戴峰(四川大學建築與環境學院院長)

戴峰(四川大學建築與環境學院院長)

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戴峰,男,1978年生,安徽巢湖人,多倫多大學(加拿大)博士,教授、四川大學建築與環境學院院長。

基本介紹

  • 中文名:戴峰
  • 國籍中國
  • 出生日期:1978年
  • 畢業院校多倫多大學 
  • 學位/學歷:博士
  • 職業:教育科研工作者
  • 職務:四川大學建築與環境學院院長
  • 籍貫:安徽巢湖
人物經歷,學習經歷,工作經歷,社會任職,研究方向,學術成果,代表論文,獲獎記錄,

人物經歷

學習經歷

· 1996.09-2000.07,四川大學,土木工程與套用力學系,工學學士(Ba.E.)。
· 2000.09-2003.07,四川大學,固體力學,工學碩士(Ms.E.)。
· 2007.01-2010.11,多倫多大學(加拿大)土木工程系,哲學博士(Ph.D.)。

工作經歷

· 2003.07-2006.12,四川大學,基礎力學教研室,助教。
· 2007.01-2010.11,多倫多大學(加拿大)土木工程系,Research/Teaching Assistant。
· 2010.11-2011.10,多倫多大學(加拿大)土木工程系,Research Associate。
· 2011.11-現今, 四川大學,水利水電學院,教授,博士生導師。
本科畢業於四川大學,博士畢業於多倫多大學(加拿大)土木工程系岩土工程專業。
受邀在日本沖繩舉辦的國際岩石動力學峰會(RDS)等國內外學術大會多次做特邀報告或大會報告。

社會任職

美國土木工程師協會(ASCE)會刊 International Journal of Geomechanics共同主編(Co-Editor),國際岩石力學與工程領域頂級期刊Rock Mechanics and Rock Engineering、英國土木工程師協會(ICE)會刊ICE-Geotechnical Engineering、日本岩土工程學會(JGS)會刊Soils and Foundations、國際工程地質與環境協會(IAEG)會刊Bulletin of Engineering Geology and the Environment等7個國際著名SCI期刊的副主編或編委,《工程科學與技術》(原《四川大學學報(工程科學版)》)、《地下空間與工程學報》《套用基礎與工程科學學報》編委。
國家自然科學基金委面試答辯會議的專家組成員,國際岩石力學學會(ISRM)動力學委員會委員,加拿大自然科學和工程研究理事會(NSERC)、澳洲國家基金會(ARC)、波蘭國家科學中心(NSC)的國際評審(International Assessor ),四川省科技青年聯合會副主席,中國岩石力學與工程學會岩石動力學專業委員會副主任,中國岩石力學與工程學會青年委員會副主任,環境岩土分會青年委員會副主任,中國岩石力學與工程學會地下工程分會常務理事、工程安全與防護分會常務理事,任中國科協第268次青年科學家論壇的執行主席、第13屆國際岩石力學大會、第7、8、9、10屆亞洲岩石力學大會等多個國際學術大會的分會主席。

研究方向

地下工程、岩石動力學、損傷破壞理論、岩土工程防災減災。

學術成果

長期從事岩石動力學和工程研究,研究成果列入3項ISRM動力實驗建議方法和5項行業標準,近年來已在白鶴灘、錦屏一級、烏東德、猴子岩等多項國家重大水電工程進行了推廣套用。主持國家重點基礎研究發展規劃項目“973計畫”課題、國家自然科學基金面上項目(兩項)、四川省傑出青年基金等縱向和國家重大工程技術諮詢項目等10餘項。近年來,在岩土工程雜誌IJRMMS、RMRE等發表學術論文160多篇,87篇SCI檢索(第一或通訊作者SCI論文62篇,影響因子>2的SCI論文50餘篇),100餘篇EI檢索;國家發明專利授權或公開20項,軟體著作權8項。

代表論文

1. Y. Liu, F. Dai (corresponding author), A damage constitutive model for intermittent jointed rocks under cyclic uniaxial compression, International Journal of Rock Mechanics and Mining Sciences, 2018, 103: 289–301
2. Y. Xu, F. Dai (corresponding author), Dynamic response and failure mechanism of brittle rocks under combined compression-shear loading experiments, Rock Mechanics and Rock Engineering, 2018, DOI: 10.1007/s00603-017-1364-2
3. M.D. Wei, F. Dai (corresponding author), N.W. Xu, Y. Liu, ,T. Zhao, A novel chevron notched short rod bending method for fracture toughness testing of rocks, Engineering Fracture Mechanics, 2018, 190: 1-15.
4. A.Li, N.W. Xu, F. Dai (corresponding author), G. Gu, Z. Hu, Y. Liu, Stability analysis and failure mechanism of the steeply inclined bedded rock masses surrounding a large underground opening, Tunneling and Underground Space Technology, 2018,77: 45–58
5. P. Feng, F. Dai(corresponding author), Y. Liu, N.W. Xu, T. Zhao, Effects of Strain Rate on the Mechanical and Fracturing Behaviors of Rock-Like Specimens Containing Two Unparallel Fissures under Uniaxial Compression,Soil Dynamics and Earthquake Engineering,2018, DOI: 10.1016/j.soildyn.2018.03.026
6. F. Dai, P. Jiang, N.W. Xu, Y. Fan, B. Li, Focal mechanism determination for microseismic events and its application to the left bank slope of the Baihetan hydropower station in China, Environmental Earth Sciences, 2018, (2018) 77:268, 1-15.
7. Y. Liu, F. Dai (corresponding author), N.W. Xu, T. Zhao, Peng Feng, Experimental and numerical investigation on the tensile fatigue properties of rocks using the cyclic flattened Brazilian disc method,Soil Dynamics and Earthquake Engineering, 2018, 105C: 68-82
8. M.D. Wei, F. Dai (corresponding author), J. Zhou, N.W. Xu, T. Zhao, Y. Liu, An experimental and theoretical comparison of chevron-notched BD and SCB specimens for determining mode I fracture toughness of rocks, Fatigue & Fracture of Engineering Materials & Structures, 2018, 41(5): 1002-1018
9. Y. Liu, F. Dai (corresponding author), L. Dong, N.W. Xu, P. Feng, Experimental investigation of the fatigue mechanical properties of intermittent jointed rock models under cyclic uniaxial compression with different loading parameters, Rock Mechanics and Rock Engineering, 2017. DOI: 10.1007/s00603-017-1327-7
10. M.D. Wei, F. Dai (corresponding author), N.W. Xu, T. Zhao, Y. Liu, An Experimental and Theoretical Assessment of Semi-Circular Bend Specimens with Chevron and Straight-Through Notches for Mode I Fracture Toughness Testing of Rocks, International Journal of Rock Mechanics and Mining Sciences, 2017, 99: 28-38
11. P. Feng, F. Dai (corresponding author), Y. Liu, P. Fan, N.W. Xu, Effects of Coupled Static and Dynamic Strain Rates on the Mechanical Behaviors of Rock-Like Specimens Containing Preexisting Fissures under Uniaxial Compression, Canadian Geotechnical Journal, 2017, https://doi.org/10.1139/cgj-2017-0286
12. M.D. Wei, F. Dai (corresponding author), N.W. Xu, Y. Liu, T. Zhao, Fracture prediction of rocks under mode I and mode II loading using the modified maximum tangential strain criterion, Engineering Fracture Mechanics, 2017, 186: 21-38
13. H.B. Du,F. Dai (corresponding author), N.W. Xu, T. Zhao, Y. Xu, Numerical investigation on the dynamic progressive fracture mechanism of cracked chevron notched semi-circular bend specimens in split Hopkinson pressure bar tests, Engineering Fracture Mechanics, 2017. 184: 202–217
14. Y. Liu,F. Dai (corresponding author), N.W. Xu, T. Zhao, Cyclic flattened Brazilian disc tests for measuring the tensile fatigue properties of brittle rocks,Review of Scientific Instruments, 2017, 88, 083902; doi: 10.1063/1.4995656
15. M.D. Wei, F. Dai (corresponding author), N.W. Xu, T. Zhao, Experimental and Numerical Investigation of Cracked Chevron Notched Brazilian Disc Specimen for Fracture Toughness Testing of Rock, Fatigue & Fracture of Engineering Materials & Structures, 2018; 41(1): 197– 211
16. Y. Liu,F. Dai (corresponding author), P.X. Fan, N.W. Xu, L. Dong, Experimental investigation of the influence of joint geometric configurations on the dynamic properties of intermittent jointed rock models under cyclic uniaxial compression, Rock Mechanics and Rock Engineering, 2017, 50(6), 1453–1471
17. N.W. Xu, J. Wu,F. Dai (corresponding author), T. Li, Y. Fan, B. Li , Comprehensive Evaluation of the Left Bank Slope Stability at the Baihetan Hydropower Station in Southwest China, Bulletin of Engineering Geology and the Environment, 2017, DOI: 10.1007/s10064-017-1018-3
18. F. Dai, B. Li, N.W. Xu, Y. Zhu, Microseismic early warning of surrounding rock mass deformation in the underground powerhouse of the Houziyan hydropower station, China, Tunneling and Underground Space Technology, 2017, 62: 64–74.
19. Y. Liu, F. Dai (corresponding author), T. Zhao, N.W. Xu, Numerical investigation of the fatigue properties of intermittent jointed rock models subjected to cyclic uniaxial compression, Rock Mechanics and Rock Engineering, 2017, 50 (1): 89–112
20. F. Dai, B. Li, N.W. Xu, G. Meng, J. Wu, Y.L. Fan , Microseismic Monitoring of the Left Bank Slope at the Baihetan Hydropower Station, China, Rock Mechanics and Rock Engineering, 2017, 50 (1): 225–232
21. T. Zhao,F. Dai (corresponding author), N. W. Xu, Coupled DEM-CFD investigation of the formation of landslide dams in narrow rivers, Landslide, 2017, 14(1): 189–201.
22. N.W. Xu, F. Dai (corresponding author), B. Li, Y. Zhu, T. Zhao, D. Yang, Comprehensive evaluation of excavation-damaged zones in the deep underground caverns of the Houziyan hydropower station, Southwest China, Bulletin of Engineering Geology and the Environment, 2017, 76(1): 275–293.
23. M.D. Wei, F. Dai (corresponding author), N.W. Xu, T. Zhao, Stress intensity factors and fracture process zones of ISRM-suggested chevron notched specimens for mode I fracture toughness testing of rocks, Engineering Fracture Mechanics, 2016, 168:174–189.
24. F. Dai, Y. Xu, T. Zhao, N.W. Xu, Y. Liu, Loading-Rate-Dependent Progressive Fracturing of Cracked Chevron-Notched Brazilian Disk Specimens in Split Hopkinson Pressure Bar Tests, International Journal of Rock Mechanics and Mining Sciences, 2016, 88:49-60
25. Y. Xu, F. Dai (corresponding author), T. Zhao, N.W. Xu, Y. Liu, Fracture toughness determination of cracked chevron notched Brazilian disc rock specimen via Griffith energy criterion incorporating realistic fracture profiles, Rock Mechanics and Rock Engineering, 2016, 49(8): 3083–3093.
26. Dai F, Guo L., Xu N.W. et al. Improvement of microseismic location based on an anisotropic velocity model. Chinese Journal of Geophysics, 2016, 59(9): 3291-3301
27. M.D. Wei, F. Dai (corresponding author), N.W. Xu, T. Zhao, K.W. Xia, Experimental and numerical study on the fracture process zone and fracture toughness determination for ISRM-suggested semi-circular bend rock specimen, Engineering Fracture Mechanics, 2016, 154: 43-56.
28. F. Dai, B. Li, N.W. Xu, Y.L Fan, C.Q Zhang, Deformation Forecasting and Stability Analysis of Large-Scale Underground Powerhouse Caverns from Microseismic Monitoring, International Journal of Rock Mechanics and Mining Sciences, 2016, 86:269-281.
29. N.W. Xu, F. Dai (corresponding author), Z. Zhou, P. Jiang, T Zhao, Microseismicity and its time-frequency characteristics of the left bank slope at the Jinping first-stage hydropower station during reservoir impoundment, Environmental Earth Sciences, 2016, 75: 608, DOI: 10.1007/s12665-016-5539-z.
30. M. Wei, F. Dai (corresponding author), N.W. Xu, J.F. Liu, Y. Xu, Experimental and numerical study on the cracked chevron notched semi-circular bend method for characterizing the mode I fracture toughness of rocks. Rock Mechanics and Rock Engineering, 2016,49 (5), 1595-1609
31. Y. Xu,F. Dai (corresponding author), N.W. Xu, T. Zhao. Numerical investigation of dynamic rock fracture toughness determination using a semi-circular bend specimen in split Hopkinson pressure bar testing, Rock Mechanics and Rock Engineering, 2016, 49(3):731-745.
32. N.W. Xu, F. Dai (corresponding author), M.D. Wei, Y. Xu, T. Zhao. Numerical Observation of Three Dimensional Wing-cracking of Cracked Chevron Notched Brazilian Disc Rock Specimen subjected to Mixed Mode Loading. Rock Mechanics and Rock Engineering, 2016, 49:79–96
33. F. Dai, M.D. Wei, N.W. Xu, T. Zhao, Y. Xu, Numerical investigation of the progressive fracture mechanisms of four ISRM-suggested specimens for determining the mode I fracture toughness of rocks, Computers and Geotechnics, 2015, 69: 424-441.
34. T. Zhao, F. Dai (corresponding author), N.W. Xu, Y. Liu, Y. Xu, A composite particle model for non-spherical particles in DEM simulations, Granular Matter, 2015, 17 (6): 763-774.
35. R. Zhang, F. Dai (corresponding author), M. Gao, N. Xu, C. Zhang, Fractal Analysis of Acoustic Emission during Uniaxial and Triaxial Loading of Rock. International Journal of Rock Mechanics and Mining Sciences, 2015, 79: 241-249.
36. X.H. Liu, F. Dai (corresponding author), R. Zhang, J. Liu, Static and dynamic uniaxial compression tests on coal rock considering the bedding directivity. Environmental Earth Sciences, 2015, 73(10): 5933-5949
37. F. Dai, M.D. Wei, N.W. Xu, Y. Ma, D.S. Yang. Numerical Assessment of Progressive Rock Fracture Mechanism of Cracked Chevron Notched Brazilian Disc. Rock Mechanics and Rock Engineering. 2015, 48:463–479.
38. N.W. Xu, T.B. Li, F. Dai (corresponding author), B. Li, Y.G. Zhu, D.S. Yang. Microseismic Monitoring and Stability Evaluation for the Large Scale Underground Caverns of Houziyan Hydropower Station, Southwest China. Engineering Geology, 2015, 188: 48-67.
39. M.D. Wei, F. Dai (corresponding author), N. Xu, Y. Xu, K. Xia, Three-Dimensional Numerical Evaluation of the Progressive Fracture Mechanism of Cracked Chevron Notched Semi-circular Bend Rock Specimens. Engineering Fracture Mechanics, 2015, 134: 286-303.
40. N.W. Xu, F. Dai (corresponding author), Z.Z. Liang, Z. Zhou, C. Sha, C.A. Tang. The Dynamic Evaluation of Rock Slope Stability Considering the Effects of Microseismic Damage. Rock Mechanics and Rock Engineering. 2014, 47:621-642.
41. Dai F. and Xia K, Laboratory Measurements of the Rate Dependence of the Fracture Toughness Anisotropy of Barre Granite, International Journal of Rock Mechanics and Mining Sciences, 2013, 60: 57-65.
42. Dai F., Xia K, M.H.B. Nasseri, Micromechanical Model for the Rate Dependence of the Fracture Toughness Anisotropy of Barre Granite, International Journal of Rock Mechanics and Mining Sciences, 2013, 63: 113-121
43. Dai F., K.Xia, J. P. Zuo, R. Zhang, N.W. Xu. Static and Dynamic Flexural Strength Anisotropy of Barre Granite. Rock Mechanics and Rock Engineering, 2013, 46(6), 1589-1602.
44. Dai, F., Xia K., Zheng H. and Y. Wang, Determination of Dynamic Rock Mode-I Fracture Parameters Using Cracked Chevron Notched Semi-Circular Bend Specimen. Engineering Fracture Mechanics, 2011; 78(15): 2633-2644
45. Dai F., Xia K. and Tang L.Z. Rate Dependence of Flexural Tensile Strength of Laurentian Granite. International Journal of Rock Mechanics and Mining Science. 2010, 47(3): 469-475.
46. Dai, F., R. Chen, J. M. Iqbal and K. Xia. Dynamic Cracked Chevron Notched Brazilian Disc Method for Measuring Rock Fracture Parameters, International Journal of Rock Mechanics and Mining Sciences, 2010; 47(4): 606-613.
47. Dai F., Huang S., Xia K. and Tan Z. Some Fundamental Issues in Dynamic Compression and Tension Tests of Rocks Using Split Hopkinson Pressure Bar. Rock Mechanics and Rock Engineering, 2010; 43(6): 657-666.
48. Dai F. and Xia K, Loading Rate Dependence of Tensile Strength Anisotropy of Barre Granite,Pure and Applied Geophysics, 2010, 167(11), 1419-1432.
49. Dai F. Chen R. and Xia K. A Semi-Circular Bend Technique for Determining Dynamic Fracture Toughness. Experimental Mechanics, 2010; 50(6), 783-791.
50. Dai F., Xia K, Luo SN. Semicircular bend testing with split Hopkinson pressure bar for measuring dynamic tensile strength of brittle solids. Review of Scientific Instruments, 2008, 79(12): 1-6

獲獎記錄

獲加拿大岩土工程學會論文競賽獎(2009)、Grosso Group Fellowship Award(2010)、國家優秀自費留學生(2010)、四川省“百人計畫”(2012)、教育部新世紀優秀人才(2013)、霍英東高等院校青年教師獎(2013)、四川省傑出青年學術與技術帶頭人資助計畫(2014)、四川省青年科技獎(2015)、中國岩石力學與工程學會自然科學特等獎(2016)、汪聞韶青年優秀論文獎(2017)、中國大壩工程學會科技進步特等獎(2017)、四川省學術與技術帶頭人(2018)、四川青年五四獎章(2018)、科技部中青年科技創新領軍人才(2018)、教育部科技進步一等獎(2018)、愛思唯爾(Elsevier)中國高被引學者(2018)、國家“萬人計畫”科技創新領軍人才(2019)等學術獎項或榮譽。
2023年7月17日,榮獲第5屆“科學探索獎”。

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