Transient Pressure Behavior of Volume Fracturing Horizontal Wells in Fractured Stress-Sensitive Tight Oil Reservoirs

被引:2
作者
Li, Zhong [1 ]
Yan, Xinjiang [1 ]
Wen, Min [1 ]
Bi, Gang [2 ]
Ma, Nan [1 ]
Ren, Zongxiao [2 ]
机构
[1] CNOOC Res Inst Co Ltd, Beijing 100020, Peoples R China
[2] Xian Shiyou Univ, Coll Petr Engn, Xian 710065, Peoples R China
基金
中国国家自然科学基金;
关键词
tight oil reservoir; seepage model; stress sensitive; volume fracturing horizontal well; interfracture interference; MODEL; PERMEABILITY; NETWORKS;
D O I
10.3390/pr10050953
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Tight oil reservoirs tend to contain more natural fractures, and the presence of natural fractures leads to a greater stress sensitivity in tight oil reservoirs. It is a very challenging task to model the seepage in the volume fracturing horizontal wells considering the stress-sensitive effects. Based on the Laplace transform, Perturbation transform and Stefest numerical inversion, this paper establishes a horizontal well seepage model for volume fracturing in fractured stress-sensitive tight oil reservoirs. This model allows us to analyze and study the effect of stress sensitivity, fracture interference, dual media and complex fracture network on seepage flow in tight oil reservoirs. We apply the model to delineate the seepage stages of volume fracturing horizontal wells, it can be divided into seven seepage stages I wellbore storage flow, II surface flow stage, III transition flow, IV natural fracture system proposed radial flow, V interporosity flow, VI system proposed radial flow and VII stress-sensitive flow stage. Wellbore storage coefficient mainly affects the flow in the wellbore storage stage. The larger the wellbore storage coefficient is, the longer the duration of wellbore storage flow will be. The higher the skin coefficient is, the greater the pressure drop is. The storage capacity ratio has a greater influence on the flow before the occurrence of channeling flow, and the "groove" depth on the derivative curve of dimensionless pressure drop becomes shallower with the increase in storage capacity ratio. The higher the channeling coefficient is, the earlier the channeling occurs from the matrix system to the natural fracture system and the more leftwing the "groove" position is.
引用
收藏
页数:11
相关论文
共 35 条
[1]  
Al-Alwani M.A., 2019, P ASIA PACIFIC UNCON, P995
[2]  
[Anonymous], P 5 SPE MIDDL E OIL
[3]   A Core Logging, Machine Learning and Geostatistical Modeling Interactive Approach for Subsurface Imaging of Lenticular Geobodies in a Clastic Depositional System, SE Pakistan [J].
Ashraf, Umar ;
Zhang, Hucai ;
Anees, Aqsa ;
Mangi, Hassan Nasir ;
Ali, Muhammad ;
Zhang, Xiaonan ;
Imraz, Muhammad ;
Abbasi, Saiq Shakeel ;
Abbas, Ayesha ;
Ullah, Zaheen ;
Ullah, Jar ;
Tan, Shucheng .
NATURAL RESOURCES RESEARCH, 2021, 30 (03) :2807-2830
[4]   Controls on Reservoir Heterogeneity of a Shallow-Marine Reservoir in Sawan Gas Field, SE Pakistan: Implications for Reservoir Quality Prediction Using Acoustic Impedance Inversion [J].
Ashraf, Umar ;
Zhang, Hucai ;
Anees, Aqsa ;
Ali, Muhammad ;
Zhang, Xiaonan ;
Shakeel Abbasi, Saiq ;
Nasir Mangi, Hassan .
WATER, 2020, 12 (11) :1-23
[5]  
Chen Z., 2020, P SPEAAPGSEG UNCONVE
[6]   A Semianalytical Approach for Obtaining Type Curves of Multiple-Fractured Horizontal Wells With Secondary-Fracture Networks [J].
Chen, Zhiming ;
Liao, Xinwei ;
Zhao, Xiaoliang ;
Lv, Sanbo ;
Zhu, Langtao .
SPE JOURNAL, 2016, 21 (02) :538-549
[7]   Pressure transient analysis in fractured reservoirs with poorly connected fractures [J].
Chu, Hongyang ;
Liao, Xinwei ;
Chen, Zhiming ;
Zhao, Xiaoliang ;
Liu, Wenyuan ;
Zou, Jiandong .
JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING, 2019, 67 :30-42
[8]   TRANSIENT PRESSURE BEHAVIOR FOR A WELL WITH A FINITE-CONDUCTIVITY VERTICAL FRACTURE [J].
CINCO, H ;
SAMANIEGO, F ;
DOMINGUEZ, N .
SOCIETY OF PETROLEUM ENGINEERS JOURNAL, 1978, 18 (04) :253-264
[9]   Application of deep learning on well-test interpretation for identifying pressure behavior and characterizing reservoirs [J].
Dong, Peng ;
Chen, Zhiming ;
Liao, Xinwei ;
Yu, Wei .
JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2022, 208
[10]  
FATT I, 1952, T AM I MIN MET ENG, V195, P329