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致密储层缝内暂堵转向压裂工艺技术
引用本文:许建国,刘光玉,王艳玲. 致密储层缝内暂堵转向压裂工艺技术[J]. 石油钻采工艺, 2021, 43(3): 374-378. DOI: 10.13639/j.odpt.2021.03.015
作者姓名:许建国  刘光玉  王艳玲
作者单位:中国石油吉林油田公司油气工程研究院
基金项目:国家科技重大专项“致密油储层高效体积改造技术”(编号:2016ZX05046-004);中国石油天然气股份公司重大科技专项“松辽盆地南部致密油气成藏及动用技术研究”(编号:2017B-4905)
摘    要:随着油气田勘探开发的不断深入,非常规致密油气藏已经成为油田增储上产的主要研究对象,该类型储层渗透率低(<0.1×10?3?μm2)、两向应力差值大(>10?MPa),单纯依靠大排量、大液量改造以形成缝网的难度较大,需通过缝内暂堵转向压裂技术进一步增大净压力,提高裂缝复杂程度.暂堵剂类型的优选和用量设计是决定复杂缝网形成...

关 键 词:致密储层  缝网压裂  暂堵转向  暂堵剂  多裂缝  净压力

Intrafracture temporary plugging and diversion fracturing technology suitable for tight reservoirs
Affiliation:Oil and Gas Engineering Research Institute, PetroChina Jilin Oilfield Company, Songyuan 138000, Jilin, China
Abstract:As oil and gas exploration and development advances continuously, unconventional tight oil and gas reservoirs have already become the main objects for oilfields to realize reserve and production increase. This type of reservoir is characterized by low permeability (<0.1×10?3 μm2) and large bidirectional stress difference (> 10 MPa), so it is difficult to induce fracture network only based on the stimulation of large displacement and liquid rate. To this end, intrafracture temporary plugging and diversion fracturing technology is needed to increase the net pressure further and improve the fracture complexity. The type selection and dosage design of temporary plugging agent is the determinative key to the formation of complex fracture network and consequently influences the stimulation effect of fracturing wells. The water based temperature control dissolution type temporary plugging agent was selected, and the plugging thickness of temporary plugging agent, the height of dynamic fractures and the quantity and thickness of micro fractures were taken into consideration comprehensively to form the method for the dosage design of temporary plugging agent. It has been totally applied in 37 layers of 11 wells, among which, the pressure of 28 layers under the same displacement is increased by 0.5-7.0 MPa after the injection of temporary plugging agent and the efficiency is up to 75.7%. Thus, the goal of intrafracture temporary plugging and diversion fracturing network is reached. The research results provide theoretical basis for the later tight reservoir stimulation, so as to achieve the effective production of tight oil and gas reservoirs.
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