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The full hemisphere integrating measurement of the reflectance of black cavity

机译:黑洞反射率的全半球积分测量

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The conical black cavities are used in the Solar Irradiance Absolute Radiometers (SIARs) of the solar constant monitor aboard on the SZ spaceship and of the Solar Total Irradiance Monitor (STIM) aboard on sun-synchronous polar orbit weather satellites. A low reflectance measurement instrument which is used for making the integrating measurement on the reflectance of the conical black cavity in a high precision within the full hemisphere (include the entrance of the Ulbrichtsphere) has been constructed. The characteristic of the instrument is the employment of a semi-transparent mirror, which is mounted in an inclination angle of 45 degrees in front of the entrance of the Ulbrichtsphere. The incident beam is reflected to the black cavity or white board by the semi-transparent mirror. A portion of those, which is made diffused reflection through the black cavity or white board, is measured by the detector located in the side face of the Ulbrichtsphere, and the other portion which is reflected to the entrance is measured by the other detector, after passing through the semi-transparent mirror, and then being focused on by an ellipsoidal mirror. The two measurement data are added up to get the integrating reflectance within full hemisphere. The presentation and verification on the measurement result of the reflectance of the black cavity and its precision are described in this article. The absolute accuracy can reach 0.012%.
机译:圆锥形的黑色空腔用于SZ飞船上的太阳常数监测器的太阳辐照度绝对辐射计(SIAR)和太阳同步极地轨道气象卫星上的太阳总辐照度监测器(STIM)中。构造了一种低反射率的测量仪器,该仪器用于在整个半球(包括Ulbrichtsphere的入口)内高精度地对圆锥形黑洞的反射率进行积分测量。该仪器的特点是采用了半透明镜,该镜以45度的倾斜角安装在Ulbrichtsphere入口的前面。入射光束被半透明镜反射到黑腔或白板上。其中一部分通过黑洞或白板进行漫反射,然后通过位于Ulbrichtsphere侧面的探测器进行测量,而反射到入口的另一部分通过另一个探测器进行测量,之后穿过半透明镜,然后被椭圆形镜聚焦。将这两个测量数据相加以获得整个半球内的积分反射率。本文介绍了黑洞反射率测量结果及其精度的介绍和验证。绝对精度可以达到0.012%。

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