[1]     Zhou Wei, Li Shaolin, Zhou Zhiwei, Chang Xiaolin. Remote Sensing of Deformation of a High Concrete-Faced Rockfill Dam Using InSAR: A Study of the Shuibuya Dam, China. Remote Sensing, 2016, 8(3): 255.

[2]     Zhou Wei, Feng Chuqiao, Liu Xinghong, Liu Shuhua, Zhang Chao, Yuan Wei. Contrastive Numerical Investigations on Thermo-Structural Behaviors in Mass Concrete with Various Cements. Materials, 2016, 9(5): 378.

[3]     Zhou Wei, Li Shaolin, Ma Gang, Xing Ma, Chao Zhang. Parameters inversion of high central core rockfill dams based on a novel genetic algorithm. Science China Technological Sciences, 2016:1-12. (Online)

[4]     Zhou Wei, Ma Xing, Ng Tang-Tat, Ma Gang, Li Shao-Lin. Numerical and experimental verification of a damping model used in DEM .Granular Matter. 2016, 18(1): 1-12.

[5]     Zhou Wei, Li Shaolin, Ma Gang, Chang XiaolinChang XiaolinCheng YonggangMa Xing. Assessment of the crest cracks of the Pubugou rockfill dam based on parameters back analysis, Geomechanics and engineering. 2016. accept

[6]     Zhou Wei, Yang Lifu, Ma Gang, Chang Xiaolin, Lai Zhiqiang, Xu Ku. DEM analysis of the size effects on the behavior of crushable granular materials .Granular Matter, 2016.accept

[7]     Zhou Wei, Liu Jiaying, Ma Gang, Yuan Wei, Chang Xiaolin. Macroscopic and microscopic behaviors of granular materials under proportional strain path: a DEM study . International Journal for Numerical and Analytical Methods in Geomechanics, 2016. accept

[8]     Zhou Wei, Tang Longwen, Liu Xinghong, Ma Gang, Chen Mingxiang. Mesoscopic simulation of the dynamic tensile behaviour of concrete based on a rate-dependent cohesive model. International Journal of Impact Engineering, 2016,95:165-175

[9]     Zhou Wei, Feng Chuqiao, Liu Xinghong, Liu Shuhua, Zhang Chao. A macro-meso chemo-physical analysis of early-age concrete based on a fixed hydration model . Magazine of Concrete Research, 2016: 1-14.

[10] Zhou Wei, Yuan Wei, Ma Gang, Chang Xiaolin. Combined finite-discrete element method modeling of rockslides . Engineering Computations, 2016, (Online)

[11] Zhou Wei, Li Liang, Liu Shuhua, Dao Vinh, Liu Xinghong. Hydration properties and thermal analysis of cement-based materials containing limestone powder. Journal of Central South University. 2016. accept

[12] Ma Gang, Zhou Wei*, Chang Xiaolin, Chen Mingxiang. A hybrid approach for modeling of breakable granular materials using combined finite-discrete element method . Granular Matter, 2016, 18(1): 1-17.

[13] Ma Gang, Zhou Wei*, Chang Xiao-lin, Ng Tang-Tat, Yang Li-fu. Formation of shear bands in crushable and irregularly shaped granular materials and the associated microstructural evolution. Powder Technology, 2016,301 (11), 118–130

[14] Zhang C, Zhou W*, Ma G, et al. A meso-scale approach to modeling thermal cracking of concrete induced by water-cooling pipes . Computers and Concrete, 2015, 15(4): 485-501.

[15] Ma G, Zhou W*, Ng T T, et al. Microscopic modeling of the creep behavior of rockfills with a delayed particle breakage model . Acta Geotechnica, 2015,10(4):481-496.

[16] Zhou W, Ma G, Chang X L, et al. Discrete modeling of rockfill materials considering the irregular shaped particles and their crushability . Engineering Computations, 2015, 32(4): 1104-1120.

[17] Zhou W, Yang L, Ma G, et al. Macro–micro responses of crushable granular materials in simulated true triaxial tests . Granular Matter, 2015, 17(4): 497-509.

[18] Xinghong Liu, Chao Zhang, Xiaolin Chang, Wei Zhou*, Yonggang Cheng, Yin Duan. Precise simulation analysis of the thermal field in mass concrete with a pipe water cooling system. Applied Thermal Engineering. 2015,78:449-459.

[19] Gang Ma, Xiao-Lin Chang, Tang-Tat Ng, Wei Zhou*. Mechanical response of rockfill materials using a true triaxial test: a combined FEM/DEM study . Geomechanics and Engineering, 2014, 7(3): 317-333.

[20] Ma, G., Zhou, W.*, Chang, X., Modeling the particle breakage of rockfill materials with the cohesive crack model. Computers and Geotechnics, 2014; 61 (9):132-143.

[21] Ma G., Zhou W.*, Chang X., and Yuan W. Combined FEM/DEM modeling of triaxial compression test for rockfills with polyhedral particles. International Journal of Geomechanics,ASCE. 2014,14(4):1-12.

[22] Wei, Z., Gang, M., Xiaolin, C., and Chuangbing, Z. Influence of particle shape on the behavior of rockfill using a three-dimensional deformable DEM. Journal of Engineering Mechanics, ASCE . 2013,139(12):1868-1873.

[23] Ma Gang, Zhou Wei*, Chang Xiaolin. A novel particle swarm optimization algorithm based on particle migration. Applied Mathematics and Computation2012218:6620–6626.

[24] Zhou Wei, Hua Junjie, Chang Xiaolin, Zhou Chuangbing. Settlement analysis of the Shuibuya concrete-face rockfill dam. Computers and Geotechnics 2011; 38 (2):269-280.

[25] Zhou W, Chang XL, Zhou CB. Creep analysis of high concrete-faced rockfill dam. International Journal for Numerical Methods in Biomedical Engineering, 2010, 26(11): 1477-1492.

[26] XiaoLin ChangXinghong Liu, Wei Zhou*. Hydropower in China now and its further development. Energy. 201035(11) 4400-4406.

[27] Zhou Wei, Zhou Changbing, Chang Xiaolin. A Contact Model Based on the SQP Algorithm and Engineering Application. Applied Mathematics and Computation200898(2)916-924.

[28] Zhou Wei, Chang Xiaolin, Zhou Chuangbing, Liu Xinghong .Failure analysis of high-concrete gravity dam based on strength reserve factor method. Computers and Geotechnics. 200835(4):627-636.

[29] Zhou W, Wang Q, Cheng Y, et al. A fast multipole method accelerated adaptive background cell-based domain integration method for evaluation of domain integrals in 3D boundary element method. Engineering Analysis with Boundary Elements, 2016, 67: 1-12.

[30] Ng T T, Zhou W, Chang X L. Effect of Particle Shape and Fine Content on the Behavior of Binary Mixture. Journal of Engineering Mechanics, 2016.

[31] Tang-Tat Ng, Zhou Wei. DEM simulations of bi-disperse ellipsoids of different particle sizes. COMPTES RENDUS MECANIQUE, 2014, 342(3): 141-150.

[32] Tang-Tat Ng, Wei Zhou, Gang Ma, Xiao-Lin Chang. Damping and Particle Mass in DEM simulations under Gravity. Journal of Engineering Mechanics, ASCE. 2014,139(12):1868-1873.

[33] CHANG XiaoLin, HU Chao, ZHOU Wei, MA Gang*, ZHANG Chao. A combined continuous-discontinuous approach for failure process of quasi-brittle materials. SCIENCE CHINA Technological Sciences, 2014, 57(3): 550-559.

[34] Liu, X., Duan, Y., Zhou, W., and Chang, X. Modeling the Piped Water Cooling of a Concrete Dam Using the Heat-Fluid Coupling Method. Journal of Engineering Mechanics, ASCE. 2013, 139(9), 1278–1289.

[35] Li, Dianqing, Zhang Fupin, Cao Zijun, Zhou Wei, Phoon Kok Kwang, Zhou Chuangbing. Efficient reliability updating of slope stability by reweighting failure samples generated by Monte Carlo simulation. Computers and Geotechnics, 2015, 69: 588-600.

[36] Wang Gaohui, Lu Wenbo, Zhou Chuangbing, Zhou Wei. The Influence of Initial Cracks on the Crack Propagation Process of Concrete Gravity Dam-Reservoir-Foundation Systems. Journal of Earthquake Engineering, 2015, 19(6): 991-1011.

[37] Wang Gaohui, Wang Yongxiang, Lu Wenbo, Zhou Wei, Zhou Chuangbing. Integrated duration effects on seismic performance of concrete gravity dams using linear and nonlinear evaluation methods. Soil Dynamics and Earthquake Engineering, 2015, 79: 223-236.

[38] Li Dianqing, Qi Xiaohui, Cao Zijun, Tang Xiaosong, Zhou Wei, Phoon Kok Kwang. Reliability analysis of strip footing considering spatially variable undrained shear strength that linearly increases with depth. Soils and Foundations, 2015, 55(4): 866-880.

[39] Li Dianqing, Zhang Lei, Tang Xiaosong, Zhou Wei, Li Jinhui, Zhou Chuangbing, Phoon Kok Kwang. Bivariate distribution of shear strength parameters using copulas and its impact on geotechnical system reliability. Computers and Geotechnics, 2015, 68: 184-195.

[40] Li Dianqing, Jiang Shuihua, Cao Zijun, Zhou Wei, Zhou Chuangbing, Zhang Limin. A multiple response-surface method for slope reliability analysis considering spatial variability of soil properties. Engineering Geology, 2015, 187: 60-72.

[41] Chang Xiaolin, Yang Xinping, Zhou Wei, Xie Guoshuai, Liu Shuhua. Influence of Glass Powder on Hydration Kinetics of Composite Cementitious Materials. ADVANCES IN MATERIALS SCIENCE AND ENGINEERING, DOI: 10.1155/2015/713415.

[42] Liu Xinghong, Chang Xiaolin, Zhou Wei, Li Shuirong. PFC2D Simulation of Thermally Induced Cracks in Concrete Specimens. AIP Conference Proceedings, 2013, 1542: 261-264.

[43] Zhou Wei, Jing Xiangyang, Liu Xinghong. Temperature control measures and feedback analysis in rapid construction of Guandi RCC dam. Advanced Materials Research, 2012, 594-597: 1979-1982.

[44] Liu Xinghong, Zhu Jingping, Chang Xiaolin, Zhou Wei. Study on concrete temperature crack based on mesomechanics. Applied Mechanics and Materials, 2012, 212-213: 895-898.

[45] Liu Xinghong, Chang Xiaolin, Zhou Wei. Simulation of concrete temperature cracking process based on EFGM. Applied Mechanics and Materials, 2011, 88-89: 395-398.

[46] Zhou Wei, Hua Junjie, Chang Xiaolin, Zhou Chuangbing. Study of scale effect on creep deformation of rockfill. Geomechanics and Geotechnics: from Micro to Macro, 2011, 1-2: 481-485.

[47] Zhou Wei, Huang Yong, Ma Gang, Chang Xiaolin. Multiscale modeling of granular assemblies based on different micromechanical strain, The 7th International  Conference on Discrete Element Methods, 2016

[48] Zhou Wei, Xu Kun, Yang Lifu, Ma Gang. Influence of particle shape on mechanical behavior of granular materials, The 7th International  Conference  on Discrete Element Methods, 2016

[49] Zhou Wei, Lai Zhiqiang, Yang Lifu, Ma Gang, Chen Yuan, Qi Tianqi. Influence of base roughness on kinematic and mechanical characteristics of debris flows, The 7th International  Conference  on Discrete Element Methods, 2016.

[50] Zhou Wei, Liu Jiaying, Ma Gang, Ma Xing, Chang Xiaolin, Zhang Chao. The influence of rolling resistance on granular response under triaxial loading paths. The 7th International Conference on Discrete Element Methods, 2016.

[51]Chang Xiaolin, Wang Yuting, Zhou Wei, Ma Gang, Liu Jiaying. The Influence of Rotational Resistance on Critical State of Granular Materials. The 7th International Conference on Discrete Element Methods, 2016.