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Forecasting near-surface weather conditions and precipitation in Alaska’s Prince William Sound with the PWS-WRF modeling system

机译:利用PWS-WRF建模系统预测阿拉斯加威廉王子湾的近地表天气状况和降水

摘要

In the summer of 2009, several scientific teams engaged in a field program in Prince William Sound (PWS), Alaska to test an end-to-end atmosphere/ocean prediction system specially designed for this region. The “Sound Predictions Field Experiment” (FE) was a test of the PWS-Observing System (PWS-OS) and the culmination of a five-year program to develop an observational and prediction system for the Sound. This manuscript reports on results of an 18-day high-resolution atmospheric forecasting field project using the Weather Research and Forecasting (WRF) model. Special attention was paid to surface meteorological properties and precipitation. Upon reviewing the results of the real-time forecasts, modifications were incorporated in the PWS-WRF modeling system in an effort to improve objective forecast skill. Changes were both geometric (model grid structure) and physical (different physics parameterizations). The weather during the summer-time FE was typical of the PWS in that it was characterized by a number of minor disturbances rotating around an anchored low, but with no major storms in the Gulf of Alaska. The basic PWS-WRF modeling system as implemented operationally for the FE performed well, especially considering the extremely complex terrain comprising the greater PWS region. Modifications to the initial PWS-WRF modeling system showed improvement in predicting surface variables, especially where the ambient flow interacted strongly with the terrain. Prediction of precipitation on an accumulated basis was more accurate than prediction on a day-to-day basis. The 18-day period was too short to provide reliable assessment and intercomparison of the quantitative precipitation forecasting (QPF) skill of the PWS-WRF model variants.
机译:2009年夏天,几支科学团队在阿拉斯加的威廉王子湾(PWS)进行了一项现场计划,以测试专门为该地区设计的端到端大气/海洋预测系统。 “声音预测现场实验”(FE)是对PWS观测系统(PWS-OS)的测试,是一项为期五年的计划的最终成果,该计划旨在开发声音的观测和预测系统。该手稿报告了使用天气研究和预报(WRF)模型进行的为期18天的高分辨率大气预报野外项目的结果。特别注意了地面气象特性和降水。在查看实时预测结果后,将修改内容纳入PWS-WRF建模系统中,以提高客观预测技能。变化既是几何的(模型网格结构)又是物理的(不同的物理参数设置)。夏季FE的天气是PWS的典型特征,其特征是围绕固定低点旋转的一些小干扰,但阿拉斯加湾没有大风暴。为有限元有效实施的基本PWS-WRF建模系统运行良好,特别是考虑到包含较大PWS区域的极其复杂的地形。对初始PWS-WRF建模系统的修改显示出在预测表面变量方面的改进,尤其是在环境流量与地形强烈相互作用的情况下。以累积为基础的降水预报比以日常为基础的预报更为准确。 18天的时间太短,无法提供可靠的评估和PWS-WRF模型变体的定量降水预报(QPF)技能的比对。

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