HAMBUR BALIK AKUSTIK PERMUKAAN SUBSTRAT DASAR PERAIRAN MENGGUNAKAN ECHOSONDER BIM TUNGGAL

Baigo Hamuna, Lisiard Dimara, Sri Pujiyati, Nyoman Metta N Natih

Abstract


Penelitian ini bertujuan untuk menganalisis nilai hambur balik permukaan dasar perairan berupa pasir dan lumpur. Echosounder bim tunggal Simrad EK15 frekuensi 200 kHz digunakan untuk perekaman hambur balik akustik permukaan dasar perairan. Hasil penelitian ini menggambarkan nilai rata-rata hambur balik permukaan substrat perairan pasir bervariasi antara -37.48 dB sampai -36.03 dB, dan lumpur bervariasi antara -46.98 dB sampai -45.15 dB. Hal ini juga menunjukkan bahwa substrat pasir memiliki tingkat kekerasan dan ukuran butir yang lebih besar dibandingkan jenis substrat lumpur substrat

SURFACE BACKSCATTERING STRENGTH OF SEABED SUBSTRATE USING SINGLE BEAM EHOSOUNDER

ABSTRACT

The objectives of this research are to analyze the surface backscattering strength of seabed. The single beam echosounder Simrad EK15 with 200 kHz of frequencies was used for recordings of seabed acoustic backscattering. Data collection was conducted in April 29 – Mei 2 2017 which located in the Yos Sudarso Bay, Jayapura, Papua Province. Sampling substrate was taken for ground truth data using sedimen grab. The results show that average value of surface backscattering strength of sand varied between -37.48 dB up -36.03 dB, and mud varied between -46.98 dB up -45.15 dB. It shows also that sand has a high substrate roughness, hardness, and grain size larger than the type of mud substrate. In acoustic backscattering values of sand were greater than mud.

Keyword: Surface scattering, Sand, Mud, Single beam echosounder,


References


Anderson, J. T., Holliday, D. V., Kloser, R., Reid, D. G., & Simard, Y. (2008). Acoustic seabed classification: current practice and future directions. ICES Journal of Marine Science, 65, 1004-1011.

Bemba, J. (2011). Identifikasi dan klasifikasi lifeform karang menggunakan metode akustik. Sekolah Pasca Sarjana, Institut Pertanian Bogor. Bogor.

Boulton, B., & Wyness, R. (2001). Annual Report: Sangachal Seabed Mapping Survey. London: BP.

Chakraborty, B., Mahale, V., Navelkar, G., Rao, B. R., Prabhudesai, R. G., Ingole, B., & Janakiraman, G. (2007). Acoustic characterization of seafloor habitats on the western continental shelf of India. ICES Journal of Marine Science, 64, 551-558

Hamilton, L. J. (2001). Acoustics Seabed Classification System. Fishermans Bend, Victoria (AU): DSTO Aeronautical and Maritime Research Laboratory.

Hamuna, B., Pujiyati, S., & Hestirianoto, T. (2014). Karakterisasi pantulan akustik karang menggunakan echosounder single beam. Jurnal Integrasi, 6(2), 129-133.

Johannesson, K. A., & Mitson, R. B. (1983). Fisheries Acoustic A Practical Manual for Acoustic Biomass Estimation. Roma: FAO Fisheries Technical Paper.

Manik, H. M., Furusawa, M., & Amakasu, K. (2006). Measurement of sea bottom surface backscattering strength by quantitative echosounder. Fisheries Science, 72, 503-512.

Manik, H. M. (2012). Seabed identification and characterization using sonar. Advances in acoustics and vibration. Hindawi Publishing Corporation. Volume 2012, Article ID 532458, 5 pages.

Ningsih, E. N., Supriyadi, F., & Nurdawati, S. (2013). Pengukuran dan analisis nilai hambur balik akustik untuk klasifikasi dasar perairan Delta Mahakam. Jurnal Penelitian Perikanan Indonesia, 19(3), 139-146.

Penrose, J. D, Siwabessy, P. J. W., Gavrilov, A., Parnum, I., Hamilton, L. J., Bickers, A., Brooke, B., Ryan, D. A., & Kennedy, P. (2005). Acoustics Techniques for Seabed Classification. Technical Report 32, September 2005. Cooperative Research Centre for Coastal Zone Estuary and Waterway Management.

Preston, J. M, Rosenberger, A., & Collins, W. T. (2000). Bottom classification in very shallow water. In OCEANS 2000 MTS/IEEE Conference and Exhibition (pp. 1563-1567).

Pujiyati, S., Hartati, S., & Priyono, W. (2010). Efek ukuran butiran, kekasaran, dan kekerasan dasar perairan terhadap nilai hambur balik hasil deteksi hydroakustik.

Jurnal Ilmu dan Teknologi Kelautan Tropis, 2(1), 59-67.

Siwabessy, P. J. W. (2001). An investigation of the relationship between seabed type and benthic and bentho-pelagic biota using acoustic techniques. The Curtin University of Technology, Australia.

Urick, R. J. (1983). Principles of Underwater Sound. 3rd edition. New York (US): McGraw-Hill Publishing.




DOI: https://doi.org/10.21107/jk.v11i1.2892

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