崔振東,男,1978年生,山東莒南人,博士(后),教授,研究生導師,巖土工程研究所所長。2008年博士畢業于同濟大學土木工程學院地下建筑與工程系,香港科技大學土木與環境工程系博士后,美國科羅拉多大學博爾德分校訪問學者。2015年12月入選中國礦業大學第八批優秀創新團隊(城市地鐵隧道及地下工程)首席專家、2014年和2107年兩次入選中國礦業大學青年學術帶頭人,2012年12月入選江蘇省高校“青藍工程”優秀青年骨干教師,2016年入選江蘇省333人才工程。主要從事城市地鐵隧道及地下工程、軟土地基變形、土動力學以及人工凍土等方面研究工作,在《Engineering Geology》、《International Journal of Rock Mechanics and Mining Sciences》、《Natural Hazards》、《Computers and Geotechniques》等雜志發表科研論文50余篇,其中已被SCI收錄37篇,EI收錄28篇,ISTP收錄4篇;授權國家發明專利4項;主編住建部十三五規劃教材1部《地下結構設計》;在Springer Press出版英文專著1部,出版英文教材1部。擔任Arabian Journal of Geosciences(SCI收錄)副主編、國際土力學與巖土工程學會會員、國際工程地質與環境學會會員。主持和完成國家重點研發計劃課題子課題、國家自然科學基金、江蘇省自然科學基金、中國礦業大學學科前沿研究專項、創新團隊基金、中國博士后科學基金特別資助、中國博士后科學基金項目、中央高校創新人才基金項目、凍土工程國家重點實驗室開放基金、深部巖土力學國家重點實驗室開放基金、中國礦業大學青年基金;參與完成國家自然科學基金項目2項。榮獲全國優秀博士學位論文提名論文、教育部自然科學二等獎、上海市優秀博士學位論文、同濟大學優秀博士學位論文、上海市科技進步二等獎、中國礦業大學優秀共產黨員、中國礦業大學十佳青年教職工、江蘇省優秀本科畢業一等獎指導教師(2015、2018)、江蘇省優秀本科畢業論文二等獎指導教師(2012、2013)、2018年和2015年中國礦業大學優秀碩士畢業論文指導教師、中國礦業大學優秀本科畢業設計(論文)指導教師、上海市優秀畢業生、上海市優秀學生、地震工程與風險管理獎學金、韓國龍獎學金一等獎、中國海外獎學金一等獎和同濟大學優秀學生等獎勵及榮譽稱號。聯系方式:cuizhendong@cumt.edu.cn
Engineering Geology,Cold Regions Science and Technology,Natural Hazards,Environmental Earth Sciences, Neural Computing & Applications,Soils and Foundations,Journal of Mountain Science等期刊審稿人
[1] Cui ZD*, Jia YJ (2018) Physical Model Test of Layered Soil Subsidence Considering Dual Effects of Building Load and Groundwater Withdrawal. Arabian Journal for Science and Engineering (SCI), 43(4): 1721-1734.
[2] Cui ZD*, Yuan Q, Yang JQ (2018) Laboratory model tests about the sand embankment supported by piles with a cap beam. Geomechanics and Geoengineering an international Journal, 13(1): 64-76.
[3] Zhang ZL, Cui ZD* (2018) Effect of freezing-thawing on dynamic characteristics of the silty clay under K0-consolidated condition. Cold Regions Science and Technology (SCI), 46: 32-42.
[4] Zhang ZL, Cui ZD* (2018) Effects of freezing-thawing and cyclic loading on pore size distribution of silty clay by mercury intrusion porosimetry. Cold Regions Science and Technology, 145: 185-196.
[5] Yuan Y, Cui ZD*, Tan J (2017) Numerical Simulation of Longitudinal Settlement of Shield Tunnel in the Coastal City, Shanghai. Marine Georesources & Geotechnology (SCI), 35(3): 365-370.
[6] Li Z, Cui ZD* (2017) Axisymmetric consolidation of saturated multi-layered soils with anisotropic permeability due to well pumping. Computers and Geotechnics (SCI), 92: 229-239.
[7] Zhang CL, Cui ZD* (2017) Numerical simulation of dynamic response around shield tunnel in the soft soil area. Marine Georesources & Geotechnology (SCI), 35(7): 1018-1027.
[8] Zhang ZL, Cui ZD* (2017) Analysis of microscopic pore structures of the silty clay before and after freezing–thawing under the subway vibration loading. Environmental Earth Sciences (SCI), 76: 528.
[9] Cui ZD*, Jia YJ, Yuan L (2016) Distribution law of soil deformation caused by decompression of confined water. Environmental Earth Sciences (SCI), 75(18): 1281.
[10] Cui ZD*, Li Z, Jia YJ (2016) Model test study on the subsidence of high-rise building group due to the variation of groundwater level. Natural Hazards (SCI), 84(1): 35-53.
[11] Cui ZD*, Zhao LZ, Yuan L (2016) Microstructures of consolidated Kaolin clay at different depths in centrifuge model tests. Carbonates and Evaporites (SCI), 31(1):47-60.
[12] Tan J, Cui ZD*, Yuan Y (2016) Study on the Long-term Settlement of Subway Tunnel in Soft Soil Area. Marine Georesources & Geotechnology (SCI), 34(5): 486-492.
[13] Yuan Q, Cui ZD* (2016) Two-Dimensional Numerical Analysis of the Subgrade Improved by Stone Columns in the Soft Soil Area. Marine Georesources & Geotechnology (SCI), 34(1): 79-86.
[14] Cui ZD*, Yang JQ, Yuan L (2015) Land subsidence caused by the interaction of high-rise buildings in soft soil areas. Natural Hazards (SCI), 79(2): 1199–1217.
[15] Cui ZD*, Zhang ZL (2015) Comparison of dynamic characteristics of the silty clay before and after freezing and thawing under the subway vibration loading. Cold Regions Science and Technology (SCI), 119: 29-36.
[16] Cui ZD*, Yuan Q (2015) Investigation of the subsidence induced by the Maglev train. Natural Hazards (SCI), 75(2): 1767-1778.
[17] He PP, Cui ZD* (2015) Dynamic response of a thawing soil around the tunnel under the vibration load of subway. Environmental Earth Sciences (SCI), 73(5): 2473-2482.
[18] Cui ZD*, Tan J (2015) Study on settlements of the running tunnels and subway stations based on the in-situ monitoring data. Natural Hazards (SCI), 75(1): 465-472.
[19] Cui ZD*, Ren SX (2014) Prediction of long-term settlements of subway tunnel in the soft soil area. Natural Hazards (SCI), 74(2):1007-1020.
[20] Cui ZD*, He PP, Yang WH (2014) Mechanical properties of a silty clay subjected to freezing-thawing. Cold Regions Science and Technology (SCI), 98: 26-34.
[21] Cui ZD*, Jia YJ (2013) Analysis of electron microscope images of soil pore structure for the study of land subsidence in centrifuge model tests of high-rise building groups. Engineering Geology (SCI), 164: 107-116.
[22] Song L, Cui ZD, Zhang HQ (2013) Analysis and treatment of the fault activation below the dynamic foundation in the goaf area. Disaster Advances (SCI), 6(S1): 337-342.
[23] Yuan L, Cui ZD (2013) Reliability analysis for the consecutive-k-out-of-n: F system with repairmen taking multiple vacations. Applied Mathematical Modelling (SCI), 37(7): 4685-4697.
[24] Cui ZD*, Jia YJ (2012) Study on the mechanisms of the soil consolidation and land subsidence caused by the high-rise building group in the soft soil area. Disaster Advances (SCI), 5(4): 604-608.
[25] Cui ZD*, Ren SX (2012) Long-term deformation characteristics of the soil around the subway tunnel induced by the vibration loading. Disaster Advances (SCI), 5(4): 1791-1797.
[26] Cui ZD* (2012) Bearing capacity of single pile and in-flight T-Bar Penetration for centrifuge modeling of land subsidence caused by the interaction of high-rise buildings. Bull Eng Geol Environ (SCI), 71(3): 579-586.
[27] Cui ZD* (2012) Land subsidence disaster caused by natural factors and human activities. Disaster Advances (SCI), 5(2): 3-4.
[28] Cui ZD* (2011) Effect of water–silt composite blasting on the stability of rocks surrounding a tunnel. Bull Eng Geol Environ (SCI), 70(4): 657-664.
[29] Cui ZD*, Tang YQ (2011) Microstructures of different soil layers caused by the high-rise building group in Shanghai. Environmental Earth Sciences (SCI), 63(1): 109-119.
[30] Cui ZD*, Wang HM (2010) Land Subsidence at Different Points among a Group of High-Rise Buildings [J]. Disaster Advances (SCI), 3(4): 63-66.
[31] Cui ZD*, Yuan L, Yan CL (2010) Water-silt composite blasting for tunneling. International Journal of Rock Mechanics and Mining Sciences (SCI), 47(6): 1034-1037.
[32] Cui ZD*, Tang YQ (2010) Land subsidence and pore structure of soils caused by the high-rise building group through centrifuge model test. Engineering Geology (SCI), 113(1-4): 44-52.
[33] Cui ZD*, Tang YQ, Yan XX (2010) Centrifuge modeling of land subsidence caused by the high-rise building group in the soft soil area. Environmental Earth Sciences (SCI), 59(8): 1819-1826.
[34] Cui ZD*, Tang YQ, Yan XX, Wang HM, Yan CL, Wang JX (2010) Evaluation of the geology-environmental capacity of buildings based on the ANFIS model of the floor area ratio. Bull Eng Geol Environ (SCI), 69(1): 111-118.
[35] Cui ZD*, Tang YQ, Guo CQ, Yuan L, Yan CL (2008) Flow-induced Vibration and Stability of an Element Model for Parallel-plate fuel assemblies. Nuclear Engineering and Design (SCI), 238(7):1629-1635.
[36] Tang YQ, Cui ZD, Wang JX, Lu C, Yan XX (2008) Model test study of land subsidence caused by high-rise building group. Bull Eng Geol Environ (SCI), 67(2):173-179.
[37] Tang YQ, Cui ZD, Wang JX, Yan LP, Yan XX (2008) Application of grey theory-based model to prediction of land subsidence due to engineering environment in Shanghai. Environmental Geology (SCI), 55(3): 583-593.
[38] Tang YQ, Cui ZD, Zhang X, Zhao SK (2008) Dynamic response and pore-water pressure model of saturated soft clay around a tunnel induced by the subway vibration load. Engineering Geology (SCI), 98(3-4):126-132.
出版專著和教材
[1] Zhen-Dong Cui, Zhong-Liang Zhang, Li Yuan, et al. Design of Underground Structures. Springer Press, 2019.
[2] Zhen-Dong Cui. Land Subsidence Induced by the Engineering-Environmental Effect. Springer Press, 2018.