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首页> 外文期刊>Journal of turbomachinery >Spatial Flow-Field Approximation Using Few Thermodynamic Measurements—Part I: Formulation and Area Averaging
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Spatial Flow-Field Approximation Using Few Thermodynamic Measurements—Part I: Formulation and Area Averaging

机译:使用很少的热力学测量结果进行空间流场逼近—第一部分:公式化和面积平均

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摘要

Our investigation raises an important question that is of relevance to the wider turbomachinery community: how do we estimate the spatial average of a flow quantity given finite (and sparse) measurements? This paper seeks to advance efforts to answer this question rigorously. In this paper, we develop a regularized multivariate linear regression framework for studying engine temperature measurements. As part of this investigation, we study the temperature measurements obtained from the same axial plane across five different engines yielding a total of 82 datasets. The five different engines have similar architectures and therefore similar temperature spatial harmonics are expected. Our problem is to estimate the spatial field in engine temperature given a few measurements obtained from thermocouples positioned on a set of rakes. Our motivation for doing so is to understand key engine temperature modes that cannot be captured in a rig or in computational simulations, as the cause of these modes may not be replicated in these simpler environments. To this end, we develop a multivariate linear least-squares model with Tikhonov regularization to estimate the 2D temperature spatial field. Our model uses a Fourier expansion in the circumferential direction and a quadratic polynomial expansion in the radial direction. One important component of our modeling framework is the selection of model parameters, i.e., the harmonics in the circumferential direction. A training-testing paradigm is proposed and applied to quantify the harmonics.
机译:我们的研究提出了一个与更广泛的涡轮机械界相关的重要问题:在有限(和稀疏)测量的情况下,我们如何估算流量的空间平均值?本文力求进一步努力,以严格回答这个问题。在本文中,我们开发了用于研究发动机温度测量值的正则化多元线性回归框架。作为这项研究的一部分,我们研究了从5个不同发动机的同一轴向平面获得的温度测量结果,总共产生了82个数据集。五个不同的引擎具有相似的架构,因此预计会有相似的温度空间谐波。我们的问题是给定从一组耙上的热电偶获得的一些测量值来估计发动机温度的空间场。我们这样做的动机是了解无法在钻机或计算仿真中捕获的关键发动机温度模式,因为这些模式的原因可能无法在这些较简单的环境中复制。为此,我们使用Tikhonov正则化开发了多元线性最小二乘模型,以估算2D温度空间场。我们的模型使用沿圆周方向的傅立叶展开和沿径向方向的二次多项式展开。我们的建模框架的一个重要组成部分是模型参数的选择,即圆周方向上的谐波。提出了一种训练测试范例,并将其应用于量化谐波。

著录项

  • 来源
    《Journal of turbomachinery》 |2020年第2期|021006.1-021006.11|共11页
  • 作者单位

    Department of Engineering University of Cambridge Cambridge CB2 1PZ UK Data-Centric Engineering The Alan Turing Institute London NW1 2DB UK;

    Civil Aerospace Rolls-Royce plc Derby DE24 8BJ UK;

    Department of Mathematics Imperial College London London SW7 2AZ UK Data-Centric Engineering The Alan Turing Institute London NW1 2DB UK;

    Department of Engineering University of Cambridge Cambridge CB2 1P2 UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    measurement techniques;

    机译:测量技术;

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