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首页> 外文期刊>International journal of engine research >Measurement, analysis and modeling of centrifugal compressor flow for low pressure ratios
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Measurement, analysis and modeling of centrifugal compressor flow for low pressure ratios

机译:低压比离心压缩机流量的测量,分析和建模

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Increasingly stringent emission legislation combined with consumer performance demands has driven the development of downsized engines with complex turbocharger arrangements. To handle the complexity, model-based methods have become a standard tool, and these methods need models that are capable of describing all operating modes of the systems. The models should also be easily parametrized and enable extrapolation. Both single- and multi-stage turbo systems can operate with a pressure drop over their compressors, both stationary and transient. The focus here is to develop models that can describe centrifugal compressors that operate in both normal region and restriction region from standstill to maximum speed. The modeling results rely on an analysis of 305 automotive compressor maps, whereof five contain measured restriction operation and two contain measured standstill characteristic. A standstill compressor is shown to choke at a pressure ratio of approximately 0.5, and the corresponding choking corrected mass flow being approximately 50% of the compressor maximum flow capacity. Both choking pressure ratio and flow are then shown to increase with corrected speed, and the choking pressure ratio is shown to occur at pressure ratios larger than unity for higher speeds. Simple empirical models are proposed and shown to be able to describe high flow and pressure ratios down to choking conditions well. A novel compressor flow model is proposed and validated to capture the high flow asymptote well, for speeds from standstill up to maximum.
机译:日益严格的排放法规与消费者的性能要求相结合,推动了具有复杂涡轮增压器布置的小型发动机的发展。为了处理复杂性,基于模型的方法已成为标准工具,并且这些方法需要能够描述系统所有操作模式的模型。模型也应易于参数化并能够外推。单级和多级涡轮增压系统均可在其压缩机的压降(静态和瞬态)下运行。此处的重点是开发可描述离心压缩机的模型,这些离心压缩机在从静止到最大速度的正常区域和限制区域都可运行。建模结果基于对305个汽车压缩机图的分析,其中五个包含测得的限制运行,两个包含测得的静止特性。静止的压缩机显示为在大约0.5的压力比下处于节流状态,相应的节流校正质量流量约为压缩机最大流量的50%。然后,示出了窒息压力比和流量都随着校正速度的增加而增加,并且对于更高的速度,窒息压力比以大于1的压力比出现。提出了简单的经验模型,并显示了能够很好地描述直至窒息条件的高流量和压力比。提出并验证了一种新颖的压缩机流量模型,可以很好地捕获高流量渐近线,适用于从静止到最大的速度。

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