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Operation and investigation of a tilted bottom cavity for pyrgeometer characterizations

机译:倾斜底腔的操作和研究,用于热辐射计的表征

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摘要

A new cavity for pyrgeometer characterizations has been built at the Infrared Radiometry Section of the World Radiation Center (WRC-IRS) at PMOD/WRC. The calculated effective emissivity of 0.99993 +- 0.00033 was obtained from Monte Carlo simulations taking into account the geometry and the measured temperature distributions of the cavity. The cavity is operated in a temperature range of -30 deg C to +30 deg C and is initially flushed with nitrogen to reduce the relative humidity in the cavity. The estimated uncertainties of retrieved pyrgeometer parameters k_(1), k_(2), and k_(3) are +-0.024, +-0.0008, and +-0.03, respectively. The relative uncertainty of pyrgeometer sensitivity C is 0.8percent. The comparison with the cavity used since 1995 at PMOD/WRC gave average differences of 0.005, 0.00026, and 0.08 for k_(1), k_(2), and k_(3), respectively. The pyrgeometer sensitivity retrieved with the new cavity is on average 1.0percent higher than with the original cavity.
机译:在PMOD / WRC的世界辐射中心(WRC-IRS)的红外辐射测量科建立了一个用于高温辐射计表征的新腔。考虑到腔的几何形状和测得的温度分布,从蒙特卡洛模拟获得了0.99993±0.00033的有效发射率。空腔在-30摄氏度至+30摄氏度的温度范围内运行,并首先用氮气冲洗以降低空腔中的相对湿度。检索到的测高仪参数k_(1),k_(2)和k_(3)的估计不确定度分别为+ -0.024,+-0.0008和+ -0.03。高温计灵敏度C的相对不确定度为0.8%。与1995年以来在PMOD / WRC上使用的腔进行比较,得出k_(1),k_(2)和k_(3)的平均差分别为0.005、0.00026和0.08。通过新腔获得的热几何仪灵敏度平均比原始腔高出1.0%。

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  • 来源
    《Applied optics》 |2008年第24期|共7页
  • 作者

    Julian Grobner;

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