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Featured researches published by Mojtaba Pordel Shahri.


ASME 2014 33rd International Conference on Ocean, Offshore and Arctic Engineering | 2014

Experimental Investigation of Reservoir Stress Path Hysteresis During Production-Injection Periods

Mojtaba Pordel Shahri; Stefan Z. Miska

There has been an increasing consciousness regarding stress changes associated with reservoir depletion as the industry moves towards more challenging jobs in deep-water or depleted reservoirs. These stress changes play a significant role in the design of wells in this condition. Therefore, accurate prediction of reservoir stress path, i.e., change in horizontal stresses with pore pressure, is of vital importance.In this study, the current stress path formulation is investigated using a Tri-axial Rock Mechanics Testing Facility. The reservoir depletion scenario is simulated through experiments and provides a better perspective on the currently used formulation and how it’s applicable during production and injection periods. The effect of fluid re-injection into reservoirs on the horizontal stress is also analyzed using core samples. According to the results, formation fracture pressure would not be equal to its initial value if pressure builds up using re-injection. The irrecoverable formation fracture pressure has a power law relation with pore pressure drawdown range. In order to avoid higher permanent fracture pressure reduction, it’s recommended to start the injection process as soon as possible during the production life of reservoirs. According to the experimental results, rocks behave differently during production and injection periods. Poisson’s ratio is greater during pressure build-up as compared to the depletion period. According to the current industry standards, Poisson’s ratio is usually obtained using fracturing data; i.e., leak-off test or mini-fracture test, or well logging methods. However, we are not able to use the same Poisson’s ratio for both pressure drawdown and build-up scenarios according to the experimental data. Corresponding to Poisson’s ratio values, the change in horizontal stress with pore pressure during drawdown (production) is higher than during build-up (injection) period. The outcomes of this study can significantly contribute to well planning and design of challenging wells over the life of reservoirs.Copyright


Journal of The Japan Petroleum Institute | 2012

Rheological and Filtration Loss Characteristics of Colloidal Gas Aphron Based Drilling Fluids

Milad Arabloo Nareh’ei; Mojtaba Pordel Shahri; Majid Zamani


SPE International Symposium and Exhibition on Formation Damage Control | 2014

Integrated Workflow for Lost Circulation Prediction

Ali Ghalambor; Saeed Salehi; Mojtaba Pordel Shahri; Moji Karimi


SPE Unconventional Gas Conference and Exhibition | 2013

Support Vector Machine Model: A New Methodology for Stuck Pipe Prediction

Ali Chamkalani; Mojtaba Pordel Shahri; Saeed Poordad


Nigeria Annual International Conference and Exhibition | 2012

Modeling of Fracture Ballooning in Naturally Fractured Reservoirs: A Sensitivity Analysis

Mehran Mehrabi; Mohammad Zeyghami; Mojtaba Pordel Shahri


SPE Annual Technical Conference and Exhibition | 2013

Spatio-Temporal Stress Path Prediction Using A Fluid Flow-Geomechanical Model

Mojtaba Pordel Shahri; Stefan Z. Miska


SPE Annual Technical Conference and Exhibition | 2013

Evaluation of Annular Pressure Losses while Casing Drilling

Vahid Dokhani; Mojtaba Pordel Shahri; Moji Karimi; Saeed Salehi


SPE Annual Technical Conference and Exhibition | 2013

All in One for Casing while Drilling Technology: Numerical, Analytical, and Experimental Results and Field Observations

Saeed Salehi; A. Aladsani; Mojtaba Pordel Shahri; Moji Karimi; C. Ezeakacha


Spe Journal | 2015

In-Situ Poisson’s Ratio Determination From Interference Transient Well Test

Mojtaba Pordel Shahri; Stefan Z. Miska


SPE Eastern Regional Meeting | 2013

Generalized Inflow Performance Relationship (IPR) for Horizontal Wells

Mojtaba Pordel Shahri; Zhaorui Shi; Hong-quan Zhang; Babak Akbari; Mohammad Reza Mohammadnia Firoozabad

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Moji Karimi

Weatherford International

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C. Ezeakacha

University of Louisiana at Lafayette

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