Download PDF by Nikos D. Lagaros, Yiannis Tsompanakis: Intelligent computational paradigms in earthquake

By Nikos D. Lagaros, Yiannis Tsompanakis

ISBN-10: 1599040999

ISBN-13: 9781599040998

ISBN-10: 1599041006

ISBN-13: 9781599041001

ISBN-10: 1599041014

ISBN-13: 9781599041018

The large advances in computational and software program assets during the last fifteen years ended in the improvement of non-conventional info processing and simulation equipment. between those equipment man made intelligence (AI) has been pointed out as essentially the most eminent methods to the so-called clever equipment of knowledge processing that current an outstanding power for engineering purposes. clever Computational Paradigms in Earthquake Engineering includes contributions that conceal a large spectrum of vitally important real-world engineering difficulties, and discover the implementation of neural networks for the illustration of structural responses in earthquake engineering. This e-book assesses the potency of seismic layout techniques and describes the most recent findings in clever optimum regulate platforms and their functions in structural engineering. clever Computational Paradigms in Earthquake Engineering provides the appliance of studying machines, synthetic neural networks and aid vector machines as highly-efficient trend attractiveness instruments for structural harm detection. It comprises an AI-based review of bridge constructions utilizing life-cycle fee rules that considers seismic probability, and emphasizes using AI methodologies in a geotechnical earthquake engineering program.

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1999). Optimal design of H-frame transmission poles for earthquake loading. ASCE Journal of Structural Engineering, 125(11), 1299-1308. Kocer, F. , & Arora, J. S. (2002). Optimal design of latticed towers subjected to earthquake loading. ASCE Journal of Structural Engineering, 128(2), 197-204. Lagaros, N. , & Tsompanakis, Y. (2006). Structural optimization: A tool for evaluating seismic design procedures. Engineering Structures, 28(12), 1623-1633. , Burns, S. , & Wen, Y. K. (2003). Optimal seismic design of steel frame buildings based on life-cycle cost considerations.

Dajian & M. ), Proceedings, EPMESC VI (Enhancement and Promotion of Computational Methods in Engineering and Science) (Vol. 72-81). China: South China University of Technology Press. Bertero, R. , & Bertero, V. V. (2002) . Performance-based seismic engineering: the need for a reliable conceptual comprehensive approach, Earthquake Engineering and Structural Dynamics, 31, 627-652. , & Faravelli, L. (1996). Response surface methods and asymptotic approximations. In F. Casciate & J. B. ), CRC mathematical modelling series: mathematical models for structural reliability analysis (CRC Mathematical Modelling Series, pp.

Earthquake engineering: From engineering seismology to performance-based engineering. CRC Press. , & Zou, X-K. (2004). Elastic and nonlinear drift performance optimization for reinforced concrete buildings under earthquake loads. Earthquake Engineering and Structural Dynamics. 33, 929-950. Charney, F. A. (2000). Needs in the Development of a comprehensive performance based optimization process. In Proceedings of the ASCE Structures 2000 Conference, Philadelphia. Cheng, F. , & Ger, J. (2000). Multiobjective optimization of seismic structures.

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Intelligent computational paradigms in earthquake engineering by Nikos D. Lagaros, Yiannis Tsompanakis


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