Thermoelastohydrodynamic Behavior of Mechanical Gas Face Seals Operating at High PressureSource: Journal of Tribology:;2007:;volume( 129 ):;issue: 004::page 841DOI: 10.1115/1.2768086Publisher: The American Society of Mechanical Engineers (ASME)
Abstract: A numerical modeling of thermoelastohydrodynamic mechanical face seal behavior is presented. The model is an axisymmetric one and it is confined to high pressure compressible flow. It takes into account the behavior of a real gas and includes thermal and inertia effects, as well as a choked flow condition. In addition, heat transfer between the fluid film and the seal faces is computed, as are the elastic and thermal distortions of the rings. In the first part of this paper, the influence of the coning angle on mechanical face seal characteristics is studied. In the second part, the influence of the solid distortions is analyzed. It is shown that face distortions strongly modify both the gap geometry and the mechanical face seal’s performance. The mechanical distortions lead to a converging gap, while the gas expansion, by cooling the fluid, creates a diverging gap.
keyword(s): Inertia (Mechanics) , Pressure , Flow (Dynamics) , Temperature , Fluids , Solids , Film thickness , Fluid films , Geometry , Equilibrium (Physics) , High pressure (Physics) , Stress , Stators , Cooling , Rotors , Computer simulation AND Heat transfer ,
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| contributor author | Sébastien Thomas | |
| contributor author | Noël Brunetière | |
| contributor author | Bernard Tournerie | |
| date accessioned | 2017-05-09T00:25:51Z | |
| date available | 2017-05-09T00:25:51Z | |
| date copyright | October, 2007 | |
| date issued | 2007 | |
| identifier issn | 0742-4787 | |
| identifier other | JOTRE9-28753#841_1.pdf | |
| identifier uri | http://yetl.yabesh.ir/yetl/handle/yetl/136865 | |
| description abstract | A numerical modeling of thermoelastohydrodynamic mechanical face seal behavior is presented. The model is an axisymmetric one and it is confined to high pressure compressible flow. It takes into account the behavior of a real gas and includes thermal and inertia effects, as well as a choked flow condition. In addition, heat transfer between the fluid film and the seal faces is computed, as are the elastic and thermal distortions of the rings. In the first part of this paper, the influence of the coning angle on mechanical face seal characteristics is studied. In the second part, the influence of the solid distortions is analyzed. It is shown that face distortions strongly modify both the gap geometry and the mechanical face seal’s performance. The mechanical distortions lead to a converging gap, while the gas expansion, by cooling the fluid, creates a diverging gap. | |
| publisher | The American Society of Mechanical Engineers (ASME) | |
| title | Thermoelastohydrodynamic Behavior of Mechanical Gas Face Seals Operating at High Pressure | |
| type | Journal Paper | |
| journal volume | 129 | |
| journal issue | 4 | |
| journal title | Journal of Tribology | |
| identifier doi | 10.1115/1.2768086 | |
| journal fristpage | 841 | |
| journal lastpage | 850 | |
| identifier eissn | 1528-8897 | |
| keywords | Inertia (Mechanics) | |
| keywords | Pressure | |
| keywords | Flow (Dynamics) | |
| keywords | Temperature | |
| keywords | Fluids | |
| keywords | Solids | |
| keywords | Film thickness | |
| keywords | Fluid films | |
| keywords | Geometry | |
| keywords | Equilibrium (Physics) | |
| keywords | High pressure (Physics) | |
| keywords | Stress | |
| keywords | Stators | |
| keywords | Cooling | |
| keywords | Rotors | |
| keywords | Computer simulation AND Heat transfer | |
| tree | Journal of Tribology:;2007:;volume( 129 ):;issue: 004 | |
| contenttype | Fulltext |