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机构地区:[1]西安石油大学石油工程学院,陕西西安710065 [2]中国石化华北油气分公司采油气工程服务中心,陕西咸阳712000
出 处:《石油钻采工艺》2015年第5期78-81,88,共5页Oil Drilling & Production Technology
基 金:陕西省科技统筹创新工程计划项目"陆相页岩气储层压裂改造工艺技术攻关"(编号:2012KTZB03-03-03-02)
摘 要:针对鄂尔多斯盆地致密油层施工排量和簇间应力干扰作用对形成复杂缝网的影响开展了相关研究。采用离散缝网模型及有限元软件进行模拟分析,选择产层相同、压裂增产方案相近的2口试验水平井,进行压裂设计参数对比、产量对比及微地震监测结果对比。研究表明,施工排量过小,压裂效果以常规双翼缝为主,大排量是保证复杂缝网形成的条件;储层存在实现复杂缝网的临界排量,大于该临界排量时,主裂缝变短,次生缝网增加,带宽变大;多簇压裂时,主裂缝不同步开裂易引起主裂缝不同步延伸,率先延伸的主裂缝会抑制周围主裂缝的延伸甚至开裂,后延伸的主裂缝周围易产生剪切诱导的次生裂缝,利于形成复杂缝网。因此,选取大于临界排量的施工排量有利于增加储层改造体积,而多簇压裂时开裂延伸的主裂缝数量有可能小于设计簇数。Relevant research has been conducted to the effect of fracturing displacement in tight oil reservoirs in Ordos Basin andthe inter-cluster stress interference on creation of complex fracture network. The discrete fracture network model and finite elementsoftware were used, and two wells were selected for comparison on fracturing design parameters, production and the results of microseismicmonitoring. The research findings show that, large displacement and large liquid volume are the basis to guarantee creation ofcomplex fracture network. There exists a critical pumping rate to create complex fracture network under certain formation conditions andfracturing parameters. In case of multi-cluster fracturing, the non-synchronous cracking of major fractures will lead to non-synchronousextension of major fractures. The firstly extended major fractures may suppress the extension or even initiation of the surrounding majorfractures, but around the lately extended major fractures may occur shear-induced secondary fractures, which is favorable for creationof complex fracture network. Therefore, in hybrid fracturing design, a fracturing displacement which is larger than the critical pumpingrate helps increase the area of stimulated reservoir and increase the oil well production, while the number of major fractures initiated andextended during multi-cluster fracturing may be less than the designed cluster quantity.
关 键 词:致密油层 混合压裂 临界排量 复杂缝网 应力干扰
分 类 号:TE357.1[石油与天然气工程—油气田开发工程]
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