Publications Library
Characterization and strength modeling of laminated bio-based composites. Bio-Based Composites for High-Performance Materials: From Strategy to Industrial Application. :336pages.
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2016. Design component and system reliability in a low-rise cold formed steel framed commercial building. Engineering Structures.
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2016. Directional effects on the reliability of non-axisymmetric support structures for offshore wind turbines under extreme wind and wave loadings. Engineering Structures. 106(106):68-79.
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2016. .
2016. Natural frequency degradation and permanent accumulated rotation for offshore wind turbine monopiles in clay. Renewable Energy. 97:319-330.
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2016. Toward performance-based evaluation for offshore wind turbine jacket support structures. Renewable Energy. 97:709–721.
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2016. Variability response functions for apparent material properties. Probabilistic Engineering Mechanics. 44(Special Issue Based on Papers Presented at the 7th International Conference on Computational Stochastic Mechanics (CSM7)):28-34.
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2016. Wind-wave prediction equations for probabilistic offshore hurricane hazard analysis. Natural Hazards. 83(1):541–562.
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2016. Characterization and probabilistic modeling of the mesostructure of parallel strand lumber. Journal of Materials in Civil Engineering.
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2015. Comparison of Cyclic P-Y Methods for Offshore Wind Turbine Monopiles Subjected to Extreme Storm Loading. ASME 2015 34th International Conference on Ocean, Offshore and Arctic Engineering. Volume 9: Ocean Renewable Energy:V009T09A060,9pages.
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2015. Foundation damping and the dynamics of offshore wind turbine monopiles. Renewable Energy. 80:724–736.
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2015. Modern Examples of Structural Art in Metals. Structures Congress 2015. :714-729.
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2015. Multivariate analysis of extreme metocean conditions for offshore wind turbines. Structural Safety. 55:60-69.
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2015. Performance Levels and Fragility for Offshore Wind Turbine Support Structures during Extreme Events. Structures Congress 2015. :1891-1902.
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2015. The Role of Damping in Offshore Wind Turbine Dynamics. North American Wind Energy Academy Conference.
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2015. Sensitivity of the dynamic response of monopile-supported offshore wind turbines to structural and foundation damping. Wind Energy. 39(6):609-627.
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2015. Soil-structure reliability of offshore wind turbine monopile foundations. Wind Energy. 18(3):483–498.
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2015. Statistical estimation of extreme loads for the design of offshore wind turbines. Wind Engineering. 39(6):629-640.
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2015. Strength, stiffness, resonance and the design of offshore wind turbine monopiles. Engineering Structures. 100:332–341.
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2015. Variability of breaking wave characteristics and impact loads on offshore wind turbines supported by monopiles. Wind Energy. 19(2):301-312.
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2015. Analysis of the probability of failure for open-grown trees during wind storms. Probabilistic Engineering Mechanics. 37:41-50.
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2014. Behavior of Laterally‐Loaded Offshore Wind Turbine Monopiles under Storm Loading Conditions. EMI 2014: Engineering Mechanics Institute Conference.
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2014. Dynamic Mudline Damping for Offshore Wind Turbine Monopiles. ASME 2014 33rd International Conference on Ocean, Offshore and Arctic Engineering. Volume 9A: Ocean Renewable Energy:pp.V09AT09A025;8pages.
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2014. Dynamic Mudline Damping for Offshore Wind Turbine Monopiles. 33rd International Conference on Ocean, Offshore and Arctic Engineering.
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2014. Generalized variability response functions for two-dimensional elasticity problems. Computer Methods in Applied Mechanics and Engineering. 272:121–137.
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2014. The Impact of Peak Spectral Period in the Design of Offshore Wind Turbines for the Extreme Sea State. Structures Congress 2014. :1684-1693.
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2014. Improving buckling response of the square steel tube by using steel foam. Structural Engineering & Mechanics . 51(6):1017-1036.
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2014. Incremental wind-wave analysis of the structural capacity of offshore wind turbine support structures under extreme loading. Engineering Structures. 79:58-69.
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2014. Loss in moment capacity of tree stems induced by decay. Trees. 28(2):517-529.
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2014. The mechanical properties and modeling of a sintered hollow sphere steel foam. Materials & Design. 54:1083-1094.
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