Construction News
19/12/2022
hyperTunnel Signs MoU With University Of Birmingham
hyperTunnel and the University of Birmingham have signed a Memorandum of Understanding (MoU) to work together to progress completely new methods of underground construction, enlargement, monitoring and repair.
New automated construction methods being developed by hyperTunnel are designed to benefit the construction sector and society as a whole by reducing carbon footprint and building tunnels more than 10 times faster and at half the cost of conventional methods.
At the heart of the concept is the use of robots to 3D-print the shell of the underground structure, according to a digital twin. Using this method, the construction material is deployed directly into the ground.
Initially focusing on autonomous tunnelling technologies, imaging and digital simulations, the partnership between the two organisations is likely to include activities such as collaborative research, technology projects, joint publications, secondments, internships and education programmes.
Key to the MoU is the University of Birmingham's National Buried Infrastructure Facility (NBIF), which is part of the UK Collaboratorium for Research on Infrastructure and Cities (UKCRIC). UKCRIC is designed to stimulate research activities in the fields of infrastructure and cities through close collaboration between academia, industry and government. NBIF is currently leading research into areas such as soil/structure interaction, digital twinning, tunnelling and quantum-technology sensing.
hyperTunnel and the University of Birmingham will also engage in joint activities at the University’s new campus in Dubai, which includes the development of a multi-million pound Tunnelling Centre of Excellence.
New automated construction methods being developed by hyperTunnel are designed to benefit the construction sector and society as a whole by reducing carbon footprint and building tunnels more than 10 times faster and at half the cost of conventional methods.
At the heart of the concept is the use of robots to 3D-print the shell of the underground structure, according to a digital twin. Using this method, the construction material is deployed directly into the ground.
Initially focusing on autonomous tunnelling technologies, imaging and digital simulations, the partnership between the two organisations is likely to include activities such as collaborative research, technology projects, joint publications, secondments, internships and education programmes.
Key to the MoU is the University of Birmingham's National Buried Infrastructure Facility (NBIF), which is part of the UK Collaboratorium for Research on Infrastructure and Cities (UKCRIC). UKCRIC is designed to stimulate research activities in the fields of infrastructure and cities through close collaboration between academia, industry and government. NBIF is currently leading research into areas such as soil/structure interaction, digital twinning, tunnelling and quantum-technology sensing.
hyperTunnel and the University of Birmingham will also engage in joint activities at the University’s new campus in Dubai, which includes the development of a multi-million pound Tunnelling Centre of Excellence.
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