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The use of cooled axial conduction guarded probe for the measurement of transient heat flux by calibrating the unit step response

机译:通过校准单位阶跃响应,使用冷却的轴向传导防护探头来测量瞬态热通量

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摘要

A novel water-cooled device with inserted thermocouple beneath the sensing surface is designed for long-duration heat flux measurement in harsh environments. The unit step response (USR) of the device, which is temperature-independent, is calibrated using a diode laser system. The heat flux is determined from the calibrated USR and measured temperature by solving an inverse heat conduction problem (IHCP). By calibration, the device achieves a high accuracy in measuring heat fluxes up to 800 kW/m2 The proposed procedure inherently accounts for all system parameters, including the thermocouple dynamics and the surface emissivity, which can decrease the experimental uncertainty. A detailed uncertainty analysis reveals the uncertainty of reconstructed heat flux can be significantly decreased with well-designed calibration tests and a prudent choice of the regularization parameter. Two examples for laser heat flux measurement are tested to validate the feasibility of the proposed method by comparing with the measurements from a reference sensor. The experimental results illustrate that the estimations are stable and accurate.
机译:一种新颖的水冷装置,其在感测表面下方插入了热电偶,旨在用于恶劣环境下的长时间热通量测量。器件的单位阶跃响应(USR)与温度无关,使用二极管激光系统进行校准。通过解决反导热问题(IHCP),可以从校准的USR和测得的温度确定热通量。通过校准,该设备在测量高达800 kW / m2的热通量时具有很高的精度。拟议的程序固有地考虑了所有系统参数,包括热电偶动力学和表面发射率,可以降低实验不确定性。详细的不确定性分析表明,通过精心设计的校准测试和谨慎选择正则化参数,可以显着降低重构热通量的不确定性。测试了两个激光热通量测量示例,以通过与参考传感器的测量值进行比较来验证所提出方法的可行性。实验结果表明,该估计是稳定和准确的。

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