What is it about?

The study focuses on fracture modeling in a significant Iranian field using Petrel software and image log data. Its primary goal is twofold: first, to uncover new insights into fractures within the Gachsaran field and second, to create an educational resource for researchers keen on learning fracture modeling techniques. The research highlights several key findings: longitudinal fractures aligning with the minimum stress (Zagros trend), high fracture intensity near major faults and the northern flank, fracture porosity ranging from 0% to 7%, fracture permeability reaching up to 6000 millidarcies (MD), and additional valuable insights regarding fractures within this field.

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Why is it important?

The process of modeling fractures in reservoirs is crucial for predicting how the reservoir will behave. Petrel software is highly effective for this task, yet there's a lack of educational resources available for researchers interested in this field. This study focused on fracture modeling in a significant Iranian field using Petrel software and image log data. Its aim was twofold: to uncover new insights into fractures within the Gachsaran field and to create an educational resource for researchers wanting to learn about fracture modeling. The findings highlighted that in this field, longitudinal fractures aligned with the minimum stress (Zagros trend), fracture intensity correlated with the major fault and northern flank, fracture porosity ranged from 0 to 7%, and fracture permeability spanned 0 to 6000 MD. The paper offers further valuable details on these findings.

Perspectives

Understanding fracture modeling in reservoirs is essential for predicting how a reservoir behaves. Petrel software excels in this area, yet educational resources for researchers are lacking. This study focused on fracture modeling in a significant Iranian field, using Petrel software and image log data. The objective was twofold: to unearth new insights into fractures within the Gachsaran field and to create an educational resource on fracture modeling. The findings revealed longitudinal fractures aligned with the minimum stress (Zagros trend), fracture intensity correlated with the major fault and northern flank, and fracture porosity ranged from 0 to 7%. Fracture permeability spanned from 0 to 6000 MD. This work aims to provide valuable insights for researchers interested in fracture modeling.

Dr Zohreh Movahed
zmovahed@gmail.com

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This page is a summary of: FRACTURE MODELING IN OIL AND GAS RESERVOIRS USING IMAGE LOGS DATA AND PETREL SOFTWARE, Jurnal Teknologi (Sciences & Engineering), August 2015, Penerbit UTM Press,
DOI: 10.11113/jt.v75.5295.
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