Numerical Study of Geometry and Rotation Dependence on the Flow in Labyrinth Seals

A computational study was conducted on the flow, both compressible and incompressible, in a labyrinth seal at various geometries and rotation rates. The computations were performed using the commercial software Fluent® which solves the k-ε model to predict the flow field in the seal. Various clearan...

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Bibliographic Details
Main Author: Yamsani, Vamshi Krishna
Other Authors: Morrison, Gerald L.
Format: Others
Language:en_US
Published: 2011
Subjects:
CFD
Online Access:http://hdl.handle.net/1969.1/ETD-TAMU-2011-08-9728
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spelling ndltd-tamu.edu-oai-repository.tamu.edu-1969.1-ETD-TAMU-2011-08-97282013-01-08T10:42:35ZNumerical Study of Geometry and Rotation Dependence on the Flow in Labyrinth SealsYamsani, Vamshi KrishnaLabyrinth SealsCFDA computational study was conducted on the flow, both compressible and incompressible, in a labyrinth seal at various geometries and rotation rates. The computations were performed using the commercial software Fluent® which solves the k-ε model to predict the flow field in the seal. Various clearance-pitch ratios were used to study the effect of clearance on the flow. The aspect ratio, which is defined as the pitch-height ratio was varied to study the influence of the depth of the cavity on the flow as a whole. These studies span a range of Taylor's number that is defined accordingly, while fixing the Reynolds number at 1000. The effects of clearance, aspect ratio and rotational rates are studied using carry-over coefficient and discharge coefficient. It is observed that a secondary recirculation zone (SRZ) occurs inside a seal cavity at above certain Taylor's number. This significantly changes the flow field in the seal and the cavity which results an increases in pressure drop across the seal for a given flow boundary condition. This formation of SRZ's is more evident in incompressible flow and occur at prohibitively high rotational speeds in case of air (compressible flow). It is also observed that flow with teeth on rotor are characterized by SRZ's while it's not case with teeth on stator. A flow map which shows the onset and presence of SRZ's is shown. The ratio of tangential velocity of the shaft to the average of the swirl velocity in a cavity at various geometries of the cavities are presented. They seem to be decreasing with decreasing depth and follow a linear pattern with the aspect ratios of the cavity.Morrison, Gerald L.2011-10-21T22:03:57Z2011-10-22T07:12:27Z2011-10-21T22:03:57Z2011-10-22T07:12:27Z2011-082011-10-21August 2011thesistextapplication/pdfhttp://hdl.handle.net/1969.1/ETD-TAMU-2011-08-9728en_US
collection NDLTD
language en_US
format Others
sources NDLTD
topic Labyrinth Seals
CFD
spellingShingle Labyrinth Seals
CFD
Yamsani, Vamshi Krishna
Numerical Study of Geometry and Rotation Dependence on the Flow in Labyrinth Seals
description A computational study was conducted on the flow, both compressible and incompressible, in a labyrinth seal at various geometries and rotation rates. The computations were performed using the commercial software Fluent® which solves the k-ε model to predict the flow field in the seal. Various clearance-pitch ratios were used to study the effect of clearance on the flow. The aspect ratio, which is defined as the pitch-height ratio was varied to study the influence of the depth of the cavity on the flow as a whole. These studies span a range of Taylor's number that is defined accordingly, while fixing the Reynolds number at 1000. The effects of clearance, aspect ratio and rotational rates are studied using carry-over coefficient and discharge coefficient. It is observed that a secondary recirculation zone (SRZ) occurs inside a seal cavity at above certain Taylor's number. This significantly changes the flow field in the seal and the cavity which results an increases in pressure drop across the seal for a given flow boundary condition. This formation of SRZ's is more evident in incompressible flow and occur at prohibitively high rotational speeds in case of air (compressible flow). It is also observed that flow with teeth on rotor are characterized by SRZ's while it's not case with teeth on stator. A flow map which shows the onset and presence of SRZ's is shown. The ratio of tangential velocity of the shaft to the average of the swirl velocity in a cavity at various geometries of the cavities are presented. They seem to be decreasing with decreasing depth and follow a linear pattern with the aspect ratios of the cavity.
author2 Morrison, Gerald L.
author_facet Morrison, Gerald L.
Yamsani, Vamshi Krishna
author Yamsani, Vamshi Krishna
author_sort Yamsani, Vamshi Krishna
title Numerical Study of Geometry and Rotation Dependence on the Flow in Labyrinth Seals
title_short Numerical Study of Geometry and Rotation Dependence on the Flow in Labyrinth Seals
title_full Numerical Study of Geometry and Rotation Dependence on the Flow in Labyrinth Seals
title_fullStr Numerical Study of Geometry and Rotation Dependence on the Flow in Labyrinth Seals
title_full_unstemmed Numerical Study of Geometry and Rotation Dependence on the Flow in Labyrinth Seals
title_sort numerical study of geometry and rotation dependence on the flow in labyrinth seals
publishDate 2011
url http://hdl.handle.net/1969.1/ETD-TAMU-2011-08-9728
work_keys_str_mv AT yamsanivamshikrishna numericalstudyofgeometryandrotationdependenceontheflowinlabyrinthseals
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