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Special-Term Associate Professor
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Details of the Faculty or Staff
Name  
HUANG Xiaolin
Title  
  Special-term Associate Professor
Highest Education  
  Ph.D.
Subject Categories  
  Geomechanics and Geoengineering
Phone  
  010-82998726
Zip Code  
  100029
Fax  
  010-62010846
Email  
  huangxiaolin@mail.iggcas.ac.cn
Office  
  No.19 Beitucheng West Road, Chaoyang District, Beijing, 100029, China

Education and Appointments:

HUANG Xiaolin
Associate Professor of Institute of Geology and Geophysics, Chinese Academy of Sciences

Education Experience

  • 2010.9-2016.7, Institute of Geology and Geophysics, Chinese Academy of Sciences, M.S.& PhD
  • 2006.9-2010.7, China University of Geosciences (Wuhan), B.S.

Professional experience

  • 2019.1-present, Associate professor, Institute of Geology and Geophysics, Chinese Academy of Sciences
  • 2016.7-2019.1, Post doctor, Institute of Geology and Geophysics, Chinese Academy of Sciences
  • 2014.10-2015.10, Visiting scholar, University of Toronto, Canada

Research Interests:
  • Progressive failure of the rock mass under dynamic loads
  • Stress wave propagation in the jointed rock mass
  • DEM/FDEM modelling of the seismic response of the rock mass
  • Laboratory testing for the dynamic mechanical behavior of the rock mass
Public Services:

Honors:
  • Excellent Doctoral Dissertation of Chinese Academy of Sciences (2017)
  • President Award of the Chinese Academy of Sciences (2016)
  • National Scholarship for Doctoral Student (2015)
  • Merit Student Award, UCAS (2013)

Supported Projects:
  1. 2019.1-2021.12, National Natural Science Foundation of China (41807273)

  2. 2018.1-2020.12, Science Foundation of Key Laboratory of Shale Gas and Geoengineering, Institute of Geology and Geophysics, Chinese Academy of Sciences (KLSG201702)

  3. 2016.7- 2018.12, Postdoctoral Science Foundation of China (2016M600129)


Selected Publication:
  1. Huang, X., Qi, S., Yao, W., and Xia, K. (2019). Effect of filling humidity on the propagation of high-amplitude stress waves through an artificial joint. Geotechnical Testing Journal, 42(1): 30-42.
  2. Huang, X., Qi, S., Xia, K., and Shi, X. (2018). Particle crushing of a filled fracture during compression and its effect on stress wave propagation. Journal of Geophysical Research: Solid Earth, 123: 5559-5587.
  3. Huang, X., Zhao., Q., Qi., S., Xia., K., Grasselli, G., and Chen, X. (2017). Numerical simulation on seismic response of the filled joint under high amplitude stress waves using FDEM. Materials, 10, 13.
  4. Huang, X., Qi., S., Xia., K., Zheng., H., and Zheng., B. (2016). Propagation of high amplitude stress waves through a filled artificial joint: An experimental study. Journal of Applied Geophysics, 130: 1-7.
  5. Huang, X., Qi, S., Williams, A., Zou, Y., and Zheng B. (2015). Numerical simulation of stress wave propagating through filled joints by particle model. International Journal of Solids and Structures, 69(70): 23-33.
  6. Huang, X., Qi, S., Liu, Y., and Zhan, Z. (2015). Stress wave propagation through viscous-elastic jointed rock masses using propagator matrix method (PMM). Geophysical Journal International, 200(1): 452-470.
  7. Huang, X., Qi, S., Guo, S., and Dong, W. (2014). Experimental study of ultrasonic waves propagating through a rock mass with a single joint and multiple parallel joints. Rock Mechanics and Rock Engineering, 47: 549-559.
  8. Huang, X., Qi, S., and Xia, K. (2016). Laboratory observation on the seismic response of the filled joint under high amplitude stress waves. The Second International Conference on Rock Dynamics and Applications (RocDyn-2).
  9. Zhan, Z., Qi, S., Huang, X., Guo, S., and Zou, Y. (2015). Discussion of Some Fundamental Issues of FLAC3D in Research of Dynamic Response of Rock Slope. In 13th ISRM International Congress of Rock Mechanics. International Society for Rock Mechanics.
  10. Zheng, B., Qi, S., Guo, S., and Huang, X. (2015). The Influence of Shear Deformation Velocity on the Strength Characteristics of Rock Joints. In 13th ISRM International Congress of Rock Mechanics. International Society for Rock Mechanics.
 
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