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首页> 外文期刊>Journal of Applied Meteorology and Climatology >Scale Characterization and Correction of Diurnal Cycle Errors in MAPLE
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Scale Characterization and Correction of Diurnal Cycle Errors in MAPLE

机译:枫木中昼夜周期误差的规模特征及校正

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The most widely used technique for nowcasting of quantitative precipitation in operational and research centers is the Lagrangian extrapolation of the latest radar observations. However, this technique has a limited forecast skill because of the assumption made on its formulation, such as the fact that the motion vectors do not change and, even more important for convective events, neglect any growth or decay in the precipitation field. In this work, the McGill Algorithm for Precipitation Nowcasting by Lagrangian Extrapolation (MAPLE) errors have been computed for 10 yr of radar composite data over the continental United States. The study of these errors shows systematic bias depending on the time of day. This effect is related to the solar cycle, whose heating energy results in an increase in the average rainfall in the afternoon. This external forcing interacts with the atmospheric system, creating local initiation and dissipation of convection depending on orography, land use, cloud coverage, etc. The signal of the diurnal cycle in MAPLE precipitation forecast has been studied in different locations and spatial scales as a function of lead time in order to recognize where, when, and for which spatial scales the signal is significant. This information has been used in the development of a scaling correction scheme where the mean errors due to the diurnal cycle are adjusted. The results show that the developed methodology improves the forecast for the spatial scales and locations where the diurnal cycle signal is significant.
机译:在运营和研究中心的定量降水中最广泛使用的技术是拉格朗日推断的最新雷达观察。然而,由于对其制定的假设,这种技术具有有限的预测技能,例如运动向量不会改变的事实,并且对对流事件更重要,忽略降水场中的任何生长或衰减。在这项工作中,Lagrangian推断(枫木)错误的降水算法(枫木)误差已经计算了大陆大陆的10年的雷达复合数据。对这些误差的研究表明,根据一天的时间,系统偏见。这种效果与太阳循环有关,其加热能量导致下午的平均降雨量增加。这种外部迫使与大气系统相互作用,根据白象,土地使用,云覆盖等,创建当地启动和对流耗散,云循环在不同的位置和空间尺度作为函数的情况下研究了枫木降水预测的信号提前期为了识别信号的位置,何时,何时和向该信号具有重要意义。该信息已被用于开发缩放校正方案,其中调整了昼夜循环引起的平均误差。结果表明,开发方法改善了日间循环信号显着的空间尺度和位置的预测。

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