|
Type
|
Journal
Article
|
|
Author
|
Junfeng
Yang
|
|
Author
|
Maria
G. Jimenez Serratos
|
|
URL
|
Free
Full Text Source: http://www.sciencedirect.com/science/article/pii/S2210983815001376
|
|
Series
|
IUTAM
Symposium on Multiphase Flows with Phase Change: Challenges and Opportunities
|
|
Volume
|
15
|
|
Pages
|
186-193
|
|
Publication
|
Procedia
IUTAM
|
|
Date
|
2015
|
|
Abstract
|
In the present study,
the fluid dynamics and phase behavior of crude-oil fouling in a closed-end
heat-exchanger is studied. The deposition process associated with fouling is
assumed to be due to two routes: asphaltene precipitation, and a two-step
chemical reaction. The SAFT-γ Mie theory is employed to describe the phase
behavior of an asphaltene-containing crude oil system, which comprises
pseudo-components (C13 ∼ C20+). The predicted
phase equilibrium constants are used to quantify the asphaltene precipitation
rate. A computational fluid dynamics framework is then used to simulate the
fouling process, accounting for the multiphase flow dynamics, heat transfer,
and the two deposition routes. Fouling is simulated due to the two routes
individually and in concert.
In the latter case, it is found that the interaction of the two routes is due to the fouling layer adhering to the heat- exchanger walls, which influences heat transfer from the hot walls to the cooler oil in the bulk. The delicate interplay between heat transfer and fluid dynamics, which accompanies the flow, leads to enhancement and suppression of chemical reaction- and precipitation-driven fouling, respectively, and an overall rise in the fouling rate. |
Thursday, August 13, 2015
Crude Oil Fouling: Fluid Dynamics, Reactions and Phase Change
Crude Oil Fouling: Fluid Dynamics,
Reactions and Phase Change
Subscribe to:
Post Comments (Atom)
No comments:
Post a Comment