91短视频

Education Background

Ph.D. - 2006 Purdue University
M.Eng. - 2001 National University of Singapore
M.S. - 1998 IIT Madras
B.Tech. - 1993 Mahatma Gandhi University

Experience

Associate Professor, Department of Civil and Environmental Engineerin 91短视频, Present
Assistant Professor, Department of Civil and Environmental Engineering 91短视频 , 2014
Post-Doctoral Research Associate, Department of Civil & Environmental Engineering Princeton University, 2008
Research Engineer High Performance Concrete Research Lab Aquegen International Singapore, 2001
Apprentice Trainee FACT India Limited, 1995

Teaching Interests

Properties and Performance of concrete, Cement Chemistry, Advanced Concrete Materials, Structural Analysis, Materials Science Engineering I

Research Interests

Research in my group is primarily focused on understanding the hydration chemistry, microstructural/nanostructural property development and their influence on the early age and long term performance of sustainable infrastructural cementitious materials. Specific topics include, properties and performance of alkali activated fly ash and slag binder concrete, high volume supplementary cementitious binder concrete, cement kiln dust 鈥搒lag/fly ash cement free binder concrete and other alternative binder concrete systems. We also investigate the role of nano particle addition on the hydration chemistry of these binders. Other related topics of interest are mechanism of portland and oil well cement hydration, setting kinetics of cements, and the mechanism of chemical deterioration (corrosion, alkali aggregate reaction, delayed ettringite formation ...) of novel/portland cementitious systems, and beneficial utilization of cement kiln dust (soil stabilization, controlled low strength concrete, CKD-activated alternative binder systems).

Awards

  • National Science Foundation Faculty Early Career Development (CAREER) Award (2011)
  • Albert Merrill Award (2015), CEE, 91短视频

Publications

  •  Thomas, R.J., Lezama, D., and Peethamparan, S., 鈥淥n drying shrinkage in alkali-activated concrete: Improving dimensional stability by aging or heat-curing 鈥, Cement and Concrete Research, 91,(2017), 13鈥23
  • Thomas, R.J., Ye, H., Radli艅ska, A., and Peethamparan, S., 鈥淎lkali-Activated Slag cement Concrete; A closer look at a sustainable alternative to portland cement鈥, Concrete International, January, (2016) 33, 38
  • Siriwardena ,P.D., and Peethamparan, S., 鈥淨uantification of CO2 sequestration capacity and carbonation rate of alkaline industrial by-products鈥, Construction & Building Materials 91 (2015) 216-224
  • Thomas, R.J., and Peethamparan, S., 鈥淎lkali-Activated Concrete: Engineering Properties and Stress-Strain Behavior鈥 Construction & Building Materials 93 (2015) 49-56
  • Gebregziabiher B.S., Thomas R.J. and Peethamparan, S., 鈥淰ery early-age reaction kinetics and microstructural development in alkali-activated slag鈥, Cement and Concrete Composites 55 (2014) 91-102
  • Deir, E* Gebregziabiher B.S., and Peethamparan, S.,鈥 Influence of starting material on the early age hydration kinetics and the composition of binding gel in alkali activated binder systems鈥, Cement and Concrete Composites, 48(2014),108-117
  • Chaunsali, P., and Peethamparan, S., 鈥淚nfluence of cement kiln dust composition on its interaction with slag鈥, Cement and Concrete Research, 54,(2013), 106鈥113
  • Chaunsali, P., and Peethamparan, S., 鈥淎 novel cementitious binder incorporating cement kiln dust: strength and durability鈥, ACI Materials Journal, 110(3), (2013), 297-303
  • Min-Hong Zhang, Jahidul Islam and Peethamparan, S., 鈥淯se of Nano-Silica to Increase Early Strength and Reduce Setting Time of Concretes with High Volumes of Slag鈥, Cement and Concrete Composite, 34, (2012), 650鈥662
  • Chaunsali, P., and Peethamparan, S., 鈥淓volution of strength, microstructure and mineralogical composition of a CKD鈥揋GBFS binder鈥, Cement and Concrete Research, 41(2), (2011), 197-208
  • Chaunsali, P., and Peethamparan, S., 鈥淢icro structural and mineralogical characterization of cement kiln dust activated fly ash binder鈥, Transportation Research Record, 2164, (2010), 36-45
  • Ravikumar, D., and Peethamparan, S., and Neithalath, N., 鈥淪tructure and Strength of NaOH activated concrete containing fly ash or GGBFS as sole binder鈥, Cement and Concrete Composite, 32(6), (2010), 399-410
  • Peethamparan, S., Weissinger, E., Vocaturo, J., Zhang, J and Scherer, G. W., 鈥淢onitoring Chemical Shrinkage Using Pressure Sensors鈥, ACI special publication, 270, (2010), 77-88
  • Scherer, G.W., Funkhouser, G.P., Peethamparan, S., 鈥淓ffect of Pressure on Early Hydration of Class H Cement鈥, Cement and Concrete Research, 40(6), (2010), 845-850
  • Zhang, J., Peethamparan, S. Weissinger, E., Scherer G.W., 鈥淓arly age hydration and setting of oil well cements鈥, Cement and Concrete Research, 40(7), (2010), 1023-1033
  • Peethamparan, S., Olek , J and Diamond , S, 鈥淢echanism of stabilization of Na-montmorillonite clay with cement kiln dust鈥, Cement and Concrete Research, 39, (2009), 580鈥589
  • Peethamparan, S., and Olek, J., 鈥淎 Study on the Effectiveness of Cement Kiln Dusts (CKDs) in Stabilizing Na-montmorillonite Clay鈥, The ASCE Journal of Materials in Civil Engineering, 20 (2), (2008), 137-146
  • Peethamparan, S, Olek, J and Lovell, J, 鈥淚nfluence of chemical and physical characteristic of cement kiln dusts (CKDs) on their hydration behavior and potential application in soil stabilization鈥, Cement and Concrete Research, 38, (2008), 803鈥815
  • Peethamparan, S., Olek, J. and Diamond, S., 鈥淧hysicochemical Behavior of Cement Kiln Dust Treated Kaolinite Clay鈥, Journal of Transportation Research Record, (2059) (2008) 80-88.
  •  Sulapha, P., Wong, S. F., Wee, T. H., and Swaddiwudhipong, S., 鈥淐arbonation of concrete containing mineral admixtures,鈥 Journal of Materials in Civil Engineering, 15(2), (2003), 134-143.

Contact

Email:
speetham@clarkson.edu

Office Phone Number: 315/268-4435

Office Location: 236 Rowley Lab

91短视频 Box Number: CU Box 5710