Formation of X-shaped hydraulic fractures in deep thick glutenite reservoirs: A case study in Bohai Bay Basin, East China
Zhi-chao Li , Lian-chong Li , Shu-ren Wang , Shou Ma , Zi-lin Zhang , Ai-shan Li , Bo Huang , Liao-yuan Zhang , Zeng-lin Wang , Quan-sheng Zhang
Journal of Central South University ›› 2021, Vol. 28 ›› Issue (9) : 2814 -2829.
Formation of X-shaped hydraulic fractures in deep thick glutenite reservoirs: A case study in Bohai Bay Basin, East China
Tight glutenite reservoirs are widely developed in Bohai Bay Basin, East China. They are mostly huge thick and rely on hydraulic fracturing treatment for commercial exploitation. To investigate the propagation behavior of hydraulic fractures in these glutenite reservoirs, the geological feature of reservoirs in Bohai Bay Basin is studied firstly, including the reservoir vertical distribution feature and the heterogeneous lithology. Then, hydraulic fracturing treatments in block Yan 222 are carried out and the fracturing processes are monitored by the microseismic system. Results show the hydraulic fractures generated in the reservoirs are mostly in X shape. The cause of X-shaped hydraulic fractures in this study is mainly ascribed to (I) the reservoir heterogeneity and (II) the stress shadow effect of two close hydraulic fractures propagating in the same orientation, which is confirmed by the following numerical simulation and related research in detail. This study can provide a reference for the research on the fracturing behavior of the deep thick glutenite reservoirs.
glutenite / hydraulic fracture / X shape / reservoir heterogeneity / gravel
| [1] |
|
| [2] |
|
| [3] |
|
| [4] |
|
| [5] |
|
| [6] |
|
| [7] |
|
| [8] |
|
| [9] |
|
| [10] |
|
| [11] |
|
| [12] |
|
| [13] |
ZHAO Zhi-hong, GUO Jian-chun, MA Shou. The experimental investigation of hydraulic fracture propagation characteristics in glutenite formation [J]. Advances in Materials Science and Engineering, 2015: 521480. DOI: https://doi.org/10.1155/2015/521480. |
| [14] |
LI Zhi-chao, LI Lian-chong, ZHANG Zi-lin, LI Ming, ZHANG Liao-yuan, HUANG Bo, TANG Chun-an. The fracturing behavior of tight glutenites subjected to hydraulic pressure [J]. Processes, 2018, 6, 96. DOI: https://doi.org/10.3390/pr6070096. |
| [15] |
|
| [16] |
|
| [17] |
|
| [18] |
|
| [19] |
|
| [20] |
|
| [21] |
|
| [22] |
|
| [23] |
|
| [24] |
|
| [25] |
|
| [26] |
LU Wei-yong, WANG Yong-long, ZHANG Xin. Numerical simulation on the basic rules of multihole linear codirectional hydraulic fracturing [J]. Geofluids, 2020(1): 6497368. DOI: https://doi.org/10.1155/2020/6497368. |
| [27] |
SONG Yao-bin, LU Wei-yong, HE Chang-chun, BAI Er-hu. Numerical simulation of the influence of natural fractures on hydraulic fracture propagation [J]. Geofluids, 2020(5): 8878548. DOI: https://doi.org/10.1155/2020/8878548. |
| [28] |
|
| [29] |
|
| [30] |
|
| [31] |
|
| [32] |
|
| [33] |
|
| [34] |
|
| [35] |
|
| [36] |
BEUGELSDIJK L J L, PATER C J D, SATO K. Experimental hydraulic fracture propagation in a multi-fractured medium [C]// SPE 59419, 2000. DOI: https://doi.org/10.2523/59419-MS. |
| [37] |
|
| [38] |
|
| [39] |
|
| [40] |
|
| [41] |
|
| [42] |
|
| [43] |
|
| [44] |
BRYANT E C, HWANG J, SHARMA M M. Arbitrary fracture propagation in heterogeneous poroelastic formations using a finite volume-based cohesive zone model [C]// SPE 173374-MS,2015. DOI: https://doi.org/10.2118/173374-ms. |
| [45] |
|
| [46] |
|
/
| 〈 |
|
〉 |