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Effect of the Oxygen Line-Parameter Modeling on Temperature and Humidity Retrievals From Ground-Based Microwave Radiometers

机译:氧气线参数建模对地面微波辐射计温湿度反演的影响

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The Atmospheric Radiation Measurement (ARM) Program maintains a suite of instruments in various locations to provide continuous monitoring of atmospheric parameters. Temperature and humidity retrievals are two of the key parameters used by the climate-modeling community. Accuracy in the spectroscopy adopted by the various radiative transfer models is crucial for obtaining accurate retrievals. While the accuracy of the spectroscopic parameters used for water-vapor retrievals is satisfactory, temperature retrievals continue to be affected by uncertainties in oxygen line parameters leading to discrepancies between the modeled and observed brightness temperatures. In this paper, we compare the model calculations in the oxygen-band channels with the measurements collected by the ARM-operated 12-channel Microwave Radiometer Profiler (MWRP). The dataset used spans a wide range of atmospheric temperature conditions, with ground temperatures varying between $-hbox{40} ^{ circ}hbox{C}$ and $+hbox{20} ^{circ}hbox{C}$ . Model calculations are performed by using line parameters from the high-resolution transmission molecular-absorption (HITRAN) database and from a set of newly published parameters. Our comparison shows that the newly published parameters agree more closely with the MWRP measurements and confirms the need to update the HITRAN database for the oxygen lines. We show the effect of line parameters on the retrievals of temperature, water vapor, and liquid water, and show that improved oxygen absorption is essential to reduce the clear-sky bias in the liquid-water path retrievals.
机译:大气辐射测量(ARM)计划在各个位置维护一套仪器,以提供对大气参数的连续监视。温度和湿度的检索是气候模拟界使用的两个关键参数。各种辐射传输模型采用的光谱准确性对于获取精确的检索至关重要。尽管用于水蒸气回收的光谱参数的准确性令人满意,但是温度回收仍然受到氧气管线参数不确定性的影响,从而导致建模温度和观察到的亮度温度之间存在差异。在本文中,我们将氧气带通道中的模型计算与ARM操作的12通道微波辐射仪轮廓仪(MWRP)收集的测量值进行了比较。所使用的数据集涵盖了广泛的大气温度条件,地面温度在$ -hbox {40} ^ {circ} hbox {C} $和$ + hbox {20} ^ {circ} hbox {C} $之间变化。通过使用来自高分辨率透射分子吸收(HITRAN)数据库和一组新发布的参数的线参数来执行模型计算。我们的比较表明,新发布的参数与MWRP测量值更加吻合,并确认需要更新氧气管线的HITRAN数据库。我们显示了线参数对温度,水蒸气和液态水的取回的影响,并表明改善的氧气吸收对于减少液态水路径取回中的晴空偏差至关重要。

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