Kawakami Yuma, Nakano Hideyuki, Urakawa L Shogo, Toyoda Takahiro, Aoki Kunihiro, Usui Norihisa
Department of Atmosphere, Ocean, and Earth System Modeling Research, Meteorological Research Institute, Tsukuba, Ibaraki, Japan.
Sci Rep. 2023 Sep 27;13(1):16223. doi: 10.1038/s41598-023-43009-w.
The Kuroshio Extension (KE) flows eastward at the northern boundary of the North Pacific subtropical gyre. By transporting large amounts of seawater with heat, the KE contributes significantly to the formation of sea surface temperature (SST) fields. Recently, poleward shifts of major ocean gyres in the world ocean, including the North Pacific subtropical gyre, have been highlighted based on basin-scale changes in SST and sea surface height (SSH) distributions. However, a detailed investigation of the long-term meridional KE movement has not been presented. Investigation of KE path changes helps provide insights into long-term changes in the physical fields in the western North Pacific. In this study, we identified the KE path from satellite-derived SSH and surface current velocity data using a front identification method and showed that the KE migrated northward by approximately 210 km during 1993-2021. We further explored the cause of the northward KE shift based on atmospheric reanalysis data and numerical experiments using a high-resolution ocean general circulation model. It was revealed that the northward KE shift is mostly caused by the trend of wind stress curl in the North Pacific during 1993-2021.
黑潮延伸体(KE)在北太平洋亚热带环流的北边界向东流动。通过输送大量携带热量的海水,黑潮延伸体对海表面温度(SST)场的形成有显著贡献。最近,基于海表面温度和海表面高度(SSH)分布的盆地尺度变化,包括北太平洋亚热带环流在内的世界大洋主要海洋环流的极向移动受到了关注。然而,尚未对黑潮延伸体长期的经向移动进行详细研究。对黑潮延伸体路径变化的研究有助于深入了解北太平洋西部物理场的长期变化。在本研究中,我们使用锋面识别方法从卫星衍生的海表面高度和表面流速度数据中识别出黑潮延伸体路径,并表明在1993 - 2021年期间黑潮延伸体向北迁移了约210公里。我们进一步基于大气再分析数据和使用高分辨率海洋环流模型的数值实验,探讨了黑潮延伸体向北移动的原因。结果表明,1993 - 2021年期间黑潮延伸体向北移动主要是由北太平洋风应力旋度的趋势引起的。