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Kim, Y. H.

Assistant Professor

OFFICE: WS 104
PHONE: (502)852-4565
E-MAIL: yhkim005@louisville.edu

Education

  • Ph.D., Civil Engineering, Texas A&M University, College Station, USA, 2008
  • M.E., Civil and Environmental Engineering, Korea University, Seoul, Korea, 2003
  • B.E., Civil and Environmental Engineering, Korea University, Seoul, Korea, 2000

 

Professional Experience

  • Assistant Professor, 2011 - present
    Civil and Environmental Engineering, University of Louisville, Louisville, KY
  • Post-Doctoral Scholar, Nov. 2009 - Sept. 2011
    School of Civil and Construction Engineering, Oregon State University, Corvallis, OR
  • Post-Doctoral Research Associate, Jan. 2009 – Oct. 2009
    Texas Transportation Institute, College Station, TX

 

Courses

  • CEE421 Concrete Design (Spring 2012)
  • CEE625 Structural Dynamics (Fall 2011)

 

Publications

Refereed Journal Publications

  • Gardoni, P., Trejo, D., Kim, Y.H., “Time-variant Capacity Model for GFRP Bars Embedded in Concrete,” ASCE Journal of Engineering Mechanics (Submitted), Jan., 2011.
  • Kim, Y.H., Trejo, D., Gardoni, P., “Time-variant Capacity and Reliability of GFRP-Reinforced Bridge Decks,” for submittal to ASCE Journal of Composite for Construction (Submitted), May, 2011.
  • Kim, Y.H., Trejo, D., Hueste, M.D., “Bond Performance of High-Early Strength Self-Consolidating Concrete Pretensioned Bridge Elements,” ACI Structural Journal (Revision), Oct., 2010.
  • Kim, Y.H., Trejo, D., Hueste, M.D., Kim, J.J. (2011), “Experimental Study on Creep and Durability of High Early Strength Self-Consolidating Concrete for Precast Elements,” ACI Materials Journal, Vol.108, No.2, pp.128-138.
  • Kim, Y.H., Trejo, D., Hueste, M.D. (2010), “Characterization of High Early Strength Self-Consolidating Concrete for Design of Pretensioned Bridge Elements,” Transportation Research Record: Journal of the Transportation Research Board, No.2200, pp.135-142.
  • Kim, Y.H., Hueste, M.D., Trejo, D., Cline, D.B.H. (2010), “Shear Characteristics and Design for High-Strength Self-Consolidating Concrete,” Journal of Structural Engineering, ASCE, Vol. 136, No. 8, pp. 989-1000.
  • Kim, Y.H., Trejo, D., Hueste, M.D. (2007), “Shear Characteristics of Self-Consolidating Concrete for Precast Prestressed Concrete Members,” American Concrete Institute, SP-247, No.5, pp. 52-66.
  • Kim, Y.H., Lee J.H., Yoon, Y.-S. (2006), “Repeated Loading Tests of Shear-Critical Reinforced Concrete Beams with Headed Shear Reinforcement,” Korea Concrete Institute Journal, Vol.18, No.1, pp. 47-56. (In Korean)
  • Kim, Y.H., Yoon, Y.-S., Cook, W.D. and Mitchell, D. (2004), “Repeated Loading Tests of Concrete Walls Containing Headed Shear Reinforcement,” ASCE Journal of Structural Engineering, Vol. 130, No. 8, pp. 1233-1241.
  • Park, H.-K., Yoon, Y.-S., Kim, Y.H. (2003), “The Effect of Head Plate Details on Pull-out Behaviour of Headed Bars,” Magazine of Concrete Research, Vol. 55, Issue 6, pp. 485-496.

 

Reports

  • Trejo, D., Kim, Y.H., (2011), “Development of Precast Bridge Deck Overhang System for Safe, Accelerated Bridge Construction: Technical Report” Rep. No. 0-6100-3, Texas Transportation Institute, Texas A&M University, College Station, 60 pp.
  • Trejo, D., Hueste, M.D., Kim, Y.H., Atahan, H. (2008), “Characterization of Self-Consolidating Concrete for Design of Precast, Prestressed Bridge” Rep. No. 0-5134-2, Texas Transportation Institute, Texas A&M University, College Station, 384 pp.

 

Professional Associations

  • American Concrete Institute (ACI)

  • American Society of Civil Engineers (ASCE)

  • Precast Prestressed Concrete Institute (PCI)

 

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