DNN Inversion of Gravity Anomalies for Basement Topography Mapping

Author:

Ashena Zahra1,Kabirzadeh Hojjat1,Wang Xin1,Lee Youngsoo2,Woo Ik3,Ali Mohammed4,Kim Jeong Woo1

Affiliation:

1. University of Calgary, Canada

2. Jeonbuk National University, Korea

3. Kunsan National University, Korea

4. Khalifa University, Abu Dhabi, UAE

Abstract

Abstract A gravity inversion technique using Deep Neural Networks (DNN) was developed to construct the 2D basement topography in offshore Abu Dhabi, UAE. Forward model parameters are set based on the geological features in the study area. Hundreds of thousands of synthetic forward models of the basement and their corresponding gravity anomalies are generated in a relatively short time by applying parallel computing. The simulated data are input to our DNN model which conducts the nonlinear inverse mapping of gravity anomalies to basement topography. To assess the model's robustness against noises, DNN models are retrained using datasets with noise-contaminated gravity data whose performances are evaluated by making predictions on unseen synthetic anomalies. Finally, we employed the DNN inversion model to estimate the basement topography using pseudo gravity anomalies over a profile in offshore UAE.

Publisher

SPE

Reference18 articles.

1. Basement structure of the United Arab Emirates derived from an analysis of regional gravity and aeromagnetic database;Ali;Tectonophysics,2017

2. Ashena B , Z., Kabirzadeh, Hojjat., Wang, Xin., Ali, Mohammed., Lee, GyooHo., Woo, Ik., Kim, JW. Unsupervised Learning Analysis of a multi-parameter geophysical database for Abu Dhabi Hydrocarbon Reservoirs. Abu Dhabi International Petroleum Exhibition & Conference11 - 14 Nov 2019.

3. Ashena, Zahra., Kabirzadeh, Hojjat., Wang, Xin., Kwon, Sun Il., Lee, Youngsoo., Ali, Mohammed., Kim, JW. Supervised Learning Analysis of gravity and magnetic data to predict potential regions of hydrocarbon reservoirs at offshore Abu Dhabi, UAE. Abu Dhabi International Petroleum Exhibition & Conference15 - 18 Nov 2021.

4. Moho depth determination beneath the Zagros Mountains from 3D inversion of gravity data;Ashena;Arab J Geosci,2018

5. Parameter estimation and inverse problems;Aster,2018

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