Investigasi Kemampuan Pembangkit Listrik Tenaga Ombak Laut Mikro Berbasis PVDF

Authors

  • Aditya Nugraha Politeknik Negeri Subang
  • Azhis Sholeh Buchori Politeknik Negeri Subang

DOI:

https://doi.org/10.33379/gtech.v6i2.1757

Keywords:

PVDF, energy harvesting, microhydro

Abstract

Renewable energy is very important to continue to be developed when electricity demand continues to increase. Therefore, it is necessary to develop various methods that can be used to generate electricity. One of the methods that can be used to generate electricity is to use PVDF material which has piezoelectric properties. With this piezoelectric property, mechanical energy can be converted into electrical energy. Mechanical energy which is converted into electrical energy in this study comes from ocean waves. The electric current produced by the PVDF is rectified with a current rectifier. Voltage and current values ​​are measured by current and voltage sensors which are then controlled by Arduino. The results of voltage and current measurements are stored in a micro SD. The result of this research is that PVDF can convert the mechanical energy of waves into electrical energy. This can be seen from the magnitude of the resulting voltage and current will rise if there is a crash of sea waves. The average power generated reaches 2.29 mW.

References

Mudassir, R. (2021). Bauran Energi, Porsi Pembangkit EBT Tembus 12,77 Persen. https://ekonomi.bisnis.com/read/20211021/44/1456788/bauran-energi-porsi-pembangkit-ebt-tembus-1277-persen

Murah, D. A. N., & Soepomo, J. P. (2014). “SAW-GEN” Sebagai Sumber Energi Listrik Ramah Lingkungan Dan Murah. Prosiding SNST Ke-5, 13–17.

Prasetya Kurniawan, L., Sarwito, S., & Ranu Kusuma, I. (2014). Studi Perancangan Prototype Pembangkit Listrik Tenaga Gelombang Laut Tipe Salter Duck. Jurnal Teknik Pomits, 3(1), 76–79.

Rahmatullah, R., Muhammadiyah, U., Utara, S., Umurani, K., Muhammadiyah, U., Utara, S., Nasution, A. R., Muhammadiyah, U., & Utara, S. (2022). Alternatif Energi Baru Terbarukan (EBT) Dalam Peningkatan Kota Medan Menjadi Kota Terang. Jurnal Pembangunan Perkotaan p-ISSN, 2338, 6754..

Sukumaran, S., Chatbouri, S., Rouxel, D., Tisserand, E., Thiebaud, F., & Ben Zineb, T. (2021). Recent advances in flexible PVDF based piezoelectric polymer devices for energy harvesting applications. Journal of Intelligent Material Systems and Structures, 32(7), 746–780. https://doi.org/10.1177/1045389X20966058

Ting, Y., Suprapto, Nugraha, A., Chiu, C. W., & Gunawan, H. (2016). Design and characterization of one-layer PVDF thin film for a 3D force sensor. Sensors and Actuators, A: Physical, 250, 129–137. https://doi.org/10.1016/j.sna.2016.09.025

Vatansever, D., Hadimani, R. L., Shah, T., & Siores, E. (2011). An investigation of energy harvesting from renewable sources with PVDF and PZT. Smart Materials and Structures, 20(5). https://doi.org/10.1088/0964-1726/20/5/055019

Viet, N. V, Wu, N., & Wang, Q. (2017). A review on energy harvesting from ocean waves by piezoelectric technology. Journal of Modeling in Mechanics and Materials, 1(2). https://doi.org/10.1515/jmmm-2016-0161

Wintazon, Setyo Pramudiyanto, A., & Nur Hidayat, E. (2019). Pembangkit Listrik Tenaga Ombak Laut Atau Angin Laut dengan Pengendali Gravitasi Bumi. Majalah Ilmiah Gema Maritim, 21(1), 1–8. https://doi.org/10.37612/gema-maritim.v21i1.1

Wong, C. H., & Dahari, Z. (2017). Development of Vibration-Based Piezoelectric Raindrop Energy Harvesting System. Journal of Electronic Materials, 46(3), 1869–1882. https://doi.org/10.1007/s11664-016-5252-4

Published

2022-10-09

How to Cite

Investigasi Kemampuan Pembangkit Listrik Tenaga Ombak Laut Mikro Berbasis PVDF . (2022). G-Tech: Jurnal Teknologi Terapan, 6(2), 342-349. https://doi.org/10.33379/gtech.v6i2.1757

Most read articles by the same author(s)