Researchers听have听officially reopened their multi-million-dollar Boundary Layer Wind Tunnel (BLWT) facility in the School of听Civil Engineering.听
Wind tunnel testing and analysis provides planners with solutions to complex wind engineering problems at the project design stage
Qatar鈥檚 Doha Convention Centre, New York鈥檚 Freedom Tower, Kuala Lumpur鈥檚 Petronas Towers, and Sydney鈥檚 International Tower 1 at Barangaroo (currently under construction) were all tested for their feasibility and safety in atmospheric testing wind tunnels according to engineering researchers who have officially reopened their Boundary Layer Wind Tunnel (BLWT) at the University of Sydney.
Now a multi-million dollar research facility, the refurbished BLWT housed in the is capable of generating wind velocities of up to 100 kmph and testing large-scale models in the test section measuring 2.5 metre wide and 2 metre tall.
The boundary layer wind tunnel is designed to simulate the layer of wind closest to Earth鈥檚 surface - approximately the first few hundred metres - known as the atmospheric surface layer.
, Director, Centre for Wind, Waves and Water explains:
鈥淗ow a structure will respond to variant wind forces within this layer is vital to the planning and building of safe buildings.
鈥淲e can build scale models of urban structures in the refurbished BLWT and subject them to wind gusts specific to their local region to gather data for research and testing of a structure鈥檚 response to wind loads.
鈥淏y analysing wind tunnel data researchers can reveal the dynamics and properties of wind-structure interaction, helping to predict how buildings will behave under fluctuating wind conditions.
If deemed unsafe designers can modify their plans.鈥
says:
鈥淐ivil engineering researchers have contributed significantly to the understanding of wind engineering and have carried out innovative studies on cross-disciplinary engineering problems involving fluid mechanics.
鈥淲ind tunnel testing and analysis provides planners with solutions to complex wind engineering problems at the project design stage,鈥 said Professor Ivison.
鈥淔or example, wind tunnel experiments can advise on optimal placement of wind turbines within a proposed site by performing measurements over the site鈥檚 scaled topology. Such information not only provides critical insight into the design needs of the structures that can best withstand local wind conditions but also guides estimates of energy output from the turbines.鈥
鈥淥ne of only a handful of wind tunnels in Australia, the BLWT provides a great opportunity for University researchers to work in collaboration with industry partners and wind researchers across Australia on projects including the study of wind turbines, solar farms and atmospheric dispersion,鈥 Professor Ivison says.
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For a week this October, we鈥檒l be bringing together some of our brightest minds with industry and community partners to collaborate on how research and innovation can help us overcome some of the greatest health challenges facing our planet.
Working with Professor Yasuyuki Todo (Waseda University) and Dr Hiroyasu Inoue (Hyogo University), Dr Petr Matous from the University of Sydney鈥檚 Faculty of Engineering and IT found that supply chains can work as important channels for the flow of information, innovation, and productivity between individual firms.
高清福利片ers are involved in a range of public events to celebrate National Science Week from 11 to 21 August.