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Theoretical modelling of hot gas ingestion through turbine rim seals 被引量:5
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作者 J.Michael Owen 《Propulsion and Power Research》 SCIE 2012年第1期1-11,共11页
The rim seals of gas turbines are used to prevent or reduce the ingestion of hot mainstream gas into the wheel-space between the turbine rotor and its adjacent stationary casing.The ingestion is caused by local pressu... The rim seals of gas turbines are used to prevent or reduce the ingestion of hot mainstream gas into the wheel-space between the turbine rotor and its adjacent stationary casing.The ingestion is caused by local pressure differences between the mainstream and the wheel-space;ingress usually occurs where the mainstream pressure is higher than that in the wheel-space and egress occurs where it is lower.Sealing air,which is supplied to the wheel-space,flows through the seal clearance and joins the mainstream flow.Too much sealing air is inefficient;too little can lead to disastrous consequences.The nozzle guide vanes create three-dimensional(3D)variations in the distribution of pressure in the mainstream annulus and the turbine blades create unsteady effects.Computational fluid dynamics(CFD)is both time-consuming and expensive for these 3D unsteady flows,and engine designers tend to use correlations or simple models to predict ingress.This paper describes the application of simple‘orifice models’,the analytical solutions of which can be used to calculate the sealing effectiveness of turbine rim seals.The solutions agree well with available data for externally-induced ingress,where the effects of rotation are negligible,for rotationally-induced ingress,where the effects of the external flow are small,and for combined ingress,where the effects of both external flow and rotation are significant. 展开更多
关键词 Gas turbine Rim seal Hot gas ingestion orifice models Rotationally-induced ingress Externally-induced ingress
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向心涡轮U型盘腔封严特性研究 被引量:2
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作者 李耀阳 张华良 +2 位作者 尹钊 谭春青 陈海生 《工程热物理学报》 EI CAS CSCD 北大核心 2020年第11期2704-2710,共7页
本文采用数值方法对向心涡轮U型盘腔开展研究。在验证Orifice Model适用性的基础之上,从模型的物理内涵出发,重新定义了反映燃气入侵强度的参数δ。研究表明,恒转速盘腔封严效率是关于入侵强度δ的单调递减函数,随着δ降低密封效率增大... 本文采用数值方法对向心涡轮U型盘腔开展研究。在验证Orifice Model适用性的基础之上,从模型的物理内涵出发,重新定义了反映燃气入侵强度的参数δ。研究表明,恒转速盘腔封严效率是关于入侵强度δ的单调递减函数,随着δ降低密封效率增大,当δ=2.7时,封严效率可达到80%水平。进口段长度通过影响入侵强度参数值,进而对封严效率产生影响。同时研究发现,Orifice Model中参数取值还应取决于盘腔进口段长度,进口段越长最小封严流量值越小。 展开更多
关键词 径向主流 U型盘腔 orifice model 入侵强度
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