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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >The effect of the half-width of the 22-GHz water vapor line on retrievals of temperature and water vapor profiles with a 12-channel microwave radiometer
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The effect of the half-width of the 22-GHz water vapor line on retrievals of temperature and water vapor profiles with a 12-channel microwave radiometer

机译:使用12通道微波辐射计的22 GHz水蒸气线的半角宽度对温度和水蒸气分布图的检索的影响

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摘要

We show that observed biases in retrievals of temperature and water vapor profiles from a 12-channel microwave radiometer arise from systematic differences between the observed and model-calculated brightness temperatures at five measurement frequencies between 22 and 30 GHz. Replacing the value for the air-broadened half-width of the 22-GHz water vapor line used in the Rosenkranz absorption model with the 5% smaller half-width from the HITRAN compilation largely eliminated the systematic differences in brightness temperatures. An a priori statistical retrieval based on the revised model demonstrated significant improvements in the accuracy and vertical resolution of the retrieved temperature and water vapor profiles. Additional improvements were demonstrated by combining the MWRP retrievals with those from the GOES-8 sounder and by incorporating brightness temperature measurements at off-zenith angles in the retrievals.
机译:我们表明,从12通道微波辐射计获​​得的温度和水蒸气剖面的反演中观察到的偏差是由于在22和30 GHz之间的五个测量频率下观察到的和模型计算的亮度温度之间的系统差异引起的。将Rosenkranz吸收模型中使用的22 GHz水蒸气线的空气扩展半宽值替换为HITRAN汇编中较小的半宽值5%,从而在很大程度上消除了亮度温度的系统差异。根据修订后的模型进行的先验统计检索表明,检索到的温度和水汽剖面的准确性和垂直分辨率有了显着提高。通过将MWRP检索结果与GOES-8测深仪的检索结果相结合,并在检索结果中并入了偏离顶角的亮度温度测量,证明了其他改进。

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