Design and CFD Simulations of a Vortex-Induced Piezoelectric Energy Converter (VIPEC) for Underwater Environment
暂无分享,去创建一个
Baowei Song | Xinyu An | Wenlong Tian | Congcong Ma | Baowei Song | Wenlong Tian | Xinyu An | Congcong Ma
[1] Joseph R. Burns,et al. The Energy Harvesting Eel: a small subsurface ocean/river power generator , 2001 .
[2] M. M. Zdravkovich,et al. Conceptual overview of laminar and turbulent flows past smooth and rough circular cylinders , 1990 .
[3] Abdessattar Abdelkefi,et al. Piezoelectric energy harvesting from concurrent vortex-induced vibrations and base excitations , 2014 .
[4] Seung Jin Oh,et al. Development of a tree‐shaped wind power system using piezoelectric materials , 2010 .
[5] Elias Siores,et al. An investigation of energy harvesting from renewable sources with PVDF and PZT , 2011 .
[6] P. Moin,et al. NUMERICAL SIMULATION OF THE FLOW AROUND A CIRCULAR CYLINDER AT HIGH REYNOLDS NUMBER , 2003 .
[7] J. Gerrard. The mechanics of the formation region of vortices behind bluff bodies , 1966, Journal of Fluid Mechanics.
[8] Y. Andreopoulos,et al. Wake of a cylinder: a paradigm for energy harvesting with piezoelectric materials , 2010 .
[9] Shah Nitixaben Rajeshkumar,et al. VIVACE (Vortex Induced Vibration Aquatic Clean Energy). A new concept in generation of clean and renewable energy from fluid flow , 2017 .
[10] Norbert Schwesinger,et al. A Novel Hydropower Harvesting Device , 2004, 2004 International Conference on MEMS, NANO and Smart Systems (ICMENS'04).
[11] Yiannis Andreopoulos,et al. The performance of a self-excited fluidic energy harvester , 2012 .
[12] Daniel J. Inman,et al. Effect of Strain Nodes and Electrode Configuration on Piezoelectric Energy Harvesting From Cantilevered Beams , 2009 .
[13] Jung-kyu Ahn,et al. Numerical investigation of flow around circular cylinder with splitter plate , 2016 .
[14] C. J. Apelt,et al. The effects of wake splitter plates on the flow past a circular cylinder in the range 104 , 1973, Journal of Fluid Mechanics.
[15] Haecheon Choi,et al. Control of laminar vortex shedding behind a circular cylinder using splitter plates , 1996 .
[16] Kamaldev Raghavan,et al. VIVACE (Vortex Induced Vibration Aquatic Clean Energy): A New Concept in Generation of Clean and Renewable Energy From Fluid Flow , 2008 .
[17] Hod Lipson,et al. Ambient wind energy harvesting using cross-flow fluttering , 2011 .
[18] Baowei Song,et al. The mathematical modeling of a novel anchor based on vortex induced vibration , 2016, OCEANS 2016 - Shanghai.
[19] Ali Bakhshandeh Rostami,et al. Renewable energy harvesting by vortex-induced motions: Review and benchmarking of technologies , 2017 .
[20] C. J. Apelt,et al. The effects of wake splitter plates on bluff-body flow in the range 104 < R < 5 × 104. Part 2 , 1975, Journal of Fluid Mechanics.
[21] Kamaldev Raghavan,et al. The VIVACE Converter: Model Tests at High Damping and Reynolds Number Around 105 , 2009 .