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A coaxial thermocouple for shock tunnel applications

机译:用于冲击隧道应用的同轴热电偶

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A chromel-constantan coaxial surface junction thermocouple has been designed, fabricated, calibrated, and tested to measure the temperature-time history on the surface of a body in a hypersonic freestream of Mach 8 in a shock tunnel. The coaxial thermocouple with a diameter of 3.25 mm was flush mounted in the surface of a hemisphere of 25 mm diameter. The hypersonic freestream was of a very low temperature and density, and had a flow time of about a millisecond. Preliminary test results indicate that the thermocouple is quite sensitive to low temperature-rarefied freestreams, and also has a response time of a few microseconds ( ≈ 5 μs) to meet the requirements of short duration transient measurements. The sensor developed is accurate, robust, reproducible, and is highly inexpensive. © 2010 American Institute of Physics Article Outline INTRODUCTION MATERIALS AND EXPERIMENTS RESULTS Signals Signal processing and data reduction Theoretical analysis Numerical simulations Data analysis CONCLUSION
机译:设计,制造,校准和测试了铬-康斯坦坦同轴表面结热电偶,以测量冲击隧道中8马赫的高超声速自由流中物体表面的温度-时间历史。将直径为3.25mm的同轴热电偶齐平安装在直径为25mm的半球表面上。高超声速自由流的温度和密度非常低,流动时间约为一毫秒。初步测试结果表明,热电偶对低温提升的自由流非常敏感,并且响应时间仅为几微秒(≈5μs),可以满足短时瞬态测量的要求。开发的传感器准确,耐用,可重现且价格便宜。 ©2010美国物理研究所文章大纲引言材料和实验结果信号信号处理和数据归约理论分析数值模拟数据分析结论

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