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Advances in Chemical Engineering and Science
Submission
Advances in Chemical Engineering and Science
ISSN Print:
2160-0392
ISSN Online:
2160-0406
www.scirp.org/journal/aces
E-mail:
aces@scirp.org
Google-based Impact Factor:
1.41
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"
Thermo-Hydrodynamics of Core-Annular Flow of Water, Heavy Oil and Air Using CFX
"
written by
Antonio José Ferreira Gadelha, Severino Rodrigues de Farias Neto, Ramdayal Swarnakar, Antonio Gilson Barbosa de Lima
,
published by
Advances in Chemical Engineering and Science
,
Vol.3 No.4A, 2013
has been cited by the following article(s):
Google Scholar
CrossRef
[1]
Numerical Analysis of a Water-Cooled Condenser at Startup Conditions for Refrigeration Applications Supported with Experiments
2021
[2]
Large‐Eddy Simulation of Oil‐Water Annular Flow in Eccentric Vertical Pipes
2021
[3]
Modelagem e simulação de escoamento anular de água, óleo pesado e ar em dutos horizontais
2020
[4]
Uncertainty of isokinetic sampling of the phase composition of a gas-oil-water mixture at different regimes of a developed horizontal pipe flow
2020
[5]
Modeling Friction Losses in the Water-Assisted Pipeline Transportation of Heavy Oil
2019
[6]
Экспериментальные исследования снижения гидравлического сопротивления при движении высоковязких жидкостей в трубопроводе
2019
[7]
Определение расхода неньютоновской жидкости в круглой трубе с пристенным газовым слоем
2019
[8]
Ultrasonic and Heat Treatment of Crude Oils
2019
[9]
Определение расхода неньютоновской жидкости в круглой трубе с пристенным газовым слоеM
2019
[10]
Experimental Research on Reducing Hydraulic Resistance When Transporting High-Viscosity Fluids by Pipeline
2019
[11]
Finding Flow of Non-Newtonian Fluids in Circular Pipe with Wall-Adjacent Gas Layer
2019
[12]
Hydrodynamics of three phase flow in upstream pipes
Cogent Engineering
,
2018
[13]
Lubricated Transport of Heavy Oil Investigated by CFD
2017
[14]
Lubricated Transport of Heavy Oil Investigated by CFD.
2017
[15]
A new approach to model friction losses in the water‐assisted pipeline transportation of heavy oil and bitumen
2016
[16]
A NEW APPROACH TO MODEL FRICTION LOSSES IN THE WATER-ASSISTED PIPELINE TRANSPORTATION OF HEAVY OIL AND BITUMEN
2016
[17]
Heavy oil slurry transportation through horizontal pipelines: experiments and CFD simulations
International Journal of Multiphase Flow
,
2016
[18]
Analogs of microgravity: head-down tilt and water immersion
2016
[19]
STUDY ON PRESSURE DROP AND LIQUID VOLUME FRACTION OF THE OIL-GAS FLOW IN A VERTICAL PIPE USING CFX AND THE BEGGS AND BRILL CORRELATION: VISCOSITY EFFECTS
Brazilian Journal of Petroleum and Gas
,
2016
[20]
ANÁLISE NUMÉRICA DO ESCOAMENTO ANULAR, NÃO ISOTÉRMICO DE ÁGUA-ÓLEO EM UM DUTO HORIZONTAL
2014
[21]
NUMERICAL STUDY ON THE INFLUENCE OF GAS VOLUME FRACTION ON THE TWO-PHASE FLOW OF HEAVY OIL AND NATURAL GAS MIXTURES IN AN OIL WELL
Brazilian Journal of Petroleum and Gas
,
2014
[1]
Heat Transfer - Design, Experimentation and Applications
2021
DOI:
10.5772/intechopen.97203
[2]
Large‐Eddy Simulation of Oil‐Water Annular Flow in Eccentric Vertical Pipes
Chemical Engineering & Technology
,
2020
DOI:
10.1002/ceat.202000361
[3]
Proceedings of the 5th International Conference on Industrial Engineering (ICIE 2019)
Lecture Notes in Mechanical Engineering
,
2020
DOI:
10.1007/978-3-030-22063-1_147
[4]
Proceedings of the 5th International Conference on Industrial Engineering (ICIE 2019)
Lecture Notes in Mechanical Engineering
,
2020
DOI:
10.1007/978-3-030-22063-1_144
[5]
Processing of Heavy Crude Oils - Challenges and Opportunities
2019
DOI:
10.5772/intechopen.82356
[6]
Ultrasonic and Heat Treatment of Crude Oils
Energies
,
2019
DOI:
10.3390/en12163084
[7]
Hydrodynamics of three phase flow in upstream pipes
Cogent Engineering
,
2018
DOI:
10.1080/23311916.2018.1433983
[8]
Heavy oil slurry transportation through horizontal pipelines: Experiments and CFD simulations
International Journal of Multiphase Flow
,
2017
DOI:
10.1016/j.ijmultiphaseflow.2016.04.013
[9]
Analogs of microgravity: head-down tilt and water immersion
Journal of Applied Physiology
,
2016
DOI:
10.1152/japplphysiol.00986.2015
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