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The AAPG/Datapages Combined Publications Database

Indonesian Petroleum Association

Abstract


IPA-AAPG Deepwater and Frontier Symposium, 2004
Pages 51-58

Application of Inverse-Previous HitQNext Hit Filter and Deconvolution to Improve Seismic Data Previous HitQualityNext Hit in the Deep Section

Deddy F. Djanawir, Frans Langitan

Abstract

Earth attenuation is one of the factors that lower seismic data Previous HitqualityNext Hit. Various inverse filtering methods have been developed to compensate for this phenomenon; among these are deconvolution and an inverse Previous HitQNext Hit filter. The objective of the study is to investigate the possibility of seismic data Previous HitqualityNext Hit improvement in the deep section by applying deconvolution and inverse Previous HitQNext Hit filtering on 2D seismic data.

The seismic data that are used in the study have a problem with resolution. Frequency components are very limited in the deep section, 10-15 Hz over an 1800-2400 ms time window. The application of deconvolution and inverse Previous HitQNext Hit filtering improves the frequency component slightly in the deep section, and the application of both methods yields interesting results.

Deconvolution improved the signal energy and intensively suppressed multiples that exist in the data. Inverse Previous HitQNext Hit filtering improved the coherency of seismic traces and increased confidence in velocity analysis. Inverse Previous HitQTop also sharpened the seismic wavelet shape and made the seismic wavelet become more stationary, as shown in the synthetic-seismic correlation results.


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