地质学
后发
平流
爆炸物
Cyclone(编程语言)
气候学
混合层
流量(数学)
海洋学
环境科学
地理
数学
计算机科学
现场可编程门阵列
计算机硬件
热力学
物理
几何学
考古
作者
Akira Kuwano‐Yoshida,Hideharu Sasaki,Yoshikazu Sasai
摘要
Abstract The oceanic response to explosive cyclones over the North Pacific in winter is investigated using eddy‐resolving 34 year hindcast simulation of a quasi‐global ocean. Its response appears as a horizontal divergence of the surface layer above 60 m depth and upward flow that reaches 2000 m depth. A case study of a typical explosive cyclone using hourly outputs from January 2011 shows that the explosive cyclone induces horizontal divergence within the surface‐mixed layer and upward flow that reaches 6000 m depths. The flow causes oceanic internal waves and temperature cooling because of the vertical advection in the deep ocean. The interannual variability of explosive cyclone activity in January affects the amplitude of the vertical motion and the daily‐scale temperature variations in the deep ocean.
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