The power available to tidal turbines in an open channel flow

Linear momentum actuator disc theory (LMADT) is extended to address the power available to a tidal turbine array spanning the cross-section of an open channel flow. A generalised formulation is presented which relaxes constraints in previous models on the Froude number of the flow and geometry of th...

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Hlavní autoři: Houlsby, G, Vogel, C
Médium: Journal article
Vydáno: Thomas Telford (ICE Publishing) 2016
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author Houlsby, G
Vogel, C
author_facet Houlsby, G
Vogel, C
author_sort Houlsby, G
collection OXFORD
description Linear momentum actuator disc theory (LMADT) is extended to address the power available to a tidal turbine array spanning the cross-section of an open channel flow. A generalised formulation is presented which relaxes constraints in previous models on the Froude number of the flow and geometry of the turbine array, and also considers the effects of far-wake mixing on the overall power removed from the flow. In the limiting case of no free surface deformation, the rigid-lid model of Garret and Cummins (2007) is recovered. Blockage, the ratio of turbine frontal area to the cross-sectional area of the surrounding flow passage, has the greatest effect on available power, with the peak power coefficient increasing by 55% from 0.60 to 0.93 as the blockage ratio increases from 0.05 to 0.20. A further 3% increase in peak power coefficient is achieved as the Froude number increases from 0.05 to 0.20. The efficiency of energy extraction may be determined relative to the total power extracted from the flow, comprised of the power available to the turbines, and the power dissipated in wake mixing. Higher blockage turbines operating at low thrust coefficients are shown to be more efficient than lower blockage turbines.
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spelling oxford-uuid:5f4f0e94-0f8e-42e4-a28c-74e4c88c72a52022-03-26T17:46:06ZThe power available to tidal turbines in an open channel flowJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:5f4f0e94-0f8e-42e4-a28c-74e4c88c72a5Symplectic Elements at OxfordThomas Telford (ICE Publishing)2016Houlsby, GVogel, CLinear momentum actuator disc theory (LMADT) is extended to address the power available to a tidal turbine array spanning the cross-section of an open channel flow. A generalised formulation is presented which relaxes constraints in previous models on the Froude number of the flow and geometry of the turbine array, and also considers the effects of far-wake mixing on the overall power removed from the flow. In the limiting case of no free surface deformation, the rigid-lid model of Garret and Cummins (2007) is recovered. Blockage, the ratio of turbine frontal area to the cross-sectional area of the surrounding flow passage, has the greatest effect on available power, with the peak power coefficient increasing by 55% from 0.60 to 0.93 as the blockage ratio increases from 0.05 to 0.20. A further 3% increase in peak power coefficient is achieved as the Froude number increases from 0.05 to 0.20. The efficiency of energy extraction may be determined relative to the total power extracted from the flow, comprised of the power available to the turbines, and the power dissipated in wake mixing. Higher blockage turbines operating at low thrust coefficients are shown to be more efficient than lower blockage turbines.
spellingShingle Houlsby, G
Vogel, C
The power available to tidal turbines in an open channel flow
title The power available to tidal turbines in an open channel flow
title_full The power available to tidal turbines in an open channel flow
title_fullStr The power available to tidal turbines in an open channel flow
title_full_unstemmed The power available to tidal turbines in an open channel flow
title_short The power available to tidal turbines in an open channel flow
title_sort power available to tidal turbines in an open channel flow
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