000 01939nab a2200217 4500
005 20260520002809.0
008 260224s2008 xxu
245 0 0 _aPredicting the induction time of hydrate Formation on a Water Droplet
260 _csept./oct. 2008
270 _a15/05/2009 ; 21/01/2009
300 _a10 p. ; 657-667
520 _aTranscripción del resúmen publicado por el autor: Despite the importance of the induction time in hydrate formation studies, the scientists have not yet developed a generalized model due to its stochastic property. In this work, the induction time of hydrate formation of multicomponent gas mixtures on a water droplet has been modeled. Mass transfer through the droplet surface was modeled based on a diffusion equation where the rate of reaction was expressed based on the nucleation theory. Driving force for the hydrate formation was calculated based on the change in the Gibbs free energies of the gas, water and the hydrate. The model was validated by comparison of the predicted results with the experimental data from the literature. The induction time was calculated for hydrate formation from a mixture of 89.4% methane + 10.6% ethane on 1.5-7 mm in diameter of water droplets at 273.85 K and 3.6-5.1 MPa. It was found that, induction time is highly sensitive to the value of the driving force. Moreover, the induction times were not dependent on the size of the droplets and the induction time for the water droplets with hydrate memory was shorter than the droplets without hydrate memory.
581 _a5
773 0 _h63
_tOil and Gas Science and Technology
942 _cARTICULO
100 1 _aSarshar, M.
_940192
100 1 _aEsmaeilzadeh, F.
_940193
100 1 _aFathikaljahi, J.
_940194
999 _c168902
_d168902
856 _uhttp://ogst.ifp.fr/index.php?option=article&access=standard&Itemid=129&url=/articles/ogst/pdf/2008/05/ogst07093.pdf