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Long-duration heat load measurement approach by novel apparatus design and highly efficient algorithm

机译:通过新颖的装置设计和高效算法的长持续时间热负荷测量方法

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摘要

Improving the surface heat load measurement technique for vehicles in aerodynamic heating environments is imperative, regarding aspects of both the apparatus design and identification efficiency. A simple novel apparatus is designed for heat load identification, taking into account the lessons learned from several aerodynamic heating measurement devices. An inverse finite difference scheme (invFDM) for the apparatus is studied to identify its surface heat flux from the interior temperature measurements with high efficiency. A weighted piecewise regression filter is also proposed for temperature measurement prefiltering. Preliminary verification of the invFDM scheme and the filter is accomplished via numerical simulation experiments. Three specific pieces of apparatus have been concretely designed and fabricated using different sensing materials. The aerodynamic heating process is simulated by an inductively coupled plasma wind tunnel facility. The identification of surface temperature and heat flux from the temperature measurements is performed by invFDM. The results validate the high efficiency, reliability and feasibility of heat load measurements with different heat flux levels utilizing the designed apparatus and proposed method.
机译:关于装置设计和识别效率的方面,提高空气动力加热环境中车辆的表面热负荷测量技术是必要的。简单的新颖设备设计用于热负荷识别,考虑到来自多个空气动力学加热测量装置的经验教训。研究了该装置的逆有限差分方案(INVFDM)以高效地识别其从内部温度测量的表面热通量。还提出了一种加权分段回归过滤器,用于温度测量预过滤器。通过数值模拟实验完成INVFDM方案和滤波器的初步验证。使用不同的传感材料具体设计和制造了三个特定的装置。通过电感耦合等离子体风洞设施模拟空气动力学加热过程。从温度测量的表面温度和热通量的识别由INVFDM进行。结果验证了利用所设计的装置和提出的方法验证热负荷测量的高效率,可靠性和可行性,以及利用所设计的装置和方法。

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