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首页> 外文期刊>Fresenius Environmental Bulletin >HYPOTHETICAL PARTICLE TRAJECTORY AND DISPERSION SIMULATIONS USING REAL-TIME FORECAST SYSTEM VIA AS- SIMILATION OF RADIAL VELOCITIES FROM A SINGLE WSR-88D
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HYPOTHETICAL PARTICLE TRAJECTORY AND DISPERSION SIMULATIONS USING REAL-TIME FORECAST SYSTEM VIA AS- SIMILATION OF RADIAL VELOCITIES FROM A SINGLE WSR-88D

机译:使用实时预测系统通过单个WSR-88D径向速度模拟的假想粒子轨迹和弥散模拟

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This paper describes a real time trajectory and dispersion forecast system (WRFDA-HYSPLIT) and presents a case study in which trajectories and concentrations were computed using various meteorological models with and without the assimilation of Doppler radar radial wind observations. The forecast system comprises WRF 3DVAR data assimilation system using WSR-88D radial winds from a single Doppler radar, Weather Research and Forecasting model (WRF), and Hybrid Single-Particle Lagrangian Integrated Trajectory (HYSPLIT) model. The overall goal is to provide first responders more accurate transport and dispersion of hazardous releases in real time. The forecast system runs twice a day providing 12 h forecasts for weather conditions as well as trajectories and dispersions originated from a single source location. The Local Data Manager (LDM) program acquires the latest raw radar data (level-II) from the WSR-88D KLIX (Slidell, Louisiana) station. A Four-Dimensional De-aliasing algorithm (4DD) and some statistical properties of radial winds and reflectivities are first applied to radial winds for quality controls. The end products such as WRF and HYSPLIT forecast outputs and graphics are made available to the public. Control and experiment simulations agreed well when a high pressure system was settled in within the study region. On the other hand, significant deviations and discrepancies in trajectory and dispersion simulations were noted as a cold frontal passage altered the wind field.
机译:本文描述了一个实时轨迹和频散预测系统(WRFDA-HYSPLIT),并提出了一个案例研究,其中使用和不使用多普勒雷达径向风观测资料的情况下,使用各种气象模型计算了轨迹和浓度。预报系统包括使用来自单个多普勒雷达的WSR-88D径向风的WRF 3DVAR数据同化系统,天气研究和预报模型(WRF)和混合单颗粒拉格朗日综合轨迹(HYSPLIT)模型。总体目标是为急救人员实时更准确地运输和分散有害释放物。预报系统每天运行两次,可提供12小时天气预报,以预测天气状况以及源自单一来源位置的轨迹和散布情况。本地数据管理器(LDM)程序从WSR-88D KLIX(路易斯安那州斯利德尔)的工作站获取最新的原始雷达数据(II级)。首先将四维去混叠算法(4DD)以及径向风和反射率的一些统计属性应用于径向风,以进行质量控制。最终产品(例如WRF和HYSPLIT预​​测输出和图形)已向公众公开。当研究区域内建立了高压系统时,控制和实验模拟完全吻合。另一方面,由于冷锋通道改变了风场,因此在轨迹和弥散模拟中出现了明显的偏差和差异。

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