一种利用云的有效辐射温度改进云液态水和水蒸气检索的算法

J. Bobak, C. Ruf
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引用次数: 1

摘要

讨论了一种能显著降低从辐射亮度温度综合反演云液态水和水蒸气的均方根误差的算法。该算法利用地表温度、云底温度和云底高度估算大气的有效辐射温度。地表温度很容易测量,而云底温度和云底高度可以分别用高温计和高度计测量。有效辐射温度T/sub /在两个独立的频率上估计,对应于测量辐射亮度温度的两个频率,然后使用这些估计来修改亮度温度。对于宾夕法尼亚大学帕克(University Park)编制的数据库,有效辐射温度的估计值将检索云液态水含量的均方根误差从37减小到21 /spl mu/m,并将检索阴天条件下水蒸气的均方根误差从0.20减小到0.11 cm。回收的液态水含量不确定度的降低与Han和Thomson(1)在热带条件下获得的结果一致。Han和Thomson使用了云底高度和云底温度的测量,以及气候平均有效辐射温度来改进他们的检索。
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An algorithm for improving the retrieval of cloud liquid water and water vapor using effective radiating temperature of clouds
An algorithm is discussed which can significantly lower the rms errors in integrated cloud liquid water and water vapor retrieval from radiometric brightness temperature. This algorithm makes use of the effective radiating temperature of the atmosphere which is estimated from surface temperature, cloud base temperature, and cloud base height. The surface temperature is easily measured, while the cloud base temperature and the cloud base height may be measured by use of a pyrometer and a ceilometer, respectively. The effective radiating temperature T/sub eff/ is estimated at two separate frequencies corresponding to the two frequencies used to measure radiometric brightness temperature, and these estimates are then used to modify the brightness temperatures. For a data base compiled at University Park, Pennsylvania, the estimates of effective radiating temperature reduced the rms error in retrieving cloud liquid water content from 37 to 21 /spl mu/m, and reduced the rms error in retrieving water vapor under cloudy conditions from 0.20 to 0.11 cm. The reduction in the uncertainty in retrieved liquid water content was consistent with that achieved by Han and Thomson (1) for tropical conditions. Han and Thomson used measurements of cloud base height and cloud base temperature, along with a climatological mean effective radiating temperature to improve their retrievals.<>
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