Jerome F. Hajjar
Affiliations: | Civil and Environmental Engineering | Northeastern University, Boston, MA, United States |
Area:
Civil Engineering, Remote SensingGoogle:
"Jerome Hajjar"Children
Sign in to add traineeBurcu Guldur | grad student | 2014 | Northeastern University |
Vitaliy V. Saykin | grad student | 2014 | Northeastern University |
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Publications
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Peterman KD, Kordas J, Webster MD, et al. (2020) Structural Performance of Steel Shelf Angles with Thermally Improved Detailing Journal of Structural Engineering-Asce. 146: 4020218 |
Wang L, Webster MD, Hajjar JF. (2020) Design for Deconstruction Using Sustainable Composite Beams with Precast Concrete Planks and Clamping Connectors Journal of Structural Engineering-Asce. 146: 4020158 |
Bai R, Hajjar JF, Liu S, et al. (2020) A mixed-field Timoshenko beam-column element for direct analysis of tapered I-sections members Journal of Constructional Steel Research. 172: 106157 |
Saykin VV, Nguyen TH, Hajjar JF, et al. (2020) The effect of triaxiality on finite element deletion strategies for simulating collapse of full-scale steel structures Engineering Structures. 210: 110364 |
Erkal BG, Hajjar JF. (2020) Using extracted member properties for laser‐based surface damage detection and quantification Structural Control & Health Monitoring |
Wang J, Liu C, Fan J, et al. (2019) Triaxial Concrete Constitutive Model for Simulation of Composite Plate Shear Wall–Concrete Encased: THUC3 Journal of Structural Engineering-Asce. 145: 4019088 |
Wang L, Webster MD, Hajjar JF. (2019) Pushout tests on deconstructable steel-concrete shear connections in sustainable composite beams Journal of Constructional Steel Research. 153: 618-637 |
Deniz D, Song J, Hajjar JF. (2018) Energy-based sidesway collapse fragilities for ductile structural frames under earthquake loadings Engineering Structures. 174: 282-294 |
Denavit MD, Hajjar JF, Perea T, et al. (2018) Elastic flexural rigidity of steel-concrete composite columns Engineering Structures. 160: 293-303 |
Eckelman MJ, Brown C, Troup LN, et al. (2018) Life cycle energy and environmental benefits of novel design-for-deconstruction structural systems in steel buildings Building and Environment. 143: 421-430 |