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Zaman

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Aaron Alexander Chair in Civil and Environmental Science, David Ross Boyd Professor

E-mail:    zaman@ou.edu
Office:    SEC 1366

Research interests: Geotechnical engineering; Soil dynamics, rock mechanics, soil structure interaction, flow through porous media

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B.S., Civil Engineering, Bangladesh University of Engineering and Technology, 1975
M.S., Civil Engineering, Carleton University, Ottawa, Canada, 1979
Ph.D., Civil Engineering, University of Arizona, 1982 

 IJOG Excellent Paper Award (2008) given by IACMAG

Chandra Desai Medal (2005) from the International Association for Computer Methods and David Ross Boyd Professorship (2003)

Kerr McGee Presidential Professor (1997-2001);

Agilent Technologies Award for Excellence in Laboratory Instruction, ASEE (2000)

Campos, R., Mendez Larain, M. M., Zaman, M., Pozades, V. (2020). Relationships Between Compressive and Flexural Strengths of Concrete Based on Fresh Field Properties. Int’l J. of Pavement Research and Technology, 7 pages. doi.org/ 10.1007/s42947-020-1074-0.

Xiao, Y., Desai, C. S., Zhengxin, Y., Zaman, M., Ma, Q., Chen, Q., Liu, H. (2020). Effects of Load Duration and Stress Level on Deformation and Particle Breakage of Carbonate Sands. Int’l J. of Geomech., ASCE, Special Collection on Testing and Modeling on Particle Breakage for Granular Soils. doi.org/10.1061/(ASCE)GM.1943-5622.0001731.

Rahman, M. A., Ghabchi, R., Zaman, M., Ali, S. A., Arshadi, A. (2021). Laboratory Characterization of Rutting and Moisture-Induced Damage Potential of Foamed Warm Mix Asphalt (WMA) Containing RAP. Innovative Infrastructure Solutions, 6(3), 1-11. https://hdl.handle.net/11244/321119.

Rani, S., Ghabchi, R., Zaman, M., O'Rear, E. A. (2021). Moisture-Induced Damage Potential of Asphalt Mixes Containing Polyphosphoric Acid and Antistripping Agent(online). Road Materials and Pavement Design, 1-21.