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Engineering and Technology

D-Index
42
Citations
6520
World Ranking
6613
National Ranking
1810

Overview

Dawn E. Lehman is affiliated with the University of Washington in the United States and has a research focus primarily within the field of Engineering, with a significant emphasis on Civil and Structural Engineering as well as Building and Construction. Their work also intersects with Mechanical Engineering, Computational Mechanics, and Control and Systems Engineering.

The scientist's research covers several key topics within structural and construction engineering. These include:

  • Structural Behavior of Reinforced Concrete
  • Seismic Performance and Analysis
  • Structural Load-Bearing Analysis
  • Structural Response to Dynamic Loads
  • Structural Engineering and Vibration Analysis
  • Recycled Aggregate Concrete Performance
  • Innovative concrete reinforcement materials

Lehman's publication record includes multiple recent papers addressing various aspects of concrete materials and structural performance. Notable works include:

  • "Autogenous-shrinkage model for concrete with coarse and fine recycled aggregate" (2020, Cement and Concrete Composites)
  • "Response and modeling of axially-loaded concrete-filled steel columns with recycled coarse and fine aggregate" (2021, Engineering Structures)
  • "Modeling recommendations for RC and CFST sections in LS-Dyna including bond slip" (2020, Engineering Structures)
  • "Seismic performance of chevron-configured special concentrically braced frames with yielding beams" (2020, Earthquake Engineering & Structural Dynamics)
  • "Basic creep behavior and modeling of recycled coarse and fine aggregate concrete" (2023, Construction and Building Materials)

Frequent publication venues where Lehman's research appears include:

  • Journal of Structural Engineering
  • Engineering Structures
  • Earthquake Engineering & Structural Dynamics
  • Earthquake Spectra
  • Engineering Journal

The scientist has collaborated extensively with a group of frequent coauthors. These include:

  • Charles W. Roeder
  • Mu-Zi Zhao
  • Andrew D. Sen
  • Laura N. Lowes
  • Jeffrey W. Berman

Lehman's body of work contributes to advancing understanding and modeling within concrete materials and structural systems, particularly focusing on dynamic response and seismic performance. Their research often addresses recycled aggregate concrete and its implications for sustainable construction practices.

Best Publications

  • IMPROVED ANALYTICAL MODEL FOR SPECIAL CONCENTRICALLY BRACED FRAMES

    Po-Chien Hsiao;Dawn E. Lehman;Charles W. Roeder

  • Update to ASCE/SEI 41 Concrete Provisions

    Kenneth J. Elwood;Adolfo B. Matamoros;John W. Wallace;Dawn E. Lehman

  • Improved Seismic Performance of Gusset Plate Connections

    Dawn E. Lehman;Charles w. Roeder;David Herman;Shawn Johnson

  • Experimental Evaluation of the Seismic Performance of Reinforced Concrete Bridge Columns

    Dawn Lehman;Jack Moehle;Stephen Mahin;Anthony Calderone

  • Analytical modeling of bending of circular concrete-filled steel tubes

    Jiho Moon;Charles W. Roeder;Dawn E. Lehman;Hak Eun Lee

  • A balanced design procedure for special concentrically braced frame connections

    Charles W. Roeder;Eric J. Lumpkin;Dawn E. Lehman

  • Strength and Stiffness of Circular Concrete-Filled Tubes

    Charles W. Roeder;Dawn E. Lehman;Erik Bishop

  • Lumped-Plasticity Models for Performance Simulation of Bridge Columns

    Michael P Berry;Dawn E Lehman;Laura N Lowes

  • Mechanical properties, durability, and life-cycle assessment of concrete building blocks incorporating recycled concrete aggregates

    Zhanggen Guo;Zhanggen Guo;An Tu;Chen Chen;Dawn E. Lehman

  • REPAIR OF EARTHQUAKE-DAMAGED BRIDGE COLUMNS

    Dawn E. Lehman;Sharon E. Gookin;Adrian M. Nacamuli;Jack P. Moehle

  • A model to simulate special concentrically braced frames beyond brace fracture

    Po-Chien Hsiao;Dawn E. Lehman;Charles W. Roeder

  • BOND-SLIP RESPONSE OF REINFORCING BARS GROUTED IN DUCTS

    Dan J. Raynor;Dawn E. Lehman;John F. Stanton

  • Time-dependent drying shrinkage model for concrete with coarse and fine recycled aggregate

    Huan Zhang;Yuyin Wang;Dawn E. Lehman;Yue Geng

  • Nonlinear line-element modeling of flexural reinforced concrete walls

    Joshua S. Pugh;Laura N. Lowes;Dawn E. Lehman

  • Influence of connection design parameters on the seismic performance of braced frames

    Jung-Han Yoo;Dawn E. Lehman;Charles W. Roeder

  • Foundation connections for circular concrete-filled tubes

    Dawn E. Lehman;Charles W. Roeder

  • Analytical Performance Simulation of Special Concentrically Braced Frames

    Jung-Han Yoo;Charles W. Roeder;Dawn E. Lehman

  • Earthquake response of slender planar concrete walls with modern detailing

    Laura N. Lowes;Dawn E. Lehman;Anna C. Birely;Daniel A. Kuchma

  • Strength of Circular Concrete-Filled Tubes with and without Internal Reinforcement under Combined Loading

    Jiho Moon;Dawn E. Lehman;Charles W. Roeder;Hak Eun Lee

  • Evaluation of the response modification coefficient and collapse potential of special concentrically braced frames

    Po-Chien Hsiao;Dawn E. Lehman;Charles W. Roeder

Frequent Co-Authors

Charles W. Roeder
Charles W. Roeder University of Washington
Laura N. Lowes
Laura N. Lowes University of Washington
Jack P. Moehle
Jack P. Moehle University of California, Berkeley
Keh-Chyuan Tsai
Keh-Chyuan Tsai National Taiwan University
Reginald DesRoches
Reginald DesRoches Rice University
John W. Wallace
John W. Wallace University of California, Los Angeles
Gregory G. Deierlein
Gregory G. Deierlein Stanford University
Dimitrios Lignos
Dimitrios Lignos École Polytechnique Fédérale de Lausanne
Ellen M. Rathje
Ellen M. Rathje The University of Texas at Austin
Ross W. Boulanger
Ross W. Boulanger University of California, Davis

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