fracturing + imbibition displacement + unlocking flow back" is a new attempt for effective development of tight sandstone reservoirs. Fracturing fluid is not only a carrier to carry sand and make cracks, but also a tool for imbibition and displacement of oil recovery. At present, the microscopic mechanism of imbibition and retention of fracturing fluid and the mechanism of releasing water lock in tight sandstone reservoir are still unclear, there are few literatures on the study of the boundary and quantitative characterization of the main throat in the imbibition and retention of different types of tight sandstone reservoirs, relieving water blocking technology optimization methods and limit indicators need to be further improved. This project takes the domestic tight sandstone reservoir as the main research object, and takes the rock core model experiment as the main research method. Based on the classification of tight sandstone reservoirs and the quantitative characterization of the pore throat structure, It builds the microscopic visual physical model of the imbibition and retention of fracturing fluid and the release of water blocking, analyzes the dynamic and static characteristics of imbibition and retention of fracturing fluids in different types of tight sandstone reservoirs, presents the main throat boundary of imbibition and retention of fracturing fluid in different types of tight sandstone reservoirs, and the water blocking technology method and the boundary indicator corresponding to different configuration relationships were explored. The study has important implications for the evaluation and screening of tight sandstone reservoirs, the optimization design of fracturing flow back system, and the improvement of the productivity of tight reservoirs.
“缝网压裂+渗吸置换+解锁返排”是致密砂岩储层有效开发的一种新尝试,压裂液不仅是携砂造缝的载体,更是渗吸置换的工具。目前,致密砂岩储层压裂液渗吸滞留微观机理及解除水锁微观作用机制尚不明确,鲜有文献对不同类型致密砂岩储层渗吸滞留主流喉道界限进行研究,解除水锁技术优化方法及界限指标亟待进一步完善。本项目以国内致密砂岩储层为主要研究对象,物模实验为主要研究手段,结合铸体薄片、扫描电镜、X-ray衍射、润湿性测试、相渗测试、高压压汞等基础实验,分析了致密砂岩储层矿物组成、成岩演化、流体性质以及孔喉结构等特征,给出了致密砂岩储层分类及分类标准,基于8个参数的聚类分析,将致密砂岩储层细分为三类。构建了微观可视化压裂液渗吸滞留物理模型,研究了压裂液渗吸滞留微观渗流机理;分析了不同类型致密砂岩储层压裂液渗吸滞留效应动静态特征,定量表征渗吸滞留对不同类型致密砂岩储层的伤害。分析了影响压裂液渗吸滞留的主控因素,界面张力越小、气测渗透率越大、流体粘度越低、矿化度越小,则渗吸滞留占比越大,因素影响从大到小排序为界面张力>渗透率>矿化度>粘度;给出了不同类型致密砂岩储层压裂液渗吸滞留主流喉道界限,渗吸滞留主流喉道界限范围为0.002μm-0.04μm,排液主流喉道界限范围为0.04μm-0.81μm;构建了微观可视化解除水锁微流控物理模型,研究了致密砂岩储层解除水锁微观作用机制,初步探索了不同配置关系对应的解水锁技术方法及界限指标。研究对致密砂岩储层评价及筛选、压裂返排制度优化设计、提高致密储层产能都具有重要意义。
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Visualisation and investigation of water retention in tight oil reservoir via real sandstone micro-models
通过真实砂岩微观模型对致密油储层保水情况进行可视化和研究
DOI:
10.1504/ijogct.2021.115542
发表时间:
2021
期刊:
International Journal of Oil, Gas and Coal Technology
影响因子:
--
作者:
[Liu Yafei, Shi Yuhan, Yang Haien, Wu Tianjiang, Liu Xiong, Liu Shun, Zhou Desheng]
通讯作者:
Zhou Desheng
DOI:
--
发表时间:
2021
期刊:
新疆石油地质
影响因子:
--
作者:
[苏泽中, 吴德胜, 刘亮, 朱建红, 刘雄]
通讯作者:
刘雄
DOI:
--
发表时间:
2022
期刊:
processes
影响因子:
3.5
作者:
[Xiong Liu, Le Yan, Qian gao, Yafei Liu, Hai Huang, Shun Liu]
通讯作者:
Shun Liu
On the flow regime model for fast estimation of tight sandstone gas apparent permeability in high-pressure reservoirs
高压储层致密砂岩气体视渗透率快速估算流态模型研究
DOI:
10.1080/15567036.2019.1687625
发表时间:
2019-11
期刊:
Energy Sources, Part A: Recovery, Utilization, and Environmental Effects
影响因子:
--
作者:
[Xu Jinze, Chen Zhangxin, Wu Keliu, Li Ran, Liu Xiong, Zhan Jie]
通讯作者:
Zhan Jie
On the Imbibition Model for Oil-Water Replacement of Tight Sandstone Oil Reservoirs
致密砂岩油藏油水置换渗吸模型研究
DOI:
10.1155/2021/8846132
发表时间:
2021-05
期刊:
Geofluids
影响因子:
1.7
作者:
[Liu Xiong, Zhou Desheng, Yan Le, Liu Shun, Liu Yafei]
通讯作者:
Liu Yafei
共 8 条
致密油藏压裂驱油机理及原油动用微观作用机制研究
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批准号:52374038
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项目类别:面上项目
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资助金额:50.00万元
-
批准年份:2023
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负责人:刘雄
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依托单位:
国内基金
海外基金