气象科学
氣象科學
기상과학
SCIENTIA METEOROLOGICA SINICA
2010年
5期
615-620
,共6页
郑维忠%Zou Chengzhi
鄭維忠%Zou Chengzhi
정유충%Zou Chengzhi
Windsat ocean surface winds%3D data assimilation%Tropical storm
With available high-resolution ocean surface wind vectors the impact of these data on genesis and forecasting of tropical storm Henri is examined using the non-hydrostatic, fifth-generation mesoscale model (MM5) of Pennsylvania State University-National Center for Atmospheric Research plus its newly released three-dimensional variational data assimilation (3DVAR) system. It is shown that the assimilation of the WindSat-retrieved ocean surface wind vectors in the 3DVAR system improves the model initialization fields by introducing a stronger vortex in the lower troposphere. As a result, the model reproduces the storm formation and track reasonably close to the observations. Compared to the experiment without the WindSat surface winds, the WindSat assimilation reduced an error between the model simulated track and observations of more than 80 km and also improved the storm intensity by nearly 2 hPa. It suggests that these data could provide early detection and prediction of tropical storms or hurricanes.