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Validation and deployment of the first Lidar based weather observation network in New York State: The NYS MesoNet Project

机译:纽约州第一个LIDAR天气观测网络的验证与部署:NYS Mesonet项目

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摘要

The number and quality of atmospheric observations used by meteorologists and operational forecasters are increasing year after year, and yet, consistent improvements in forecast skill remains a challenge. While contributing factors involving these challenges have been identified, including the difficulty in accurately establishing initial conditions, improving the observations at regional and local scales is necessary for accurate depiction of the atmospheric boundary layer (below 2km), particularly the wind profile, in high resolution numerical models. Above the uncertainty of weather forecasts, the goal is also to improve the detection of severe and extreme weather events (severe thunderstorms, tornadoes and other mesoscale phenomena) that can adversely affect life, property and commerce, primarily in densely populated urban centers.This paper will describe the New York State Mesonet that is being deployed in the state of New York, USA. It is composed of 126 stations including 17 profiler sites. These sites will acquire continuous upper air observations through the combination of WINDCUBE Lidars and microwave radiometers. These stations will provide temperature, relative humidity & “3D” wind profile measurements through and above the planetary boundary layer (PBL) and will retrieve derived atmospheric quantities such as the PBL height, cloud base, momentum fluxes, and aerosol & cloud optical properties. The different modes and configurations that will be used for the Lidars are discussed. The performances in terms of data availability and wind accuracy and precision are evaluated. Several profiles with specific wind and aerosol features are presented to illustrate the benefits of the use of Coherent Doppler Lidars to monitor accurately the PBL.
机译:气象学家和运营预报员使用的大气观测的数量和质量正在增加一年,但预测技能的一致性仍然是一个挑战。虽然已经确定了涉及这些挑战的贡献因素,包括准确地建立初始条件的难度,在高分辨率高分辨率下准确地描绘大气边界层(低于2km),特别是风轮廓,改善区域和地方尺度的观察。数值模型。高于天气预报的不确定性,目标也是改善严重和极端天气事件(严重雷暴,龙卷风和其他Messcale现象)的检测,这可能对寿命,财产和商业产生不利影响,主要是人口稠密的城市中心。本文将描述在美国纽约州部署的纽约州Mesonet。它由126个站点组成,包括17个分析网站。这些网站将通过风电亮度亮度和微波辐射钻头的组合获得连续的上空气观察。这些站将通过行星边界层(PBL)提供温度,相对湿度和“3D”风型测量,并且将检索衍生的大气量,例如PBL高度,云基,动量通量和气溶胶和云光学性能。讨论了将用于LIDAR的不同模式和配置。评估数据可用性和风力准确性和精度方面的性能。提出了几种具有特定风和气溶胶特征的曲线,以说明使用相干多普勒·雷达尔的优点来精确地监测PBL。

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