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Open AccessJournal ArticleDOI

Shallow Water Demultiple

Barry Hung, +3 more
- 01 Dec 2010 - 
- Vol. 2010, Iss: 1, pp 1-4
TLDR
In this paper, the authors proposed a workflow that involves first attenuating short-period water-layer related multiples (WLRMs) and then suppressing other long-period free surface multiples using conventional SRME.
Abstract
Multiples due to shallow water are observed in seismic data acquired in various places such as the Gippsland Basin of Australia. These short period multiple reflections often pose problems to the interpretation of geological structures. They are not easily handled by conventional surface-related multiple elimination (SRME) methods because the recorded primary waterbottom reflection, which is required by SRME, is often indistinct in shallow water situations due to the near offset gap. Hence, predictive deconvolution in the x-t or ?-p domain is frequently used for attenuating shallow water multiples. However, besides multiples, deconvolution also attenuates primary events that have a periodicity which is close to that of the water-layer. In this paper, we present a workflow that involves first attenuating short-period water-layer related multiples (WLRMs) ? a process that we term shallow water demultiple (SWD); and then suppressing other longperiod free surface multiples using conventional SRME. SWD is a wavefield-consistent method that first makes use of WLRMs in the data to reconstruct the missing water-bottom primary reflection and then uses the reflection for predicting shallow WLRMs. It is data driven and takes into account the spatial varying nature of subsurface structures. Since the WLRM model predicted by SWD has similar amplitude and phase as the input data, very short matching filters, which are not possible if deconvolution is used, can be utilised in the adaptive subtraction process. We demonstrate, through real-data examples, that our workflow provides an optimal multiple attenuation solution in shallow water environment in comparison with conventional methods such as ?-p deconvolution or SRME alone.

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Citations
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Journal ArticleDOI

Robust estimation of primaries by sparse inversion and Marchenko equation-based workflow for multiple suppression in the case of a shallow water layer and a complex overburden: A 2D case study in the Arabian Gulf

TL;DR: In this article, a robust estimation of primaries by sparse inversion (R-EPSI) is applied to solve simultaneously for the surface-related primaries Green's function and the source wavelet.
Journal ArticleDOI

Hydraulic flow units' estimation from seismic data using artificial intelligence systems, an example from a gas reservoir in the Persian Gulf

TL;DR: In this paper, the authors integrated 3D seismic data with well data in order to find a quantitative relationship between flow zone index (FZI) and seismic attributes through employing linear regression and artificial intelligence models.
Patent

Wave-field reconstruction using a reflection from a variable sea surface

TL;DR: In this paper, the authors present a method for processing energy at a free-surface reflection relating to an air-water interface. But this method requires the use of a linear operator modified to take into account the wave-height data.
Proceedings ArticleDOI

Shallow water demultiple with seafloor reflection modeling using multichannel prediction operator

TL;DR: In this paper, the authors proposed a hybrid approach in which shallow WLRMs are handled by using the Green's function of the seafloor primary reflections, while the rest of the multichannel multiples were handled by SWD.
Journal ArticleDOI

High-fidelity adaptive curvelet domain primary-multiple separation

Xiang Wu, +1 more
- 01 Dec 2013 - 
TL;DR: In this article, the authors proposed an adaptive scheme for primary-multiple separation, where the multiples are first estimated from the seismic data and then removed using the curvelet transform, and they showed that such an adaptive implementation is more robust and has a superior performance to the conventional least-squares method for attenuating multiples.
References
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Journal ArticleDOI

Estimation of multiple scattering by iterative inversion, Part I: Theoretical considerations

TL;DR: In this article, a review of the surface-related multiple removal problem by making use of the so-called feedback model was given, and it was concluded that the proposed solution does not require any properties of the subsurface.
Journal ArticleDOI

Estimating primaries by sparse inversion and application to near-offset data reconstruction

TL;DR: In this paper, a sparse inversion (EPSI) method was proposed to estimate the surface-related multiple elimination (SRME) from a multidimensional inversion process rather than a subtraction process.
Proceedings ArticleDOI

MAGIC: Shell's Surface Multiple Attenuation Technique.

TL;DR: A surface consistent multi-channel deconvolution technique based on full inversion of the MAGIC expression for surface multiples was developed at Shell in the mid 1980s.
Proceedings ArticleDOI

Surface multiple attenuation in shallow water and the construction of primaries from multiples

TL;DR: The work of Berkhout, Verschuur and others in the development of their method for surface-related multiple elimination (SRME) is that multiples, normally considered as unwanted noise in seismic data, are intimately related to, and can be constructed from, primary reflections as discussed by the authors.
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