使用 TSUNM3 模型对阵风进行数值预测

IF 0.9 Q4 OPTICS
A. V. Starchenko, I. V. Del’, S. L. Odintsov
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引用次数: 0

摘要

摘要 为了对以阵风为特征的强风天气期进行短期预报,建议使用基于 TSUNM3(托木斯克国立大学非静水中尺度气象模型)本地天气数值预报模型的计算结果,结合半经验公式来估算阵风速度的尺度。对大气光学研究所 Atmosfera 共用中心气象站、托木斯克机场 AMMS-RF(机场气象测量系统)气象站和托木斯克 CHEM 气象站的气象参数进行了计算和观测比较,结果表明该模型有望用于这种危险天气现象的数值预报。工作成果将用于开发危险阵风预警信息和预测系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Numerical Prediction of Wind Gusts Using the TSUNM3 Model

Numerical Prediction of Wind Gusts Using the TSUNM3 Model

Numerical Prediction of Wind Gusts Using the TSUNM3 Model

For short-term forecasting of weather periods characterized by strong winds with gusts, it is proposed to use results of calculations based on the TSUNM3 (Tomsk State University Nonhydrostatic Mesoscale Meteorological Model) local weather numerical prediction model in combination with semiempirical formulas for estimating the scales of wind gust speeds. The comparison of the calculations and observations of meteorological parameters obtained for the conditions under consideration at the meteorological stations of the Atmosfera Common Use Center of the Institute of Atmospheric Optics, the AMMS-RF (airfield meteorological measuring system) of the Tomsk airport, and meteorological stations of the Tomsk CHEM showed the prospects of using the model for numerical forecasting of this dangerous weather phenomenon. The results of the work are to be used for the development of an information and predictive system for early warning of dangerous wind gusts.

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来源期刊
CiteScore
2.40
自引率
42.90%
发文量
84
期刊介绍: Atmospheric and Oceanic Optics  is an international peer reviewed journal that presents experimental and theoretical articles relevant to a wide range of problems of atmospheric and oceanic optics, ecology, and climate. The journal coverage includes: scattering and transfer of optical waves, spectroscopy of atmospheric gases, turbulent and nonlinear optical phenomena, adaptive optics, remote (ground-based, airborne, and spaceborne) sensing of the atmosphere and the surface, methods for solving of inverse problems, new equipment for optical investigations, development of computer programs and databases for optical studies. Thematic issues are devoted to the studies of atmospheric ozone, adaptive, nonlinear, and coherent optics, regional climate and environmental monitoring, and other subjects.
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