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Die folgende Bibliografie enthält alle in dieser Datenbank indizierten Veröffentlichungen, die mit diesem Namen als Autor, Herausgeber oder anderweitig Beitragenden verbunden sind.

  1. Zaker Esteghamati, Mohsen / Huang, Qindan (2023): Evaluating the impact of higher-mode and inelastic dynamic responses of concrete frames on the performance of seismic intensity measures. In: Structures, v. 56 (Oktober 2023).

    https://doi.org/10.1016/j.istruc.2023.105029

  2. Alzioud, Mahmoud / Abbas, Ala / Huang, Qindan (2022): Effect of traffic monitoring period on mechanistic-empirical pavement design. In: Construction and Building Materials, v. 360 (Dezember 2022).

    https://doi.org/10.1016/j.conbuildmat.2022.129584

  3. Soraghi, Ahmad / Huang, Qindan (2024): Probabilistic modeling of reinforced concrete bond behavior considering failure mode and corrosion. In: Structure and Infrastructure Engineering, v. 20, n. 2 (Juni 2024).

    https://doi.org/10.1080/15732479.2022.2088810

  4. Soraghi, Ahmad / Huang, Qindan (2022): Simple rebar anchorage slip macromodel considering corrosion. In: Engineering Structures, v. 262 (Juli 2022).

    https://doi.org/10.1016/j.engstruct.2022.114357

  5. Huang, Qindan / Gardoni, Paolo / Hurlebaus, Stefan (2015): Assessment of modal parameters considering measurement and modeling errors. In: Smart Structures and Systems, v. 15, n. 3 (März 2015).

    https://doi.org/10.12989/sss.2015.15.3.717

  6. Miran, Seyedeh Azadeh / Huang, Qindan / Castaneda, Homero (2016): Time-Dependent Reliability Analysis of Corroded Buried Pipelines Considering External Defects. In: Journal of Infrastructure Systems, v. 22, n. 3 (September 2016).

    https://doi.org/10.1061/(asce)is.1943-555x.0000307

  7. Soraghi, Ahmad / Huang, Qindan (2021): Probabilistic prediction model for RC bond failure mode. In: Engineering Structures, v. 233 (April 2021).

    https://doi.org/10.1016/j.engstruct.2021.111944

  8. Soraghi, Ahmad / Huang, Qindan / Hauff, Derek A. J. (2019): Probabilistic Model for Rebar-Concrete Bond Failure Mode Prediction Considering Corrosion. Vorgetragen bei: Structures Congress 2019, Orlando, Florida, 24-27 April 2019.

    https://doi.org/10.1061/9780784482247.033

  9. Sajedi, Siavash / Huang, Qindan / Gandomi, Amir H. / Kiani, Behnam (2017): Reliability-Based Multiobjective Design Optimization of Reinforced Concrete Bridges Considering Corrosion Effect. In: ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part A: Civil Engineering, v. 3, n. 3 (September 2017).

    https://doi.org/10.1061/ajrua6.0000896

  10. Huang, Qindan / Gardoni, Paolo / Hurlebaus, Stefan (2015): Adaptive Reliability Analysis of Reinforced Concrete Bridges Subject to Seismic Loading Using Nondestructive Testing. In: ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part A: Civil Engineering, v. 1, n. 4 (Dezember 2015).

    https://doi.org/10.1061/ajrua6.0000835

  11. Chandra, Akhilesh / Huang, Qindan / Roke, David A. / Sett, Kallol (2017): Improving precision in earthquake loss estimation. In: Sustainable and Resilient Infrastructure, v. 3, n. 3 (Dezember 2017).

    https://doi.org/10.1080/23789689.2017.1365231

  12. Huang, Qindan / Gardoni, Paolo / Hurlebaus, Stefan (2010): Probabilistic Seismic Demand Models and Fragility Estimates for Reinforced Concrete Highway Bridges with One Single-Column Bent. In: Journal of Engineering Mechanics (ASCE), v. 136, n. 11 (November 2010).

    https://doi.org/10.1061/(asce)em.1943-7889.0000186

  13. Huang, Qindan / Gardoni, Paolo / Hurlebaus, Stefan (2009): Probabilistic Capacity Models and Fragility Estimates for Reinforced Concrete Columns Incorporating NDT Data. In: Journal of Engineering Mechanics (ASCE), v. 135, n. 12 (Dezember 2009).

    https://doi.org/10.1061/(asce)0733-9399(2009)135:12(1384)

  14. Holik, William A. / Schneider, William H. / Huang, Qindan (2017): Assessing the Vulnerability of Winter Maintenance Material Storage Facilities. In: Journal of Cold Regions Engineering, v. 31, n. 2 (Juni 2017).

    https://doi.org/10.1061/(asce)cr.1943-5495.0000114

  15. Daghash, Sherif M. / Huang, Qindan / Ozbulut, Osman E. (2019): Tensile Behavior and Cost-Efficiency Evaluation of ASTM A1010 Steel for Bridge Construction. In: Journal of Bridge Engineering (ASCE), v. 24, n. 8 (August 2019).

    https://doi.org/10.1061/(asce)be.1943-5592.0001449

  16. Sajedi, Siavash / Huang, Qindan (2019): Reliability-based life-cycle-cost comparison of different corrosion management strategies. In: Engineering Structures, v. 186 (Mai 2019).

    https://doi.org/10.1016/j.engstruct.2019.02.018

  17. Kere, Kiswendsida J. / Huang, Qindan (2019): Life-Cycle Cost Comparison of Corrosion Management Strategies for Steel Bridges. In: Journal of Bridge Engineering (ASCE), v. 24, n. 4 (April 2019).

    https://doi.org/10.1061/(asce)be.1943-5592.0001361

  18. Huang, Qindan / Gardoni, Paolo / Hurlebaus, Stefan (2012): A probabilistic damage detection approach using vibration-based nondestructive testing. In: Structural Safety, v. 38 (September 2012).

    https://doi.org/10.1016/j.strusafe.2012.01.004

  19. Kiani, Behnam / Sajedi, Siavash / Gandomi, Amir H. / Huang, Qindan / Liang, Robert Y. (2017): Optimal adjustment of ACI formula for shrinkage of concrete containing pozzolans. In: Construction and Building Materials, v. 131 (Januar 2017).

    https://doi.org/10.1016/j.conbuildmat.2016.11.082

  20. Gandomi, Amir H. / Sajedi, Siavash / Kiani, Behnam / Huang, Qindan (2016): Genetic programming for experimental big data mining: A case study on concrete creep formulation. In: Automation in Construction, v. 70 (Oktober 2016).

    https://doi.org/10.1016/j.autcon.2016.06.010

  21. Dyanati, Mojtaba / Huang, Qindan / Roke, David (2017): Cost-benefit evaluation of self-centring concentrically braced frames considering uncertainties. In: Structure and Infrastructure Engineering, v. 13, n. 5 (Juni 2017).

    https://doi.org/10.1080/15732479.2016.1173070

  22. Dyanati, Mojtaba / Huang, Qindan / Roke, David (2015): Seismic demand models and performance evaluation of self-centering and conventional concentrically braced frames. In: Engineering Structures, v. 84 (Februar 2015).

    https://doi.org/10.1016/j.engstruct.2014.11.036

  23. Huang, Qindan / Gardoni, Paolo / Trejo, David / Pagnotta, Alex (2014): Probabilistic model for steel–concrete bond behavior in bridge columns affected by alkali silica reactions. In: Engineering Structures, v. 71 (Juli 2014).

    https://doi.org/10.1016/j.engstruct.2014.03.041

  24. Sajedi, Siavash / Huang, Qindan (2015): Probabilistic prediction model for average bond strength at steel–concrete interface considering corrosion effect. In: Engineering Structures, v. 99 (September 2015).

    https://doi.org/10.1016/j.engstruct.2015.04.036

  25. Dyanati, Mojtaba / Huang, Qindan / Roke, David (2017): Sensitivity analysis of seismic performance assessment and consequent impacts on loss analysis. In: Bulletin of Earthquake Engineering, v. 15, n. 11 (Mai 2017).

    https://doi.org/10.1007/s10518-017-0150-6

  26. Kafaeikivi, Mehdei / Roke, David A. / Huang, Qindan (2016): Seismic performance assessment of self-centering dual systems with different configurations. In: Structures, v. 5 (Februar 2016).

    https://doi.org/10.1016/j.istruc.2015.09.004

  27. Sajedi, Siavash / Huang, Qindan (2017): Load-Deflection Behavior Prediction of Intact and Corroded RC Bridge Beams with or without Lap Splices Considering Bond Stress-Slip Effect. In: Journal of Bridge Engineering (ASCE), v. 22, n. 1 (Januar 2017).

    https://doi.org/10.1061/(asce)be.1943-5592.0000981

  28. Huang, Qindan / Dyanati, Mojtaba / Roke, David A. / Chandra, Akhilesh / Sett, Kallol (2018): Economic Feasibility Study of Self-Centering Concentrically Braced Frame Systems. In: Journal of Structural Engineering (ASCE), v. 144, n. 8 (August 2018).

    https://doi.org/10.1061/(asce)st.1943-541x.0002093

  29. Zaker Esteghamati, Mohsen / Banazadeh, Mehdi / Huang, Qindan (2018): The effect of design drift limit on the seismic performance of RC dual high-rise buildings. In: The Structural Design of Tall and Special Buildings, v. 27, n. 8 (10 Juni 2018).

    https://doi.org/10.1002/tal.1464

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