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到达时间仿真的状态空间模型和离线叶片端定时软件特性描述方法。

State-Space Model for Arrival Time Simulations and Methodology for Offline Blade Tip-Timing Software Characterization.

机构信息

Department of Engineering, University of Perugia, Via G. Duranti 93, 06125 Perugia, Italy.

Baker Hughes, Via F. Matteucci 2, 50127 Florence, Italy.

出版信息

Sensors (Basel). 2023 Feb 26;23(5):2600. doi: 10.3390/s23052600.

Abstract

Blade tip-timing is an extensively used technique for measuring blade vibrations in turbine and compressor stages; it is one of the preferred techniques used for characterizing their dynamic behaviors using non-contact probes. Typically, arrival time signals are acquired and processed by a dedicated measurement system. Performing a sensitivity analysis on the data processing parameters is essential for the proper design of tip-timing test campaigns. This study proposes a mathematical model for generating synthetic tip-timing signals, descriptive of specific test conditions. The generated signals were used as the controlled input for a thorough characterization of post-processing software for tip-timing analysis. This work represents the first step in quantifying the uncertainty introduced by tip-timing analysis software into user measurements. The proposed methodology can also offer essential information for further sensitivity studies on parameters that influence the accuracy of data analysis during testing.

摘要

叶片尖定时技术是一种广泛用于测量涡轮和压气机级中叶片振动的技术;它是使用非接触探头来描述其动态特性的首选技术之一。通常,通过专用测量系统获取和处理到达时间信号。对数据处理参数进行灵敏度分析对于正确设计尖定时测试至关重要。本研究提出了一种生成描述特定测试条件的合成尖定时信号的数学模型。生成的信号被用作尖定时分析后处理软件的全面特性描述的受控输入。这项工作代表了量化尖定时分析软件引入用户测量中的不确定性的第一步。该方法还可以为进一步研究影响测试期间数据分析准确性的参数的灵敏度提供重要信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7784/10007305/47a8c00f770d/sensors-23-02600-g001.jpg

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