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Water heat pipe blackbody as a reference spectral radiance source between 50℃ and 250℃

机译:水热管黑体作为50℃至250℃之间的参考光谱辐射源

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Realization of a radiometric temperature scale for near ambient temperatures with accuracy at the 20 to 50 mK level is crucial for a number of demanding military and commercial applications. In support of such measurements, radiation sources with high stability and spatial uniformity must be developed as reference and working standards. Traditionally, the temperature scale, maintained at the National Institute of Standards and Technology (NIST), relies on water bath and oil bath blackbodies in this temperature range. Recently, a water heat pipe blackbody was used at NIST as a spectral radiance source in a spectral emissivity measurement facility. Now a new, more versatile high emissivity water heat pipe blackbody was designed and characterized to be used as a reference radiance source for the radiometric temperature scale realization between 50℃ and 250℃. Furthermore, it will serve as a reference source for the infrared spectral radiance measurements between 2.5 μm and 20 μm. The calculated spectral emissivity of the painted copper alloy cavity was verified by reflectance measurements using a CO_2 laser at 10.6 μm wavelength. The spatial thermal uniformity and stability of the blackbody were characterized. Two independent realizations of the radiometric temperature scale were compared in order to verify the accuracy of the scale. Radiance temperature, calculated from the cavity temperature measured with a calibrated PRT contact thermometer and from the emissivity of the cavity, was compared to the radiance temperature, directly measured with a reference pyrometer, which was calibrated with a set of fixed point blackbodies. The difference was found to be within measurement uncertainties.
机译:对于许多要求苛刻的军事和商业应用,实现接近环境温度的辐射温度标度(精度在20至50 mK级别)至关重要。为了支持这种测量,必须开发具有高稳定性和空间均匀性的辐射源作为参考和工作标准。传统上,由美国国家标准技术研究院(NIST)维护的温度标度在此温度范围内依赖于水浴和油浴黑体。最近,NIST使用水热管黑体作为光谱发射率测量设备中的光谱辐射源。现在,设计并开发了一种新的,用途更广的高辐射率水热管黑体,并将其用作参考辐射源,以实现50℃至250℃的辐射温度标度。此外,它将用作2.5微米至20微米之间红外光谱辐射测量的参考源。通过使用CO_2激光在10.6μm波长下的反射率测量来验证所计算的涂漆铜合金腔体的光谱发射率。表征了黑体的空间热均匀性和稳定性。比较了辐射温度标尺的两个独立实现,以验证温度标尺的准确性。将通过校准的PRT接触温度计测量的腔体温度和腔体的发射率计算出的辐射温度与直接用参考高温计测量的辐射温度进行比较,该辐射体温度通过一组定点黑体进行了校准。发现差异在测量不确定度之内。

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