TY - JOUR
T1 - 页岩多尺度力学特性研究现状
AU - Han, Qiang
AU - Qu, Zhan
AU - Ye, Zhengyin
N1 - Publisher Copyright:
© 2018, Editorial Department of CJAM. All right reserved.
PY - 2018/6/15
Y1 - 2018/6/15
N2 - Mechanical behaviors and engineering properties of shale reservoir are the key factors for the safe and efficient exploitation of shale oil and gas. At present, the study of physical and mechanical characteristics of shale is based primarily on macroscopic tests, with problems such as large sample volume, time-consuming experiments, and unsatisfactory research on target formation. Therefore, research status of shale multi-scale mechanical testing is illustrated from four aspects: shale multi-scale composition, micro/nano-mechanical testing technology, measurement influencing factors and cross-scale homogenization. The component model (nano-micro-macro) is established based on multi-scale analysis, which provides the theoretical basis for multi-scale composition-mechanical coupling of shale. The parameters of micro/nano-mechanical experiment are determined. The multi-scale measurement influencing factors are evaluated. Finally, multi-scale mechanical coupling model is studied. The relationship between composition and mechanics of multi-scale is developed. This technology plays an important role in understanding the mechanical characteristic and failure mechanism of shale, providing a new method for rock mechanics test.
AB - Mechanical behaviors and engineering properties of shale reservoir are the key factors for the safe and efficient exploitation of shale oil and gas. At present, the study of physical and mechanical characteristics of shale is based primarily on macroscopic tests, with problems such as large sample volume, time-consuming experiments, and unsatisfactory research on target formation. Therefore, research status of shale multi-scale mechanical testing is illustrated from four aspects: shale multi-scale composition, micro/nano-mechanical testing technology, measurement influencing factors and cross-scale homogenization. The component model (nano-micro-macro) is established based on multi-scale analysis, which provides the theoretical basis for multi-scale composition-mechanical coupling of shale. The parameters of micro/nano-mechanical experiment are determined. The multi-scale measurement influencing factors are evaluated. Finally, multi-scale mechanical coupling model is studied. The relationship between composition and mechanics of multi-scale is developed. This technology plays an important role in understanding the mechanical characteristic and failure mechanism of shale, providing a new method for rock mechanics test.
KW - Influencing factor
KW - Micro/nano mechanical testing
KW - Multi-scale analysis
KW - Multi-scale homogenization
KW - Shale
UR - http://www.scopus.com/inward/record.url?scp=85062656778&partnerID=8YFLogxK
U2 - 10.11776/cjam.35.03.B119
DO - 10.11776/cjam.35.03.B119
M3 - 文章
AN - SCOPUS:85062656778
SN - 1000-4939
VL - 35
SP - 564
EP - 570
JO - Yingyong Lixue Xuebao/Chinese Journal of Applied Mechanics
JF - Yingyong Lixue Xuebao/Chinese Journal of Applied Mechanics
IS - 3
ER -