--> A Virtual Field Laboratory for Data Integration and Characterizations in Unconventional Reservoirs
[First Hit]

AAPG ACE 2018

Datapages, Inc.Print this page

A Virtual Field Laboratory for Data Integration and Characterizations in Unconventional Reservoirs

Abstract

Thanks to the significant heterogeneity in both rock properties and hydrocarbon content, an integrated Previous HitcharacterizationNext Hit of the unconventional Previous HitreservoirNext Hit is essential to successful development and production. Data collected from various sources is rarely integrated for Previous HitcharacterizationNext Hit and quantification in the field scale, and most models rely on single-sourced data for calibration and prediction.

In this study, we present a virtual field laboratory platform for extensive data acquisition, efficient data integration, Previous HitadvancedNext Hit data visualization, and intelligent data analysis. The samples and data are collected from various sources and in various scales. The data integration combines different kinds of data, including geological (e.g., cuttings, core samples, mudlogs), Previous HitgeophysicalNext Hit (e.g., wireline logs, seismic), geochemical (e.g., carbon isotope, hydrocarbon compositions, rock-eval pyrolysis), and operational (e.g., well tests, production history) data. Data visualization is achieved by latest computer vision techniques.

With the platform, we incorporate (1) integration, visualization and analysis of field and laboratory data, (2)geochemical modeling based on kinetics theories and extensive laboratory experiments,(3)Previous HitadvancedNext Hit modeling of fluid dynamics and isotope fractionation in tight Previous HitreservoirNext Hit rock,(4)prediction and evaluation of rock and fluid properties, and (5)intelligent identification of sweet spots. With the integrative Previous HitcharacterizationTop of the unconventional resource system, spatially distributed properties, such as total gas content, permeability, isotope ratio, and frackability, are used to smartly identify the sweet spots.