Rancang Bangun Alat Ukur Tekanan Hidrostatis dan Kedalaman Perairan Berbasis Sensor Serat Optik

Authors

  • M Fachri Yunus Departemen Fisika, Universitas Andalas
  • Harmadi Harmadi Departemen Fisika, Universitas Andalas

DOI:

https://doi.org/10.25077/jfu.13.5.718-724.2024

Keywords:

water depth, sensor, optical fiber, hydrostatic pressure

Abstract

The design of hydrostatic pressure and water depth measuring instrument based on optical fiber sensor using intrinsic method has been carried out. The design of this hydrostatic pressure and water depth measuring instrument consists of fiber optic sensors which include a light source in the form of a 5V diode laser, FD-620-10 optical fiber as a light transmission medium and OPT101 photodetector. Arduino Uno R3 board as a data processor, and I2C LCD as a viewer of measurement results. Characterization of the fiber optic sensor is done by varying the bending based on the number of serrations that cause differences in output voltage on the fiber optic sensor. Optimal results were obtained when the serrations amounted to 5 with a sensitivity value of -0.0863 V/kPa. The maximum hydrostatic pressure that can be measured is at a water depth of 1.5 m. The measurement results of hydrostatic pressure and water depth obtained with the designed tool against the theory and comparison tool obtained a percentage error of 4.42% and 4.32%, respectively

References

Arto, R. S., Prakoso, L. Y., & Sianturi, D. (2021). Strategi Pertahanan Laut Indonesia dalam Perspektif Maritim Menghadapi Globalisasi. Jurnal Strategi Pertahanan Laut, 6(3), 65-86.

Budiati, R., Pauzi, G. A., & Warsito, W. (2016). Analisis Pengaruh Tekanan pada Serat Optik Terhadap Sistem Transmisi Data berbasis Mikrokontroler ATMega32 Dengan Akuisisi Data Menggunakan Matlab. Jurnal Teori Dan Aplikasi Fisika, 3(2), 107-114. https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/109

Hendri, M. H. (2017). Estimasi Kedalaman Perairan Dangkal Menggunakan Data Citra Satelit Landsat 8. Physics Student Journal Universitas Brawijaya, 4(2), 54-57.

Kampai, G., & Harmadi, H. (2020). Rancang Bangun Alat Pendeteksi Kelebihan Beban Kendaraan Menggunakan Sensor Serat Optik dan Transceiver nRF24L01+. Jurnal Fisika Unand, 9(1), 18. https://doi.org/10.25077/jfu.9.1.1-8.2020

Kasli, E., & Aminullah, A. (2016). Pengaruh massa jenis benda terhadap tekanan hidrostatis. Jurnal Pendidikan Geosfer, 1(1), 16-19. https://jurnal.usk.ac.id/JPG/article/view/17424

Kusuma, C. P. M., Boesono, H., & Fitri, A. D. P. (2014). Analisis Hasil Tangkapan Ikan Teri (Stolephorus sp.) dengan Alat Tangkap Bagan Perahu Berdasarkan Perbedaan Kedalaman di Perairan Morodemak. Journal of Fisheries Resources Utilization Management and Technology, 3(4), 102–110. https://ejournal3.undip.ac.id/index.php/jfrumt/article/view/7328

Mahmudah, N. (2022). Illegal Fishing: Pertanggungjawaban Pidana Korporasi di Wilayah Perairan Indonesia. Sinar Grafika.

Marasabessy, I., Fahrudin, A., Imran, Z., & Agus, S. B. (2018). Strategi Pengelolaan Berkelanjutan Pesisir dan Laut Pulau Nusa Manu dan Pulau Nusa Leun di Kabupaten Maluku Tengah. Journal of Regional and Rural Development Planning, 2(1), 11–22. https://doi.org/10.29244/jp2wd.2018.2.1.11-22

Rachmathulloh, M. I. (2021). Studi Pustaka: Dinamika Catch Per Unit Effort Tuna Sirip Kuning (Thunnus albacares) Terkait dengan Suhu Permukaan Laut dan Klorofil-A di Perairan WPP NRI 573. JFMR (Journal of Fisheries and Marine Research), 3(1), 6-10.

Sumarto, S., & Koneri, R. (2016). Ekologi Hewan. CV. Patra Media Gravindo.

Syefriana, C. (2020). Pembuatan Alat Ukur Kedalaman Air Menggunakan Sensor Sonar (An Instrument to Measure The Water Depth Using a Sonar Sensor). Pillar of Physics, 13(1), 51-58. http://dx.doi.org/10.24036/7981171074

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Published

2024-09-02

How to Cite

Yunus, M. F., & Harmadi, H. (2024). Rancang Bangun Alat Ukur Tekanan Hidrostatis dan Kedalaman Perairan Berbasis Sensor Serat Optik . Jurnal Fisika Unand, 13(5), 718–724. https://doi.org/10.25077/jfu.13.5.718-724.2024

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