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The FloWave TT ocean energy research facil … The FloWave TT ocean energy research facility is designed to test physical scale models of marine renewable energy devices, in a combined wave and current environment. The facility is located at The University of Edinburgh, King's Buildings campus, on Max Born Crescent. It comprises a 25-metre (82 ft) diameter circular tank, with 168 active-absorbing wave makers around the circumference, and 28 pumps arranged beneath the raisable floor. These allow the creation of multi-directional random waves with current in any direction across the 15-metre (49 ft) diameter, 2-metre (6.6 ft) deep test area. The facility is optimised for approximately 1/10th to 1/40th scale model tests, with scale waves approximately 14-metre (46 ft) high and with a current of 7 knots. Construction of the facility started late in 2010, and was completed in autumn 2013. The opening was on 5 June 2014, with the Energy Minister Amber Rudd officially opening the facility on 6 August 2014. FloWave TT is a wholly owned subsidiary of the university, and the £10M construction cost of the facility was primarily funded by Engineering and Physical Sciences Research Council (EPSRC).hysical Sciences Research Council (EPSRC).
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The FloWave TT ocean energy research facil … The FloWave TT ocean energy research facility is designed to test physical scale models of marine renewable energy devices, in a combined wave and current environment. The facility is located at The University of Edinburgh, King's Buildings campus, on Max Born Crescent. It comprises a 25-metre (82 ft) diameter circular tank, with 168 active-absorbing wave makers around the circumference, and 28 pumps arranged beneath the raisable floor. These allow the creation of multi-directional random waves with current in any direction across the 15-metre (49 ft) diameter, 2-metre (6.6 ft) deep test area. The facility is optimised for approximately 1/10th to 1/40th scale model tests, with scale waves approximately 14-metre (46 ft) high and with a current of 7 knots.46 ft) high and with a current of 7 knots.
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