Development of Forecast System for the Upwelled Coastal Cold Waters in the Eastern Coast of Korea

Joon‐Soo Lee, Ji-Yeong Song, Myung-Hee Park, M. Kwon, I. Han, R. Jung
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Abstract

In this study, a forecast system for the occurrence of cold waters in the eastern coast of Korea was developed by combining the ROMS ocean model and the WRF regional atmospheric model. The 1-day hindcast and 3.5-day forecasts from April 1 to August 31, 2021, successfully reproduced and forecasted the temporal and spatial changes of coastal cold waters. Three case studies with different surface boundary conditions in the ROMS model confirmed that the wind is a primary driver for the occurrence of cold waters in the region. The performance of the ROMS was improved by high-resolution WRF outputs, and through error correction using the water temperature data from the real-time stations, the average RMSE of 9 stations for Forecast Day-3 was 0.73℃, indicating a prossibility of high-precision forecast.
韩国东部海岸上升流寒流预报系统的发展
本研究将ROMS海洋模式与WRF区域大气模式相结合,建立了韩国东海岸冷水发生的预报系统。2021年4月1日至8月31日的1天预报和3.5天预报成功地再现和预报了沿海冷水的时空变化。在ROMS模式中,三个具有不同地表边界条件的案例研究证实,风是该地区发生冷水的主要驱动因素。利用高分辨率WRF输出提高了ROMS的性能,并利用实时站点的水温数据进行误差校正,预测第3天9个站点的平均RMSE为0.73℃,表明有可能进行高精度预报。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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