Estimation of Reservoir Porosity Using Seismic Post-Stack Inversion in Lower Indus Basin, Pakistan

Authors

  • Sadiq Jalal Department of Earth Sciences, Quaid-i-Azam University, Islamabad, Pakistan
  • Hamza Rehman Department of Earth Sciences, Quaid-i-Azam University, Islamabad, Pakistan
  • Shams-ul- Alam Oil and Gas Development Company Limited (OGDCL), Islamabad, Pakistan
  • Abdul Wahid Department of Earth Sciences, Quaid-i-Azam University, Islamabad, Pakistan

DOI:

https://doi.org/10.46660/ijeeg.v12i2.103

Abstract

Seismic post-stack inversion is one of the best techniques for effective reservoir characterization. This study intends to articulate the application of Model-Based Inversion (MBI) and Probabilistic Neural Networks (PNN) for the identification of reservoir properties i.e. porosity estimation. MBI technique is applied to observe the low impedance zone at the porous reservoir formation. PNN is a geostatistical technique that transforms the impedance volume into porosity volume. Inverted porosity is estimated to observe the spatial distribution of porosity in the Lower Goru sand reservoir beyond the well data control. The result of inverted porosity is compared with that of well-computed porosity. The estimated inverted porosity ranges from 13-13.5% which shows a correlation of 99.63% with the computed porosity of the Rehmat-02 well. The observed low impedance and high porosity cube at the targeted horizon suggest that it could be a probable potential sand channel. Furthermore, the results of seismic post-stack inversion and geostatistical analysis indicate a very good agreement with each other. Hence, the seismic post-stack inversion technique can effectively be applied to estimate the reservoir properties for further prospective zones identification, volumetric estimation and future exploration.

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Published

2023-06-26

How to Cite

Jalal, S., Rehman, H., Alam, S.- ul-., & Wahid, A. (2023). Estimation of Reservoir Porosity Using Seismic Post-Stack Inversion in Lower Indus Basin, Pakistan. International Journal of Economic and Environmental Geology, 12(2), 60–64. https://doi.org/10.46660/ijeeg.v12i2.103

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