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Dive into the research topics where Ahmad A. A. Majid is active.

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Featured researches published by Ahmad A. A. Majid.


Langmuir | 2017

New in Situ Measurements of the Viscosity of Gas Clathrate Hydrate Slurries Formed from Model Water-in-Oil Emulsions

Ahmad A. A. Majid; David T. Wu; Carolyn A. Koh

In situ rheological measurements for clathrate hydrate slurries were performed using a high pressure rheometer to determine the effect of hydrate particles on the viscosity and transportability of these slurries. These measurements were conducted using a well-characterized model water-in-oil emulsion ( Delgado-Linares et al. Model Water in-Oil Emulsions for Gas Hydrate Studies in Oil Continuous Systems . Energy Fuels 2013 , 27 , 4564 - 4573 ). The emulsion consists of a model liquid hydrocarbon, water, and a surfactant mixture of sorbitane monooleate 80 (Span 80) and sodium di-2-ethylhexylsulfosuccinate (Aerosol OT, AOT). This emulsion was used as an analog to water-in-crude oil (w/o) emulsions and provides reproducible results. The flow properties of the model w/o emulsion prior to hydrate formation were investigated in terms of several parameters including water percentage, temperature and pressure. A general equation that describes the viscosity of the emulsion as a function of the aforementioned parameters was developed. This general equation was able to predict the viscosity of a saturated emulsion at various temperatures and water percentages to within ±13% error. The general equation was then used to analyze the effect of hydrate formation on the transportability of gas hydrate slurries. As for hydrate slurries investigation, measurements were performed using methane gas as the hydrate former and a straight vane impeller as a stirring system. Tests were conducted at constant temperature and pressure (1 °C and 1500 psig of methane) and water percentages ranging from 5 to 30 vol %. Results of this work were analyzed and presented in terms of relative values, i.e., viscosities of the slurries relative to the viscosities of the continuous phase at similar temperature and pressure. In this work, a correlation to predict the relative viscosity of a hydrate slurry at various hydrate volume fractions was developed. Analysis of the developed correlation showed that the model was able to predict the relative viscosity of a hydrate slurry to within ±17% error.


Energy & Fuels | 2013

Model Water-in-Oil Emulsions for Gas Hydrate Studies in Oil Continuous Systems

José G. Delgado-Linares; Ahmad A. A. Majid; E. Dendy Sloan; Carolyn A. Koh; Amadeu K. Sum


Offshore Technology Conference | 2014

Hydrate Modeling & Flow Loop Experiments for Water Continuous & Partially Dispersed Systems

Prithvi Vijayamohan; Ahmad A. A. Majid; Piyush Chaudhari; E.D. Sloan; Amadeu K. Sum; Carolyn A. Koh; E. Dellacase; M. Volk


Offshore Technology Conference | 2015

Understanding Gas Hydrate Growth in Partially Dispersed and Water Continuous Systems from Flowloop Tests

Prithvi Vijayamohan; Ahmad A. A. Majid; Piyush Chaudhari; Amadeu K. Sum; Carolyn A. Koh; E. Dellacase; M. Volk


Offshore Technology Conference | 2017

Hydrate Formation and Transportability Investigations in a High-Pressure Flowloop During Transient Shut-in / Restart Operations

Vishal Srivastava; Ahmad A. A. Majid; Pramod Warrier; Giovanny Grasso; Piyush Chaudhari; E. Dendy Sloan; Carolyn A. Koh; David T. Wu; Luis E. Zerpa


Canadian Journal of Chemistry | 2015

Measurement of the water droplet size in water-in-oil emulsions using low field nuclear magnetic resonance for gas hydrate slurry applications

Ahmad A. A. Majid; Milad Saidian; Manika Prasad; Carolyn A. Koh


Offshore Technology Conference | 2017

Gas Hydrate Formation in High Water Content Systems Containing Anti-Agglomerat and Salt

Ahmad A. A. Majid; Martin J. Braniff; Jefferson L. Creek; Carolyn A. Koh; Greg Kusinski; Joseph Gomes


Offshore Technology Conference | 2017

Gas Hydrate Management Strategies Using Anti-Agglomerants: Continuous & Transient Large-Scale Flowloop Studies

J. A. Dapena; Ahmad A. A. Majid; V. Srivastava; Y. Wang; T. B. Charlton; A. A. Gardner; E. D. Sloan; Luis E. Zerpa; David T. Wu; Carolyn A. Koh


Offshore Technology Conference | 2017

Study of Anti-Agglomerant Low Dosage Hydrate Inhibitor Performance

Davi Salmin; Ahmad A. A. Majid; Jonathan Wells; E. Dendy Sloan; Douglas Estanga; Greg Kusinski; Mayela Rivero; Joseph Gomes; David T. Wu; Luis E. Zerpa; Carolyn A. Koh


Archive | 2016

WATER/OIL/GAS EMULSIONS/FOAMS CHARACTERIZATION USING LOW FIELD NUCLEAR MAGNETIC RESONANCE

Milad Saidian; Ahmad A. A. Majid; Manika Prasad; Carolyn A. Koh

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Carolyn A. Koh

Colorado School of Mines

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David T. Wu

Colorado School of Mines

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E. Dendy Sloan

Colorado School of Mines

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Luis E. Zerpa

Colorado School of Mines

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Amadeu K. Sum

Colorado School of Mines

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