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Seismic Wave Field Simulation of Jurassic in Hinterland of Junggar Basin

Liu Chuan-hu

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Abstract

The Jurassic reservoir in hinterland of Junggar basin is characterized by deep burial depth, non-structural trap and big difficulty for petroleum exploration. This paper presents the physical model for the Jurassic reservoir in the basin. The simulated result matches to the field core statistical result in order to achieve high accuracy. Then the seismic wave field simulations are conducted. The study indicates that the weighted impedance attributes can be used to effectively distinguish fluid bearing sand from dry sand, through decomposition of P-wave information into rock rigid modulus and elastic modulus, thus highlighting the seismic attribute of fluid-bearing formations or sands.

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What this paper is about

The Jurassic reservoir in hinterland of Junggar basin is characterized by deep burial depth, non-structural trap and big difficulty for petroleum exploration. This paper presents the physical model for the Jurassic reservoir in the basin. The simulated result matches to the field core statistical result in order to achieve high accuracy. Then the seismic wave field simulations are conducted. The study indicates that the weighted impedance attributes can be used to effectively distinguish fluid bearing sand from dry sand, through decomposition of P-wave information into rock rigid modulus and elastic modulus, thus highlighting the seismic attribute of fluid-bearing formations or sands.

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Available abstract

The Jurassic reservoir in hinterland of Junggar basin is characterized by deep burial depth, non-structural trap and big difficulty for petroleum exploration. This paper presents the physical model for the Jurassic reservoir in the basin. The simulated result matches to the field core statistical result in order to achieve high accuracy. Then the seismic wave field simulations are conducted. The study indicates that the weighted impedance attributes can be used to effectively distinguish fluid bearing sand from dry sand, through decomposition of P-wave information into rock rigid modulus and elastic modulus, thus highlighting the seismic attribute of fluid-bearing formations or sands.

Key concepts: Geology, Structural basin, Seismic exploration, Seismic attribute, Petrology, Seismology, Modulus, Petroleum exploration

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