Abstract
Underground reinforced concrete bifurcation pipe is an important part of conveyance structure. During construction, the workload of excavation and concrete pouring can be significantly decreased according to optimized pipe structure, and the engineering quality can be improved. This paper presents an optimization mathematical model of underground reinforced concrete bifurcation pipe structure according to real working status of several common pipe structures from real cases. Then, an optimization design system was developed based on Particle Swarm Optimization algorithm. Furthermore, take the bifurcation pipe of one hydropower station as an example: optimization analysis was conducted, and accuracy and stability of the optimization design system were verified successfully.
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CITATION STYLE
Su, C., Zhu, Z., Zhang, Y., & Jiang, N. (2015). Optimization design and application of underground reinforced concrete bifurcation pipe. Mathematical Problems in Engineering, 2015. https://doi.org/10.1155/2015/948584
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