A HYBRID SIMULATED ANNEALING, PARTICLE SWARM AND ANT COLONY OPTIMIZATION FOR DESIGN OF DOUBLE CURVED DAMS

Abstract:
Shape optimization of a double-curved dam is formulated using control points for interpolation functions. Every design vector is decoded into the integrated water-dam-foundation rock model. An enhanced algorithm is proposed by hybridizing particle swarm algorithm with ant colony optimization and simulated annealing. The best experiences of the search agents are indirectly shared via pheromone trail deposited on a bi-partite characteristic graph. Such a stochastic search is further tuned by Boltzmann functions in simulated annealing. The proposed method earned the first rank in comparison with six well-known meta‑heuristic algorithms in solving benchmark test functions. It captured the optimal shape design of Morrow Point dam, as a widely addressed case-study, by 21% reduced concrete volume with respect to the common USBR design practice and 16% better than the particle swarm optimizer. Such an optimal design was also superior to the others in stress redistribution for better performance of the dam system.
Language:
English
Published:
International Journal of Optimization in Civil Engineering, Volume:13 Issue: 4, Autumn 2023
Pages:
413 to 438
https://magiran.com/p2609174  
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