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An objective technique for verifying sea breezes in high-resolution numerical weather prediction models

机译:高分辨率数值天气预报模型中验证海风的一种客观技术

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An ongoing challenge in mesoscale numerical weather prediction (NWP) is to determine the ideal method for verifying the performance of high-resolution, detailed forecasts. Traditional objective techniques that evaluate NWP model performance based on point error statistics may not be positively correlated with the value of forecast information for certain applications of mesoscale NWP, and subjective evaluation techniques are often costly and time consuming. As a result, objective event-based verification methodologies are required in order to determine the added value of high-resolution NWP models.This paper presents a new objective technique to verify predictions of the sea-breeze phenomenon over east-central Florida by the Regional Atmospheric Modeling System ( RAMS) NWP model. The contour error map (CEM) technique identifies sea-breeze transition times in objectively analyzed grids of observed and forecast wind, verifies the forecast sea-breeze transition times against the observed times, and computes the mean post-sea-breeze wind direction and wind speed to compare the observed and forecast winds behind the sea-breeze front. The CEM technique improves upon traditional objective verification techniques and previously used subjective verification methodologies because it is automated, accounts for both spatial and temporal variations, correctly identifies and verifies the sea-breeze transition times, and provides verification contour maps and simple statistical parameters for easy interpretation. The CEM algorithm details are presented and validated against independent meteorological assessments of the sea-breeze transition times and results from a previously published subjective evaluation.
机译:中尺度数值天气预报(NWP)的一项持续挑战是,确定验证高分辨率,详细天气预报性能的理想方法。传统的基于点误差统计评估NWP模型性能的客观技术可能与中尺度NWP的某些应用的预测信息的值没有正相关,而主观评估技术通常既昂贵又耗时。因此,需要采用基于事件的客观验证方法来确定高分辨率NWP模型的附加值。本文提出了一种新的客观技术,以验证区域中心对佛罗里达州中东部海风现象的预测大气建模系统(RAMS)NWP模型。轮廓误差图(CEM)技术可在客观分析的观测风和预报风中识别出海风的过渡时间,根据观测到的时间验证预报的海风过渡时间,并计算平均海风后风向和风向速度比较海风锋后的观测风和预报风。 CEM技术是对传统的客观验证技术和以前使用的主观验证方法的改进,因为它是自动化的,可以解决时空变化,正确识别和验证海风过渡时间,并提供验证等高线图和简单的统计参数,以便于轻松实现解释。针对海风过渡时间的独立气象评估和先前发布的主观评估结果,对CEM算法的详细信息进行了介绍和验证。

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