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Development and validation of a 1D model for turbocharger compressors under deep-surge operation

机译:深度喘振下涡轮增压器压缩机一维模型的开发和验证

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The paper presents the validation of a 1D compressor model (1DCM) applied to the simulation of deep surge operation. The compressor is described following an enhanced map-based approach, where proper "virtual pipes" are placed upstream and downstream the compressor to deal with the mass and energy storage and wave propagation effects. The proposed methodology, which takes into account main flow and thermal loss mechanisms, is based on the employment of "extended" compressor maps obtained through a steady version of the 1DCM. The tuning and validation of the 1DCM have been carried out comparing its results with the experimental data. Preliminarily, the steady version of the 1DCM is tuned against to the measured map for various rotational speeds. Subsequently, it is used to derive the extended map, including both direct and reverse flow branches. Finally, the unsteady version of the 1DCM is validated against experimental data denoting a satisfactory agreement, especially in terms of pulse frequency, amplitude and global shape. Summarizing, the proposed model, combining the reduced computational effort typical of 1D simulation with the adoption of advanced features such as "virtual pipe" and extended compressor map, shows the capability to capture the phenomenology of the compressor surging. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文介绍了用于深度喘振运行的一维压缩机模型(1DCM)的验证。压缩机是根据基于地图的增强方法进行描述的,其中在压缩机的上游和下游放置了适当的“虚拟管道”,以处理质量和能量存储以及波传播效应。所提出的方法考虑了主流和热损失机制,是基于使用通过1DCM的稳定版本获得的“扩展”压缩机图的。已将1DCM的结果与实验数据进行了比较和验证。首先,针对各种转速,将1DCM的稳定版本调整到实测图。随后,它用于导出扩展图,包括直接和反向流分支。最后,根据表示满意协议的实验数据验证了1DCM的非稳态版本,特别是在脉冲频率,幅度和整体形状方面。总而言之,所提出的模型结合了减少的一维模拟的典型计算量和采用诸如“虚拟管道”和扩展的压缩机图等高级功能,显示了捕获压缩机喘振现象的能力。 (C)2017 Elsevier Ltd.保留所有权利。

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