A case study on piezoelectric energy harvesting with using vortex generator plate modeling for fluids
Author:
Publisher
Elsevier BV
Subject
Renewable Energy, Sustainability and the Environment
Reference33 articles.
1. A versatile and fully instrumented test station for piezoelectric energy harvesters;Batra;Measurement,2018
2. Vibration energy harvesting with a clamped piezoelectric circular diaphragm;Chen;Ceram. Int.,2012
3. An efficient piezoelectric energy harvester with frequency self-tuning;Cheng;J. Sound Vib.,2017
4. Renewable energy and sustainable futures;Elliott;Futures,2000
5. Exploring piezoelectric for sound wave as energy harvester;Fang;Energy Procedia,2017
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