International audienceIn this communication, we have developed a feed-forward artificial neural network algorithm for estimating dissociation pressures of the binary clathrate hydrates of tetrahydrofuran+methane, carbon dioxide or nitrogen as a function of temperature and concentration of tetrahydrofuran in the aqueous solution below/equal its stoichiometric concentration (i.e., 0.056 mole fraction). In order to develop this algorithm, the most reliable experimental data reported in the literature on the dissociation pressures of the aforementioned binary hydrates have been used. Moreover, we report few experimental data on the dissociation pressures of the binary hydrates of tetrahydrofuran+carbon dioxide or nitrogen at 0.011 mole fraction...
International audienceIn this communication, we report a thermodynamic model for predicting pressure...
This work aims at providing experimental data for various methane-based hydrates, namely nitrogen an...
International audienceA mathematical model based on feed-forward artificial neural network technique...
International audienceIn this communication, a mathematical model based on feed-forward artificial n...
International audienceIn this communication, a feed-forward artificial neural network algorithm is d...
A feed-forward artificial neural network with 19 input variables (temperature, gas hydrate structure...
A feed-forward artificial neural network with 19 input variables (temperature, gas hydrate structure...
International audienceA feed-forward artificial neural network with 19 input variables (temperature,...
International audienceA feed-forward artificial neural network with 19 input variables (temperature,...
CD-Rom ISBN: 978-081691065-6International audienceThis work aims at providing dissociation condition...
International audienceIn this work, experimental dissociation data for the clathrate hydrates of tet...
Available online 3 December 2011International audienceIn this work, the Least Squares Support Vector...
ir A few theoretical studies dealing with hydrate–liquid two-phase equilibrium and three-phase equil...
CD-Rom ISBN : 978-0-8169-1058-6International audienceTetrahydrofuran (THF) is an organic water solub...
In this study estimation of hydrate formation conditions to separate carbon dioxide (CO2) from fuel ...
International audienceIn this communication, we report a thermodynamic model for predicting pressure...
This work aims at providing experimental data for various methane-based hydrates, namely nitrogen an...
International audienceA mathematical model based on feed-forward artificial neural network technique...
International audienceIn this communication, a mathematical model based on feed-forward artificial n...
International audienceIn this communication, a feed-forward artificial neural network algorithm is d...
A feed-forward artificial neural network with 19 input variables (temperature, gas hydrate structure...
A feed-forward artificial neural network with 19 input variables (temperature, gas hydrate structure...
International audienceA feed-forward artificial neural network with 19 input variables (temperature,...
International audienceA feed-forward artificial neural network with 19 input variables (temperature,...
CD-Rom ISBN: 978-081691065-6International audienceThis work aims at providing dissociation condition...
International audienceIn this work, experimental dissociation data for the clathrate hydrates of tet...
Available online 3 December 2011International audienceIn this work, the Least Squares Support Vector...
ir A few theoretical studies dealing with hydrate–liquid two-phase equilibrium and three-phase equil...
CD-Rom ISBN : 978-0-8169-1058-6International audienceTetrahydrofuran (THF) is an organic water solub...
In this study estimation of hydrate formation conditions to separate carbon dioxide (CO2) from fuel ...
International audienceIn this communication, we report a thermodynamic model for predicting pressure...
This work aims at providing experimental data for various methane-based hydrates, namely nitrogen an...
International audienceA mathematical model based on feed-forward artificial neural network technique...