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Find Out Whats GoinG On in LiftWEC
Here you can find out the very latest news and updates from the LiftWEC Project!
D5.2 Validated numerical model with real-time computational capabilities
D5.2 Validated numerical model with real-time computational capabilities Download Deliverable D5.2 This deliverable is associated with Task 5.2 and is in the form of a
D4.3 Open access experimental data from 2D scale model
D4.3 Open access experimental data from 2D scale model Download Deliverable D4.3 The experimental test campaign of a two-dimensional model of the LiftWEC concept was
D4.1 Design of the 2D scale model
D4.1 Design of the 2D scale model Download Deliverable D4.1 Experimental testing of a two-dimensional LiftWEC concept is necessary for the validation of numerical
D3.1 Uncoupled Model of LiftWEC for preliminary concept assessment
D3.1 Uncoupled Model of LiftWEC for preliminary concept assessment Download Deliverable D3.1 The objective of this document is to present the architecture of the global
D2.7 Report on Synthesis of Design Knowledge
D2.7 Report on Synthesis of Design Knowledge Download Deliverable D2.7 This document constitutes Deliverable ‘D2.7 Report on Synthesis of Design Knowledge’ of the LiftWEC project.
D2.8 Specification of Baseline Configurations
D2.8 Specification of Baseline Configurations Download Deliverable D2.8 This document constitutes Deliverable ‘D2.8 Specification of the Baseline Configurations’ of the LiftWEC project. LiftWEC is a
Lamont-Kane, P., Folley, M., Frost, C. & Whittaker, T. (2021) – Preliminary Investigations into the Hydrodynamic Performance of Lift Based WECs
Lamont-Kane, P., Folley, M., Frost C. & Whittaker, T. (2021) – Preliminary Investigations into the Hydrodynamic Performance of Lift Based WECs The LiftWEC project has
Folley, M. & Lamont-Kane, P. (2021) – Optimum wave regime for lift-based wave energy converters
Folley, M. & Lamont-Kane, P. (2021) – Optimum wave regime for lift-based wave energy converters The LiftWEC project has published a new peer-reviewed research article!
Ermakov, A. & Ringwood, J. (2021) – Development of an analytical model for a cyclorotor wave energy device
Ermakov, A. & Ringwood, J. (2021) – Development of an analytical model for a cyclorotor wave energy device The LiftWEC project has published a new
Arredondo-Galeana, A., Shi, W., Olbert, G., Scharf, M., Ermakov, A., Ringwood, J. & Brennan, F. (2021) – A methodology for the structural design of LiftWEC: A wave-bladed cyclorotor
Arredondo-Galeana, A., Shi, W., Olbert, G., Scharf, M., Ermakov, A., Ringwood, J. & Brennan, F. (2021) – A methodology for the structural design of LiftWEC:
Chozas, J., Tetu, A. & Arredondo-Galeana, A. (2021) – A Parametric Cost Model for the Initial Techno-Economic Assessment of Lift-Force Based Wave Energy Converters
Chozas, J., Tetu , A. & Arredondo-Galeana, A. (2021) – A Parametric Cost Model for the Initial Techno-Economic Assessment of Lift-Force Based Wave Energy Converters
LiftWEC Newsletter 02 – June 2021
LiftWEC Newsletter 02 – June 2021 LiftWEC Newsletter 02 – June 2021 Welcome to the second LiftWEC project newsletter! This newsletter gives a short introduction