Title :
Research on Optimization Method for Underground Cavern Excavation
Author :
Bian, Kang ; Xiao, Ming
Author_Institution :
State Key Lab. of Water Resources, Wuhan Univ., Wuhan, China
Abstract :
Base on elasto-plastic finite element method (FEM), the excavation methods for underground caverns are researched and optimized. The plastic dissipated energy of surrounding rock is presented as a general factor to judge the rock stability. The more plastic dissipated energy is produced, the more the surrounding rock is disturbed by the excavation, the worse the stability of the rock will become. Furthermore, the volumes of cracked zone, the plastic zone and the rebound zone of rock are also important criterions to evaluate the advantages and disadvantages of different excavation methods. Afterward, the proposed method of excavation is applied in Changheba Hydropower Project. The results of numerical computation show that the excavation time of the upper part of the surge chamber will influence the whole surrounding rock stability. The proposed method provides an effective way for the optimization analysis of underground cavern excavation.
Keywords :
cracks; elastoplasticity; finite element analysis; geotechnical engineering; mechanical stability; optimisation; rocks; Changheba Hydropower Project; cracked zone volume; elasto-plastic finite element method; optimization method; plastic dissipated energy; rock plastic zone; rock rebound zone; rock stability; underground cavern excavation; Capacitive sensors; Finite element methods; Hydroelectric power generation; Laboratories; Optimization methods; Plastics; Power engineering and energy; Stability; Tensile stress; Water resources; excavation method; optimization analysis; plastic dissipated energy; underground cavern;
Conference_Titel :
Intelligent Computation Technology and Automation, 2009. ICICTA '09. Second International Conference on
Print_ISBN :
978-0-7695-3804-4
DOI :
10.1109/ICICTA.2009.532