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Articles

Combining solvent injection, electromagnetic heating, and hydraulic fracturing for multistage heavy oil recovery

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Pages 207-224 | Received 20 Apr 2015, Accepted 25 Sep 2015, Published online: 05 Nov 2015

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Liang Li & Huaibing Feng. (2020) Effect of microwave radiation time on the composition of gas produced from microwave assisted heavy oil upgrading. Petroleum Science and Technology 38:8, pages 659-665.
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Articles from other publishers (6)

Adamu A. Adamu, Prashant S. Jadhawar & Sumeet S. Aphale. (2023) Waveguide Analysis of Radiofrequency Transmission in Well Tubulars for Electromagnetic Heating of Heavy Oil. IEEE Access 11, pages 6228-6245.
Crossref
Pandian Sivakumar, Shanker Krishna, Hari S. & Rakesh Kumar Vij. (2020) Electromagnetic heating, an eco-friendly method to enhance heavy oil production: A review of recent advancements. Environmental Technology & Innovation 20, pages 101100.
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A. Davletbaev, L. Kovaleva, A. Zainulin & T. Babadagli. (2018) Numerical Modeling of Heavy-Oil Recovery Using Electromagnetic Radiation/Hydraulic Fracturing Considering Thermal Expansion Effect. Journal of Heat Transfer 140:6.
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Amin Saeedfar & Don Lawton. (2018) Critical Considerations for Analysis of RF-Thermal Recovery of Heavy Petroleum. Critical Considerations for Analysis of RF-Thermal Recovery of Heavy Petroleum.
A. Davletbaev, L. Kovaleva, A. Zainulin, V. Kireev, T. Babadagli & R. Minnigalimov. (2016) Modeling Heavy-Oil Recovery Using Electromagnetic Radiation/Hydraulic Fracturing Considering Adiabatic Effect and Thermal Expansion. Modeling Heavy-Oil Recovery Using Electromagnetic Radiation/Hydraulic Fracturing Considering Adiabatic Effect and Thermal Expansion.
I. Bogdanov, S. Cambon, M. Mujica & A. Brisset. (2016) Heavy Oil Recovery via Combination of Radio-Frequency Heating With Solvent Injection. Heavy Oil Recovery via Combination of Radio-Frequency Heating With Solvent Injection.

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