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The effect of inlet conditions on the flow and heat transfer in multiple rotating cavity with axial throughflow
作者姓名:Christopher Long  Peter Childs
作者单位:TFMRC Department of Engineering and Design Universityof Sussex,Brighton,BN1 9QT,UK,TFMRC,Department of Engineering and Design Universityof Sussex,Brighton,BN1 9QT,UK
基金项目:The Engineering and Physical Sciences Research Council,RollsRoyce Plc,the European Union and participating companies in the ICAS-GT2 (Flow and Heat Transfer in the Rotating Cooling Air Systems of Gas Turbines 2) programme of research,funded by the 5th Framework of the GROWTH programme of the European Union.
摘    要:This paper discusses experimental results from two different build configurations of a heated multiple rotating cavity test rig.Measurements of heat transfer from the discs and tangential velocities are presented.The test rig is a 70% full scale version of a high pressure compressor stack of an axial gas turbine engine.Of particular interest are the internal cylindrical cavities formed by adjacent discs and the interaction of these with a central axial throughflow of cooling air.Tests were carried out for a range of non-dimensional parameters representative of high pressure compressor internal air system flows (Reφup to 5×106 and Rez up to 2×105).Two different builds have been tested.The most significant difference between these two build configurations is the size of the annular gap between the (non-rotating) drive shaft and the bores of the discs.The heat transfer data were obtained from thermocouple measurements of surface temperature and a conduction solution method.The velocity measurements were made using a two component,LDA system.The heat transfer results from the discs show differences between the two builds.This is attributed to the wider annular gap allowing more of the throughflow to penetrate into the cavity.There are also significant differences between the radial distributions of tangential velocity in the two builds of the test rig.For the narrow annular gap,there is an increase of non-dimensional tangential velocity Vφ/Ωr with radial location to solid body rotation Vφ/Ωr=1.For the wider annular gap,the non-dimensional velocities show a decrease with radial location to solid body rotation.

文章编号:1000-8055(2007)05-0683-11
收稿时间:2006/10/16 0:00:00
修稿时间:2006年10月16

The effect of inlet conditions on the flow and heat transfer in multiple rotating cavity with axial throughflow
Christopher Long,Peter Childs.The effect of inlet conditions on the flow and heat transfer in multiple rotating cavity with axial throughflow[J].Journal of Aerospace Power,2007,22(5):683-693.
Authors:Christopher Long and Peter Childs
Institution:TFMRC,Department of Engineering and Design University of Sussex,Brighton,BN1 9QT,UK
Abstract:This paper discusses experimental results from two different build configurations of a heated multiple rotating cavity test rig.Measurements of heat transfer from the discs and tangential velocities are presented.The test rig is a 70% full scale version of a high pressure compressor stack of an axial gas turbine engine.Of particular interest are the internal cylindrical cavities formed by adjacent discs and the interaction of these with a central axial throughflow of cooling air.Tests were carried out for a range of non-dimensional parameters representative of high pressure compressor internal air system flows (Reφup to 5×106 and Rez up to 2×105).Two different builds have been tested.The most significant difference between these two build configurations is the size of the annular gap between the (non-rotating) drive shaft and the bores of the discs.The heat transfer data were obtained from thermocouple measurements of surface temperature and a conduction solution method.The velocity measurements were made using a two component,LDA system.The heat transfer results from the discs show differences between the two builds.This is attributed to the wider annular gap allowing more of the throughflow to penetrate into the cavity.There are also significant differences between the radial distributions of tangential velocity in the two builds of the test rig.For the narrow annular gap,there is an increase of non-dimensional tangential velocity Vφ/Ωr with radial location to solid body rotation Vφ/Ωr=1.For the wider annular gap,the non-dimensional velocities show a decrease with radial location to solid body rotation.
Keywords:axial  cavity  multiple  heat transfer  flow  conditions  inlet  decrease  location  solid  body  rotation  increase  narrow  radial  distributions  tangential velocity  show  differences  system
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