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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >A 25-month database of stratus cloud properties generated from ground-based measurements at the Atmospheric Radiation Measurement Southern Great Plains Site
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A 25-month database of stratus cloud properties generated from ground-based measurements at the Atmospheric Radiation Measurement Southern Great Plains Site

机译:大气辐射测量南部大平原站点地面测量产生的层云性质的25个月数据库

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摘要

A 25-month database of the macrophysical, microphysical, and radiative properties of isolated and overcast low-level stratus clouds has been generated using a newly developed parameterization and surface measurements from the Atmospheric Radiation Measurement central facility in Oklahoma. The database (5-min resolution) includes two parts: measurements and retrievals. The former consist of cloud base and top heights, layer-mean temperature, cloud liquid water path, and solar transmission ratio measured by a ground-based lidar/ceilometer and radar pair, radiosondes, a microwave radiometer, and a standard Eppley precision spectral pyranometer, respectively. The retrievals include the cloud-droplet effective radius and number concentration and broadband shortwave optical depth and cloud and top-of-atmosphere albedos. Stratus without any overlying mid or high-level clouds occurred most frequently during winter and least often during summer. Mean cloud-layer altitudes and geometric thicknesses were higher and greater, respectively, in summer than in winter. Both quantities are positively correlated with the cloud-layer mean temperature. Mean cloud-droplet effective radii range from 8.1 mu m in winter to 9.7 mu m during summer, while cloud-droplet number concentrations during winter are nearly twice those in summer. Since cloud liquid water paths are almost the same in both seasons, cloud optical depth is higher during the winter, leading to greater cloud albedos and lower cloud transmittances. [References: 24]
机译:利用俄克拉荷马州大气辐射测量中心设施的最新开发的参数化和表面测量,已经建立了一个为期25个月的孤立和阴云低层层云的宏观物理,微物理和辐射特性数据库。数据库(5分钟分辨率)包括两部分:测量和检索。前者包括云底和最高高度,层平均温度,云液态水路径以及由地面激光雷达/西拉计和雷达对,无线电探空仪,微波辐射计和标准Eppley精密光谱日射强度计测量的太阳透射比, 分别。检索的内容包括云滴有效半径和数量集中度,宽带短波光学深度以及云和大气顶反照率。没有任何上覆中层或高层云层的地层在冬季发生得最多,而在夏季最少。夏季的平均云层高度和几何厚度分别高于冬季。这两个量都与云层平均温度成正相关。平均云滴有效半径范围从冬季的8.1微米到夏季的9.7微米,而冬季的云滴数量浓度几乎是夏季的两倍。由于两个季节的云层液态水路径几乎相同,因此冬季的云层光学深度较高,从而导致更大的云层反照率和较低的云层透过率。 [参考:24]

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