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Featured researches published by Hamed Darabi.


Spe Reservoir Evaluation & Engineering | 2014

Nonempirical Apparent Permeability of Shale

Harpreet Singh; Farzam Javadpour; Amin Ettehadtavakkol; Hamed Darabi

Physics of fluid flow in shale reservoirs cannot be predicted from standard flow or mass-transfer models because of the presence of nanopores, ranging in size from one to hundreds of nanometers, in shales. Conventional continuum-flow equations, such as Darcy’s law, greatly underestimate the fluid-flow rate when applied to nanopore-bearing shale reservoirs. As a result of the existence of nanopores in shales, the molecular mean free path becomes comparable with the characteristic geometric scale, and we hypothesize that under this condition, Knudsen diffusion, in addition to correction for the slip boundary condition, becomes the dominant mechanism. Recently, a few models have been developed that use various empirical parameters to account for these modifications (Javadpour 2009; Civan 2010; Darabi et al. 2012). This paper aims to provide a different approach to modeling apparent permeability in shale reservoirs. The proposed model is analytical, free of any empirical coefficients, and has been derived without invoking the assumption of slip flow at the pore wall. Our model of apparent permeability represented by a single analytical equation, depends only on pore size, pore geometry, temperature, gas properties, and average reservoir pressure. The proposed model is valid for Knudsen numbers less than unity and it stands up under the complete operating conditions of a shale reservoir. Our model reasonably predicts results as reported by other models. Finally, the model shows that pore-surface roughness and mineralogy have a negligible influence on gas-flow rate, whereas pore geometry and pore size play a significant role in the proportion of diffusion in total flow rate. Our study shows that a combination of Darcy flow and Knudsen flow—ignoring the Klinkenberg effect— can describe gas flow for a range of Knudsen flow applicable to a shale-gas system.


Journal of Fluid Mechanics | 2012

Gas flow in ultra-tight shale strata

Hamed Darabi; A. Ettehad; Farzam Javadpour; Kamy Sepehrnoori


19th SPE Improved Oil Recovery Symposium, IOR 2014 | 2014

Aspects of modeling asphaltene deposition in a compositional coupled wellbore/reservoir simulator

Hamed Darabi; Mahdy Shirdel; M. Hosein Kalaei; Kamy Sepehrnoori


SPE Western Regional Meeting 2015: Old Horizons, New Horizons Through Enabling Technology | 2015

Modeling Asphaltene Deposition in the Wellbore During Gas Lift Process

Ali Abouie; Mahdy Shirdel; Hamed Darabi; Kamy Sepehrnoori


SPE Annual Technical Conference and Exhibition 2012: Unconventional Wisdom, ATCE 2012 | 2012

Modeling of Wettability Alteration Due to Asphaltene Deposition in Oil Reservoirs

Hamed Darabi; Kamy Sepehrnoori; Mohamad Hosein Kalaei


Proceedings. Annual Offshore Technology Conference | 2016

Data-Driven Comparison Between Solid Model and PC-SAFT for Modeling Asphaltene Precipitation

Ali Abouie; Hamed Darabi; Kamy Sepehrnoori


annual simulation symposium | 2015

Modeling and Simulation of Near-Wellbore Asphaltene Remediation Using Asphaltene Dispersants

Hamed Darabi; Kamy Sepehrnoori


Journal of Natural Gas Science and Engineering | 2017

Data-driven comparison between solid model and PC-SAFT for modeling asphaltene precipitation

Ali Abouie; Hamed Darabi; Kamy Sepehrnoori


SPE Western Regional Meeting | 2016

Effect of Temperature Variations on Asphaltene Dynamics in Oil Reservoirs

Hamed Darabi; Ali Abouie; Kamy Sepehrnoori


SPE Western Regional Meeting | 2016

Improved Oil Recovery in Asphaltic Reservoirs During Gas Injection

Hamed Darabi; Ali Abouie; Kamy Sepehrnoori

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Kamy Sepehrnoori

University of Texas at Austin

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Ali Abouie

University of Texas at Austin

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Mahdy Shirdel

University of Texas at Austin

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Farzam Javadpour

University of Texas at Austin

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M. Hosein Kalaei

University of Texas at Austin

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A. Ettehad

University of Texas at Austin

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Amin Ettehadtavakkol

University of Texas at Austin

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Harpreet Singh

University of Texas at Austin

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Mohamad Hosein Kalaei

University of Texas at Austin

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