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Determination of the mixing layer height from regular lidar measurements in the Barcelona Area

机译:从巴塞罗那地区常规激光雷达测量的混合层高度的测定

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Regular aerosol backscatter measurements using an elastic-backscatter lidar were performed between May 2000 and November 2002 in Barcelona (Spain), in the frame of EARLINET (European Aerosol Research Lidar Network). The mixing layer height, required to understand the chemical and physical processes taking place in the low troposphere, was one of the major parameters to be retrieved. Three analytic definitions of the ML height have been tested using the range squared-corrected lidar signal: (1) the minimum of its first derivative, (2) the minimum of its second derivative, and (3) the minimum of the first derivative of its logarithm. The strong coastal and orographic influences and the climatological settling of Barcelona determine the complexity of its atmospheric boundary layer dynamics and the high heterogeneity of the lidar signals. Therefore, single lidar analyses do not allow an unambiguous determination of the mixing layer height in many cases and complementary data are needed, such as synoptic maps, backtrajectories, radiosoundings and solar irradiance profiles. The resulting mixing layer heights were compared to radiosoundings, and the second method was found to give statistically the best results. This definition was used to process the whole dataset. A number of 162 days and 660 profiles were examined. The mixing layer height was inferred in cases such as low clouds, Saharan dust events and sea breeze and mountain induced recirculation. Variations between 300 and 1450 m were observed over the three years.
机译:在2002年5月和2002年11月在Barcelona(西班牙)之间,在Earlinet(欧洲气溶胶研究激光雷达网络)之间进行了常规气溶胶反向散射测量。混合层高度需要了解在低层对流层中发生的化学和物理过程,是要检索的主要参数之一。使用范围平方校正的激光雷达信号测试了三种分析定义ML高度的分析定义:(1)其第一个衍生物的最小值,(2)其第二衍生物的最小值,(3)最低衍生物的最低限度它的对数。强烈的沿海和地形影响和巴塞罗那的气候沉降决定了其大气边界层动态的复杂性和激光雷达信号的高异质性。因此,单个激光雷达分析不允许在许多情况下毫不含糊地确定混合层高度,并且需要互补数据,例如概要地图,返回标语,辐射和太阳辐照度轮廓。将得到的混合层高度与辐射ouding进行比较,并发现第二种方法在统计学上提供最佳结果。此定义用于处理整个数据集。检查了162天和660份概况。在低云,撒哈拉尘埃和海风和山地诱导再循环的情况下推断混合层高度。三年来观察到300至1450米的变化。

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