Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh
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Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh
Summary
Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh is a doctoral thesis[1].
Key Facts
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh authored layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh — author (P50): Tim Divett[2].
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's instance of is recorded as layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh — instance of (P31): doctoral thesis[3].
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's publisher is recorded as layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh — publisher (P123): OUR Archive[4].
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's language of work or name is recorded as layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh — language of work or name (P407): English[5].
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's country of origin is recorded as layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh — country of origin (P495): New Zealand[6].
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's publication date is recorded as +2014-00-00T00:00:00Z[7].
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's work available at URL is recorded as https://ourarchive.otago.ac.nz/handle/10523/4995[8].
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's Handle ID is recorded as 10523/4995[9].
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's title is recorded as Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh[10].
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's copyright holder is recorded as layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh — copyright holder (P3931): Tim Divett[11].
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's thesis submitted to is recorded as layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh — thesis submitted to (P4101): University of Otago[12].
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's on focus list of Wikimedia project is recorded as layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh — on focus list of Wikimedia project (P5008): NZThesisProject[13].
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's copyright status is recorded as layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh — copyright status (P6216): copyrighted[14].
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's thesis committee member is recorded as layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh — thesis committee member (P9161): Ross Vennell[15].
- Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's thesis committee member is recorded as layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh — thesis committee member (P9161): Craig Stevens[16].
Body
Designation and Status
Optimising design of large tidal energy arrays in channels: layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh's instance of is recorded as layout and turbine tuning for maximum power capture using large eddy simulations with adaptive mesh — instance of (P31): doctoral thesis[3].