In the empirical methods for reinforcement design of underground excavations, an even distribution of rock bolts is generally recommended. This work proves that this design is not necessarily optimal and shows how the state-of-the-art reinforcement design could be improved through topology optimisation techniques. The Bidirectional Evolutionary Structural Optimisation (BESO) method has been extended to consider nonlinear material behaviour. An elastic perfectly-plastic Mohr-Coulomb model is utilised for both original rock and reinforced rock. External work along the tunnel wall is considered as the objective function. Various in situ stress conditions with different horizontal stress ratios and different geostatic stress magnitudes are inve...
In underground excavations, the shape of the opening is of main concern due to its impact on the str...
This paper presents topology optimization of geometrically and materially nonlinear structures under...
Novel and efficient structural and material designs can be realized by topology optimization that is...
In the empirical methods for reinforcement design of underground excavations, an even distribution o...
In excavation design, optimizing the reinforcement and finding the optimal shape ofthe opening are t...
Finding an optimum reinforcement layout for underground excavation can result in a safer and more ec...
Finding an optimum reinforcement layout for underground excavation can result in a safer and more ec...
© 2015 American Society of Civil Engineers. Finding an optimum reinforcement layout for underground ...
The shape of an underground opening is a major factor influencing the stability of the underground ex...
Designing a rock bolt reinforcement system for underground excavation involves determining bolt patt...
Designing a rock bolt reinforcement system for underground excavation involves determining bolt patt...
This paper presents topology optimization of geometrically and materially nonlinear structures using...
Underground excavation in either soil or rock induces complex stress redistribution around the openi...
This thesis presents a method for structural optimisation called bi-directional\ud evolutionary stru...
Innovative structural des ign can be realised by topology optimisation that is capable of maximizing...
In underground excavations, the shape of the opening is of main concern due to its impact on the str...
This paper presents topology optimization of geometrically and materially nonlinear structures under...
Novel and efficient structural and material designs can be realized by topology optimization that is...
In the empirical methods for reinforcement design of underground excavations, an even distribution o...
In excavation design, optimizing the reinforcement and finding the optimal shape ofthe opening are t...
Finding an optimum reinforcement layout for underground excavation can result in a safer and more ec...
Finding an optimum reinforcement layout for underground excavation can result in a safer and more ec...
© 2015 American Society of Civil Engineers. Finding an optimum reinforcement layout for underground ...
The shape of an underground opening is a major factor influencing the stability of the underground ex...
Designing a rock bolt reinforcement system for underground excavation involves determining bolt patt...
Designing a rock bolt reinforcement system for underground excavation involves determining bolt patt...
This paper presents topology optimization of geometrically and materially nonlinear structures using...
Underground excavation in either soil or rock induces complex stress redistribution around the openi...
This thesis presents a method for structural optimisation called bi-directional\ud evolutionary stru...
Innovative structural des ign can be realised by topology optimisation that is capable of maximizing...
In underground excavations, the shape of the opening is of main concern due to its impact on the str...
This paper presents topology optimization of geometrically and materially nonlinear structures under...
Novel and efficient structural and material designs can be realized by topology optimization that is...