首页> 外文期刊>Journal of the Atmospheric Sciences >LIRAD observations of tropical cirrus clouds in MCTEX. Part I: Optical properties and detection of small particles in cold cirrus
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LIRAD observations of tropical cirrus clouds in MCTEX. Part I: Optical properties and detection of small particles in cold cirrus

机译:LIRAD在MCTEX中观测热带卷云。第一部分:冷卷云的光学性质和小颗粒的检测

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This paper presents further results on the optical properties of tropical and equatorial cirrus using the light detecting and ranging (lidar) radiometer (LIRAD) method. The results were obtained from observations in the Maritime Continent Thunderstorm Experiment (MCTEX). Values were obtained of cirrus cloud backscatter coefficient, infrared (IR) emittance, optical depth and absorption coefficient, cloud height and depth, and backscatter-to-extinction ratio. The values agree well with previous results obtained on equatorial cirrus in the Pilot Radiation Observation Experiment (PROBE) and extend those results to lower temperatures. Observations made of lidar linear depolarization ratio show similar trends to those observed in PROBE, extending those results to lower temperatures. Regressions of cloud IR emittance and absorption coefficients are performed as a preliminary tropical dataset for both cloud-resolving and climate models. These regressions are compared with previous regressions on midlatitude and tropical synoptic cirrus clouds. The IR absorption coefficients in tropical and equatorial cirrus appear to be larger than in midlatitude cirrus for temperatures less than -40degreesC, with the difference increasing toward low temperatures. Thus, a significantly different relationship may be appropriate for tropical cirrus compared to midlatitude cirrus clouds. Effective diameters of small particles in the colder tropical clouds are also measured using the ratio of visible extinction to infrared absorption. A new treatment of multiple scattering is used to correct the ratios. Effective diameters range from 6 to 9.3 mum at the colder temperatures. [References: 42]
机译:本文利用光探测和测距(激光)辐射计(LIRAD)方法,对热带和赤道卷云的光学性质提出了进一步的结果。这些结果是从海上大陆雷暴实验(MCTEX)的观察中获得的。获得了卷云反向散射系数,红外(IR)发射率,光学深度和吸收系数,云的高度和深度以及反向散射与消光比的值。该值与在先导辐射观测实验(PROBE)中在赤道卷云上获得的先前结果非常吻合,并将这些结果扩展到较低的温度。激光雷达线性去极化比的观测结果显示出与PROBE中观察到的趋势相似的趋势,并将这些结果扩展到了较低的温度。作为云解析和气候模型的初步热带数据集,对云的红外发射率和吸收系数进行了回归。将这些回归与中纬度和热带天气卷云的先前回归进行比较。温度低于-40摄氏度时,热带和赤道卷云的IR吸收系数似乎比中纬度卷云的红外吸收系数大,而随着温度的升高,红外吸收系数的差异会逐渐增加。因此,与中纬卷云相比,显着不同的关系可能适合于热带卷云。还使用可见光消光与红外吸收之比来测量较冷的热带云中小颗粒的有效直径。使用多重散射的新方法来校正比率。在较冷的温度下,有效直径范围为6到9.3 m。 [参考:42]

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