Leak-Rate Through Carbon Brush Seals: Experimental Tests Versus Predictions From a Porous Medium Approach
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作者:
Souissi, Ala
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Univ Poitiers, ISAE ENSMA, Inst PPRIME, CNRS,UPR 3346, 11 Bd Marie & Pierre Curie,Bat H1, F-86360 Chasseneuil, FranceUniv Poitiers, ISAE ENSMA, Inst PPRIME, CNRS,UPR 3346, 11 Bd Marie & Pierre Curie,Bat H1, F-86360 Chasseneuil, France
Souissi, Ala
[1
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Arghir, Mihai
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Univ Poitiers, ISAE ENSMA, Inst PPRIME, CNRS,UPR 3346, 11 Bd Marie & Pierre Curie,Bat H1, F-86360 Chasseneuil, FranceUniv Poitiers, ISAE ENSMA, Inst PPRIME, CNRS,UPR 3346, 11 Bd Marie & Pierre Curie,Bat H1, F-86360 Chasseneuil, France
Arghir, Mihai
[1
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Lasseux, Didier
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Univ Bordeaux, CNRS, Bordeaux INP, I2M,UMR 5295, 351 Cours De La Liberation, F-33405 Talence, FranceUniv Poitiers, ISAE ENSMA, Inst PPRIME, CNRS,UPR 3346, 11 Bd Marie & Pierre Curie,Bat H1, F-86360 Chasseneuil, France
Lasseux, Didier
[2
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Amami, Lassad
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CETIM, 74 Rte De La Joneliere, F-44300 Nantes, FranceUniv Poitiers, ISAE ENSMA, Inst PPRIME, CNRS,UPR 3346, 11 Bd Marie & Pierre Curie,Bat H1, F-86360 Chasseneuil, France
Amami, Lassad
[3
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Burlot, Philippe
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Technet Grp, 90 Rue Roche Du Geai, F-42000 St Etienne, FranceUniv Poitiers, ISAE ENSMA, Inst PPRIME, CNRS,UPR 3346, 11 Bd Marie & Pierre Curie,Bat H1, F-86360 Chasseneuil, France
Burlot, Philippe
[4
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机构:
[1] Univ Poitiers, ISAE ENSMA, Inst PPRIME, CNRS,UPR 3346, 11 Bd Marie & Pierre Curie,Bat H1, F-86360 Chasseneuil, France
[2] Univ Bordeaux, CNRS, Bordeaux INP, I2M,UMR 5295, 351 Cours De La Liberation, F-33405 Talence, France
[3] CETIM, 74 Rte De La Joneliere, F-44300 Nantes, France
[4] Technet Grp, 90 Rue Roche Du Geai, F-42000 St Etienne, France
This study presents a detailed comparative analysis between experimental leakage flow rates and numerical predictions for carbon brush seals with long bristles, utilizing a porous medium model approach. A series of tests were carried out on a static rig (without rotor rotation). The experimental setup allows tests under various interference conditions, revealing significant insights into the flow behavior through the brush seal. A numerical model based on the Darcy-Forchheimer equation is developed to interpret the complex flow dynamics within the brush seal, accounting for viscous, compressible, and inertial effects. The study evaluates the impact of brush deformation and porosity on flow resistance, leveraging experimental data to refine the numerical model parameters. This investigation not only deepens the understanding of brush seal flow physics but also improves the predictive accuracy of the numerical model in simulating operational conditions.