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雙月刊,2016年6月創(chuàng)刊
主管:教育部
主辦:中國石油大學(xué)(北京)
   清華大學(xué)出版社有限公司
出版:清華大學(xué)出版社有限公司
編輯:《石油科學(xué)通報》編輯部
主編:陳勉
地址:北京市海淀區(qū)學(xué)院路20號院
   902信箱中國石油大學(xué)期刊社
郵編:100083
電話:010-82377349
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E-mail:[email protected]
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Unconventional oil and gas, represented by shale oil and gas and low-permeability tight oil and gas, are important replace- ment resources in China. Due to their poor reservoir properties, effective exploitation is difficult. Currently, reservoir transformation is mainly carried out through horizontal well volume fracturing technology. However, there are still problems such as water resource waste, reservoir damage, and poor increasing production. Because of the the low viscosity, high density, and high diffusivity , supercritical/ liquid CO2 can quickly enter reservoir micropores and microfracture. CO2 fracturing can effectively reduce fracture pressure, form complex fracture networks, increase formation energy, improve backflow rate, reduce reservoir damage, and achieve single well production increase. It is suitable for efficient and green exploitation of unconventional oil and gas resources. This paper introduces the basic research progress of CO2 fracturing from the aspects of the mechanism of rock breaking and fracture making by CO2 fracturing, the mechanism of influence of CO2 on rock properties, the flow characteristics of CO2 fracturing wellbore, CO2 fracturing stimulation and geological storage, and briefly describes the development and application of several main fracturing technologies, including CO2 foam fracturing, CO2 dry fracturing, CO2 acid fracturing, and CO2 mixed fracturing. Against the background of China’s current “dual carbon” goals and increased exploration and development efforts for unconventional oil and gas resources such as shale oil and gas, CO2 fracturing technology is one of the key core technologies for building a clean, environmentally friendly, low-carbon, and efficient energy security and development technology system, with great potential for development and promotion.


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