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Instability analysis of the air-water flow in porous medium

Analiza pojave nestabilnosti kod dvofaznog strujanja u poroznoj sredini

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2009
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Authors
Jaćimović, Nenad
Hosoda, Takashi
Ivetić, Marko
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Abstract
The paper deals with modeling of two phase (water-air) flow in coarse porous medium, where, after reaching some air velocity, instability of the flow occurs. Firstly, a linear stability analysis has been conducted for onedimensional macroscopic model, which revealed that capillary forces are a stability factor, while inertial forces promote instability. Utilizing the two most frequently applied constitutive models for capillaritysaturation relation it was found that instability may be expected in materials with representative grain size of 2 mm and greater. In the case of smaller grain size, instability can not occur, regardless of the imposed air flow rate. In addition, the paper presents a newly developed numerical model for the simulation of two phase flow in porous media, with the consideration of complete momentum equations. Applied on the data of reported laboratory experiments the model successfully reproduced the observed instability of the flow.
U radu se modelira dvofazno tečenje vode i vazduha u krupnozrnoj poroznoj sredini gde je, pri određenim brzinama vazduha, osmotrena pojava nestabilnog tečenja. Najpre, sprovedena je linearna analiza stabilnosti zapreminski osrednjenih jednačina, koja je pokazala da osnovni stabilizirajući faktor predstavljaju kapilarne sile, dok inercijalne sile promovišu nestabilnost pri tečenju. Korišćenjem dva najčešće korišćena konstitutivna modela za funkcionalnu zavisnost kapilarnog pritiska i zasićenosti porozne sredine, utvrđeno je se pojava nestabilnosti može očekivati kod materijala reprezentativne krupnoće zrna veće od 2 mm. Kod manje krupnoće, pokazano je da do nestabilnog tečenja ne može da dođe, bez obzira na nametnutu brzinu vazdušne faze. U okviru rada, razvijen je i numerički model za rešavanje dvofaznog tečenja rešavanjem kompletnih dinamičkih jednačina za obe faze (voda i vazduh), a koji je primenjen za simulaciju objavljenih laboratorijskih eksperimenata iz literature. Model uspešno... reprodukuje pojavu nestabilnog tečenja.

Keywords:
two phase flow / porous media / dvofazno strujanje / porozna sredina
Source:
Vodoprivreda, 2009, 41, 4-6, 151-157
Publisher:
  • Jugoslovensko društvo za odvodnjavanje i navodnjavanje, Beograd

ISSN: 0350-0519

[ Google Scholar ]
Handle
https://hdl.handle.net/21.15107/rcub_grafar_252
URI
https://grafar.grf.bg.ac.rs/handle/123456789/252
Collections
  • Radovi istraživača / Researcher's publications
  • Катедра за хидротехнику и водно-еколошко инжењерство
Institution/Community
GraFar
TY  - CONF
AU  - Jaćimović, Nenad
AU  - Hosoda, Takashi
AU  - Ivetić, Marko
PY  - 2009
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/252
AB  - The paper deals with modeling of two phase (water-air) flow in coarse porous medium, where, after reaching some air velocity, instability of the flow occurs. Firstly, a linear stability analysis has been conducted for onedimensional macroscopic model, which revealed that capillary forces are a stability factor, while inertial forces promote instability. Utilizing the two most frequently applied constitutive models for capillaritysaturation relation it was found that instability may be expected in materials with representative grain size of 2 mm and greater. In the case of smaller grain size, instability can not occur, regardless of the imposed air flow rate. In addition, the paper presents a newly developed numerical model for the simulation of two phase flow in porous media, with the consideration of complete momentum equations. Applied on the data of reported laboratory experiments the model successfully reproduced the observed instability of the flow.
AB  - U radu se modelira dvofazno tečenje vode i vazduha u krupnozrnoj poroznoj sredini gde je, pri određenim brzinama vazduha, osmotrena pojava nestabilnog tečenja. Najpre, sprovedena je linearna analiza stabilnosti zapreminski osrednjenih jednačina, koja je pokazala da osnovni stabilizirajući faktor predstavljaju kapilarne sile, dok inercijalne sile promovišu nestabilnost pri tečenju. Korišćenjem dva najčešće korišćena konstitutivna modela za funkcionalnu zavisnost kapilarnog pritiska i zasićenosti porozne sredine, utvrđeno je se pojava nestabilnosti može očekivati kod materijala reprezentativne krupnoće zrna veće od 2 mm. Kod manje krupnoće, pokazano je da do nestabilnog tečenja ne može da dođe, bez obzira na nametnutu brzinu vazdušne faze. U okviru rada, razvijen je i numerički model za rešavanje dvofaznog tečenja rešavanjem kompletnih dinamičkih jednačina za obe faze (voda i vazduh), a koji je primenjen za simulaciju objavljenih laboratorijskih eksperimenata iz literature. Model uspešno reprodukuje pojavu nestabilnog tečenja.
PB  - Jugoslovensko društvo za odvodnjavanje i navodnjavanje, Beograd
C3  - Vodoprivreda
T1  - Instability analysis of the air-water flow in porous medium
T1  - Analiza pojave nestabilnosti kod dvofaznog strujanja u poroznoj sredini
EP  - 157
IS  - 4-6
SP  - 151
VL  - 41
UR  - https://hdl.handle.net/21.15107/rcub_grafar_252
ER  - 
@conference{
author = "Jaćimović, Nenad and Hosoda, Takashi and Ivetić, Marko",
year = "2009",
abstract = "The paper deals with modeling of two phase (water-air) flow in coarse porous medium, where, after reaching some air velocity, instability of the flow occurs. Firstly, a linear stability analysis has been conducted for onedimensional macroscopic model, which revealed that capillary forces are a stability factor, while inertial forces promote instability. Utilizing the two most frequently applied constitutive models for capillaritysaturation relation it was found that instability may be expected in materials with representative grain size of 2 mm and greater. In the case of smaller grain size, instability can not occur, regardless of the imposed air flow rate. In addition, the paper presents a newly developed numerical model for the simulation of two phase flow in porous media, with the consideration of complete momentum equations. Applied on the data of reported laboratory experiments the model successfully reproduced the observed instability of the flow., U radu se modelira dvofazno tečenje vode i vazduha u krupnozrnoj poroznoj sredini gde je, pri određenim brzinama vazduha, osmotrena pojava nestabilnog tečenja. Najpre, sprovedena je linearna analiza stabilnosti zapreminski osrednjenih jednačina, koja je pokazala da osnovni stabilizirajući faktor predstavljaju kapilarne sile, dok inercijalne sile promovišu nestabilnost pri tečenju. Korišćenjem dva najčešće korišćena konstitutivna modela za funkcionalnu zavisnost kapilarnog pritiska i zasićenosti porozne sredine, utvrđeno je se pojava nestabilnosti može očekivati kod materijala reprezentativne krupnoće zrna veće od 2 mm. Kod manje krupnoće, pokazano je da do nestabilnog tečenja ne može da dođe, bez obzira na nametnutu brzinu vazdušne faze. U okviru rada, razvijen je i numerički model za rešavanje dvofaznog tečenja rešavanjem kompletnih dinamičkih jednačina za obe faze (voda i vazduh), a koji je primenjen za simulaciju objavljenih laboratorijskih eksperimenata iz literature. Model uspešno reprodukuje pojavu nestabilnog tečenja.",
publisher = "Jugoslovensko društvo za odvodnjavanje i navodnjavanje, Beograd",
journal = "Vodoprivreda",
title = "Instability analysis of the air-water flow in porous medium, Analiza pojave nestabilnosti kod dvofaznog strujanja u poroznoj sredini",
pages = "157-151",
number = "4-6",
volume = "41",
url = "https://hdl.handle.net/21.15107/rcub_grafar_252"
}
Jaćimović, N., Hosoda, T.,& Ivetić, M.. (2009). Instability analysis of the air-water flow in porous medium. in Vodoprivreda
Jugoslovensko društvo za odvodnjavanje i navodnjavanje, Beograd., 41(4-6), 151-157.
https://hdl.handle.net/21.15107/rcub_grafar_252
Jaćimović N, Hosoda T, Ivetić M. Instability analysis of the air-water flow in porous medium. in Vodoprivreda. 2009;41(4-6):151-157.
https://hdl.handle.net/21.15107/rcub_grafar_252 .
Jaćimović, Nenad, Hosoda, Takashi, Ivetić, Marko, "Instability analysis of the air-water flow in porous medium" in Vodoprivreda, 41, no. 4-6 (2009):151-157,
https://hdl.handle.net/21.15107/rcub_grafar_252 .

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