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首页> 外文期刊>Journal of Sound and Vibration >Investigation of turbocharger compressor surge inception by means of an acoustic two-port model
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Investigation of turbocharger compressor surge inception by means of an acoustic two-port model

机译:通过声学双端口模型调查涡轮增压器压缩机浪涌飙升

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AbstractThe use of centrifugal compressors have increased tremendously in the last decade being implemented in the modern IC engine design as a key component. However, an efficient implementation is restricted by the compression system surge phenomenon. The focus in the investigation of surge inception have mainly been on the aerodynamic field while neglecting the acoustic field. In the present work a new method based on the full acoustic 2-port model is proposed for investigation of centrifugal compressor stall and surge inception. Essentially, the compressor is acoustically decoupled from the compression system, hence enabling the determination of sound generation and the quantification of internal aero-acoustic coupling effects, both independently of the connected pipe system. These frequency dependent quantities are indicating if the compressor is prone to self-sustained oscillations in case of positive feedback when installed in a system. The method is demonstrated on experimentally determined 2-port data of an automotive turbocharger centrifugal compressor under a variety of realistic operating conditions.]]>
机译:<![CDATA [ 抽象 在现代IC发动机设计中实现的最后十年的使用离心压缩机的使用巨大增加成分。然而,有效的实施是由压缩系统浪涌现象的限制。在忽视声场的同时,对浪涌成立调查的重点主要是在空气动力学场上。在本作品中,提出了一种基于全声2端口模型的新方法,用于研究离心压缩机摊位和浪涌初始化。基本上,压缩机从压缩系统声学地解耦,因此可以独立于所连接的管道系统确定声音产生和内部航空声耦合效果的量化。在安装在系统中时,这些频率相关的数量是指示压缩机是否易于在正反馈的情况下易于自持续振荡。该方法在各种现实操作条件下在汽车涡轮增压器离心压缩机的实验确定的2端口数据上进行了说明。 ]]>

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