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A New Calibration Method for Thin-Film Resistive Temperature Gauges For Estimating Heat Flux in Shock Tunnel Applications

机译:一种新的薄膜电阻温度仪估算冲击隧道应用中热通量的校准方法

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This paper describes a surface heat flux calibration method applicable to thin-film resistive temperature gauges; co-axial thermocouples; and, null-point calorimetry. A first-kind Volterra integral equation is derived from frequency analysis of the linearized, semi-infinite heat equation applicable to short-time applications. The resulting linearized calibration integral equation is developed in alternative forms involving temperature, Kirchhoff temperature and thermophysical properties. Data are simulated using the fully nonlinear heat equation that properly accounts for temperature dependent property variations. Simulated temperature data from the nonlinear problem attempts to emulate a physical experiment. Accurate and stable results are reported even in the presence of significantly noisy data. Several revelations are presented within the calibration framework including alternative linearizations based on thermophysical properties. Several advantages to this approach are discussed and demonstrated in the context of these gauges. Advantages of the approach include: a) only one unknown "regularization" parameter is required; b) estimation of the optimal regularization parameter is systematically and theoretically developed; and, demonstrated through the energy residuals, c) computational coding is minimal and computer run times are short, and d) results indicate robustness, stability and accuracy in the methodology.
机译:本文描述了一种适用于薄膜电阻温度表的表面热通量校准方法;共轨热电偶;而且,零点燃率。第一种Volterra积分方程是从适用于短时应用的线性化的半无限热方程的频率分析来源的。由此产生的线性化校准积分方程是涉及温度,磷喉温度和热物理性质的替代形式的。使用完全非线性的热方程模拟数据,该分析适用于温度相关性的性能变化。来自非线性问题的模拟温度数据试图模拟物理实验。即使存在明显嘈杂的数据,也会报告准确和稳定的结果。在校准框架内提出了几种启示,包括基于热物理性质的替代线性化。在这些仪表的背景下讨论和证明了这种方法的几个优点。方法的优点包括:a)只需要一个未知的“正则化”参数; b)系统地和理论上开发了最佳正则化参数的估计;并且,通过能量残差证明C)计算编码是最小的,计算机运行时间短,并且D)结果表明方法中的鲁棒性,稳定性和准确性。

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