Nicoll K A, Harrison R G
Department of Meteorology, University of Reading, P.O. Box 243, Earley Gate, Reading, Berks, RG6 6BB, United Kingdom.
Rev Sci Instrum. 2012 Feb;83(2):025111. doi: 10.1063/1.3685252.
A low cost, disposable instrument for measuring solar radiation during meteorological balloon flights through cloud layers is described. Using a photodiode detector and low thermal drift signal conditioning circuitry, the device showed less than 1% drift for temperatures varied from +20 °C to -35 °C. The angular response to radiation, which declined less rapidly than the cosine of the angle between the incident radiation and normal incidence, is used for cloud detection exploiting the motion of the platform. Oriented upwards, the natural motion imposed by the balloon allows cloud and clear air to be distinguished by the absence of radiation variability within cloud, where the diffuse radiation present is isotropic. The optical method employed by the solar radiation instrument has also been demonstrated to provide higher resolution measurements of cloud boundaries than relative humidity measurements alone.
描述了一种低成本的一次性仪器,用于在气象气球穿过云层飞行期间测量太阳辐射。该装置使用光电二极管探测器和低热漂移信号调节电路,在温度从+20°C变化到-35°C时,漂移小于1%。对辐射的角响应下降速度比入射辐射与垂直入射之间角度的余弦慢,利用平台的运动,该角响应被用于云检测。向上定向时,气球施加的自然运动会使云与晴空得以区分,因为云中不存在辐射变化,其中存在的漫射辐射是各向同性的。太阳辐射仪器采用的光学方法也已被证明,与仅进行相对湿度测量相比,能提供更高分辨率的云边界测量结果。