MULTIPLE ATTENUATION USING COMBINATION OF SURFACE RELATED MULTIPLE ELIMINATION AND RADON TRANSFORM METHODS OF SERAM SEA

Hanita Nur Fitria, Henry Munandar Manik, Tumpal Bernhard Nainggolan

Abstract

Indonesia is a maritime country has a wealth of marine resources, in addition to abundant fishery products there are oil and gas in seabed rocks. Oil and gas exploration in Indonesia is still widely carried out today. One of the methods used in the search is seismic reflection method. The seismic reflection method utilizes sound wave generated by source. The waves will propagate into the earth's bedrock then are reflected back and received by the receiver. The 2D marine seismic data used in this study are raw data from acquisition in deepwater of Seram Sea, West Papua. Raw data from acquisition are still mixed with multiples due to different acoustic impedance of earth subsurface layers. This causes misinterpretation due to apparent reflector. Therefore, proper multiple attenuation methods are needed to minimize noise. This study applies combination of Surface Related Multiple Attenuation (SRME) and Radon transform to produce seismic cross section that are free of multiples. The obtained results shows the combination of SRME and Radon transform are effective to reduce long period multiples in near offset, middle offset and far offset. These combinations also relieve some insignificant primary reflectors due to mixed signal and multiple in the same moveout domain. The combination of these two methods is good for eliminating multiple types of water bottom multiple in deepwater seismic data, and improve the quality of the signal to noise ratio.

References

Dragoset, B., E. Verschuur, I. Moore, & R. Bisley. 2010. A perpective on 3D surface related multiple elimination. Geophysics, 75(5): 245-261. https://doi.org/10.1190/1.3475413
Ibrahim, A. & M.D. Sacchi. 2013. Simultaneous source separation using a robust radon transform. SEG Technical Program Expanded Abstracts, 79(1): v1-v11. https://doi.org/10.1190/segam2013-0447.1
Maricci, N.D. & A. Setyawan. 2015. Aplikasi metode transformasi radon untuk atenuasi multipel pada pengolahan data 2D laut di Perairan “X”. J. of Youngster Physics, 4(4): 279-284. https://adoc.pub/aplikasi-metode-transformasi-radon-untuk-atenuasi-multipel-p.html
Murdiman, I. & E.L. Namigo. 2016. Analisis kecepatan dengan metode tomografi residual moveout. J. Fisika Unand, 5(4): 384-389. https://doi.org/10.25077/jfu.5.4.384-389.2016
Nainggolan, T.B., S.M. Rasidin, & I. Setiadi. 2019. Combined multiple attenuation methods and geological interpretation: Seram Sea Case Study 2D Marine Seismic Data. Bulletin of the Marine Geology, 34(1): 17-28. https://doi.org/10.32693/bomg.34.1.2019.622
Pertiwi, R.N., T.J. Puspasari, E.L. Namigo, & D. Pujiastuti. 2018. Identifikasi gas hidrat pada Cekungan Simeuleu di Lintasan BGR-135 Menggunakan Analisis AVO (Amplitude Versus Offset). J. Fisika Unand, 7(4): 305-311. https://doi.org/10.25077/jfu.7.4.305-311.2018
Pesma, R.A., M.P. Erlangga, I.A. Putri, & R.M Antosla. 2020. Prediksi lapisan akuifer dengan menggunakan metode seismik refraksi di Desa Jatimulyo, Kecamatan Jati Agung, Lampung Selatan. J. Geofisika Eksplorasi, 6(2): 91-100. https://doi.org/10.23960/jge.v6i2.66
Remiandayu, S. & E.L. Namigo. 2016. Aplikasi metode surface related multiple elimination (srme) dan radon parabolik pada data 2D Bryant Canyon Lepas Pantai Lousiana, Texas. J. Fisika Unand, 5(3): 261-267. https://doi.org/10.25077/jfu.5.3.261-267.2016
Saputra, A. & E.L. Namigo. 2015. Atenuasi Multiple pada Data Seismik 2D Cekungan Bryant Canyon Lepas Pantai Teluk Louisiana, Texas. J. Fisika Unand, 4(4): 383-390. https://doi.org/10.25077/jfu.4.4.%25p.2015
Sidiq, A.P., H.M. Henry, & T.B. Nainggolan. 2019. Studi komparasi metode migrasi seismik dalam mengkarakterisasi reservoir migas di Blok Kengean, Laut Bali Menggunakan Inversi Impedansi Akustik Berbasis Model. J. Ilmu dan Teknologi Kelautan Tropis, 11(2): 205-219. https://doi.org/10.29244/jitkt.v11i1.23028
Verschuur, D.J. & A.J. Berkhout. 1992. Surface-related multiple elimination: Practical Aspects. SEG Technical Program Expanded Abstracts, 1100-1103. https://doi.org/10.1190/1.1821919
Yilmaz, Ö. 2001. Chapter 6. Noise and Multiple Attenuation. In: Seismic Data Analysis. Society of Exploration Geophysicists. 837-1000 pp. https://doi.org/10.1190/1.9781560801580
Yuza, N.H., T.B. Nainggolan, & H.M. Manik. 2020. Multiple attenuation methods in short-offset 2D marine seismic data: a case study in Cendrawasih Bay. IOP Conference Series: Earth and Environmental Science, 429: 1-10. https://doi.org/10.1088/1755-1315/429/1/012031

Authors

Hanita Nur Fitria
Henry Munandar Manik
henrymanik@apps.ipb.ac.id (Primary Contact)
Tumpal Bernhard Nainggolan
Nur FitriaH., ManikH. M., & NainggolanT. B. (2021). MULTIPLE ATTENUATION USING COMBINATION OF SURFACE RELATED MULTIPLE ELIMINATION AND RADON TRANSFORM METHODS OF SERAM SEA. Jurnal Ilmu Dan Teknologi Kelautan Tropis, 13(1), 173-183. https://doi.org/10.29244/jitkt.v13i1.32890

Article Details