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Diurnal and Seasonal Trends in Convective Mixed-Layer Heights Estimated from Two Years of Continuous Ceilometer Observations in Vancouver, BC

机译:根据卑诗省温哥华连续两年的高空仪观测,估计对流混合层高度的昼夜趋势

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摘要

Twenty-six months of continuous ceilometer data are used to estimate the convective mixed-layer height for 710 days by identifying backscatter gradients associated with the entrainment zone. To accomplish this, a semi-automatic procedure is developed that removes all non-applicable data before applying a mixed-layer height algorithm to the backscatter profiles. Two different algorithms for estimating the mixed-layer height are assessed: the minimum-gradient method and the ideal-profile method. The latter of these two algorithms is found to be more robust. Comparisons of mixed-layer height values estimated from the ceilometer agree with previous observations with slightly higher estimates in the mornings and evenings. For clear days with no cumulus cloud formation, the seasonal cycle in mixed-layer heights peaks in late June to early July. Daily maximum values are suppressed by the site's coastal location, remaining below 800 m for all but a few days. The mean daily maximum mixed-layer height increases by 384 m for days with boundary-layer clouds. The mean summer diurnal trend is found not to differ greatly from that in spring on clear days, while days with boundary-layer clouds have higher spring values than in summer. Net surface heat flux and synoptic stability likely have the largest influence on the mixed-layer heights. Additionally, large intra-monthly variability suggests a strong influence from regional dynamics.
机译:通过识别与夹带区相关的反向散射梯度,将二十六个月的连续云高仪数据用于估算710天的对流混合层高度。为此,开发了一种半自动程序,该程序在将混合层高度算法应用于反向散射剖面之前会删除所有不适用的数据。评估了两种不同的估计混合层高度的算法:最小梯度法和理想轮廓法。发现这两种算法中的后者更加健壮。从云高仪估算的混合层高度值的比较与先前的观察结果一致,早晨和晚上的估算值略高。在没有积云形成的晴朗天气中,混合层高度的季节性周期在6月下旬至7月初达到峰值。该站点的沿海位置抑制了每日最大值,除了几天外,其余所有时间都保持在800 m以下。在边界层云的情况下,连续几天的平均每日最大混合层高度增加了384 m。在晴天,夏季的平均日变化趋势与春季没有太大差异,而边界层云的日子的春季值高于夏季。净表面热通量和天气稳定性对混合层高度的影响最大。此外,月内较大的波动性表明区域动态会产生强烈影响。

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