首页> 外文期刊>Journal of Climate >Improved Simulation of Tropical Cyclone Responses to ENSO in the Western North Pacific in the High-Resolution GFDL HiFLOR Coupled Climate Model*
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Improved Simulation of Tropical Cyclone Responses to ENSO in the Western North Pacific in the High-Resolution GFDL HiFLOR Coupled Climate Model*

机译:在高分辨率GFDL Hifll耦合气候模型中改进了对西北太平洋西部Enso的热带气旋反应的模拟*

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This study aims to assess whether, and the extent to which, an increase in atmospheric resolution of the Geophysical Fluid Dynamics Laboratory (GFDL) Forecast-Oriented Low Ocean Resolution version of CM2.5 (FLOR) with 50-km resolution and the High-Resolution FLOR (HiFLOR) with 25-km resolution improves the simulation of the El Nino-Southern Oscillation (ENSO)-tropical cyclone (TC) connections in the western North Pacific (WNP). HiFLOR simulates better ENSO-TC connections in the WNP including TC track density, genesis, and landfall than FLOR in both long-term control experiments and sea surface temperature (SST)- and sea surface salinity (SSS)-restoring historical runs (1971-2012). Restoring experiments are performed with SSS and SST restored to observational estimates of climatological SSS and interannually varying monthly SST. In the control experiments of HiFLOR, an improved simulation of the Walker circulation arising from more realistic SST and precipitation is largely responsible for its better performance in simulating ENSO-TC connections in the WNP. In the SST-restoring experiments of HiFLOR, more realistic Walker circulation and steering flow during El Nino and La Nina are responsible for the improved simulation of ENSO-TC connections in the WNP. The improved simulation of ENSO-TC connections with HiFLOR arises from a better representation of SST and better responses of environmental large-scale circulation to SST anomalies associated with El Nino or La Nina. A better representation of ENSO-TC connections in HiFLOR can benefit the seasonal forecasting of TC genesis, track, and landfall; improve understanding of the interannual variation of TC activity; and provide better projection of TC activity under climate change.
机译:本研究旨在评估地球物理流体动力学实验室(GFDL)预测低海洋分辨率的大气分辨率的大气分辨率是否为50公里的分辨率和高度 - 具有25公里的分辨率的分辨率Flor(Hiflor)改善了北太平洋西部(WNP)的EL Nino-Southern振荡(ENSO)的肌肉仿真。 Hiflor在WNP中模拟更好的ENSO-TC连接,包括TC轨道密度,成因和登陆,而不是Flor在长期对照实验和海表面温度(SST) - 和海表面盐度(SSS) - 历史历史持续赛(1971- 2012)。通过SSS和SST进行恢复实验,恢复到气候SSS的观察估计,并对月度进行间接变化。在HIFLOR的对照实验中,从更现实SST和降水产生的步行者循环的改进模拟主要负责其在WNP中模拟ENSO-TC连接的更好性能。在HIFLOR的SST恢复的实验中,EL NINO和LA NINO期间更现实的助行器循环和转向流是负责改进WNP中的ENSO-TC连接的模拟。利用HIFLOR的改善模拟ENSO-TC连接从SST和环境大规模循环到与EL NINO或LA NINO相关的SST异常的更好的响应。在Hiflor中更好地表示ENSO-TC连接可以使TC Genesis,Track和Landfall的季节性预测有益;改善理解TC活动的持续变化;并在气候变化下提供更好的TC活动预测。

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