Deepening and Evolution of a Low over the Sea of Japan in Late August in 2016: Interaction of Midlatitude Flows and Typhoon Lionrock (1610)

Q4 Earth and Planetary Sciences Papers in Meteorology and Geophysics Pub Date : 2020-01-01 DOI:10.2467/mripapers.68.1
N. Kitabatake, Hiroshige Tsuguti
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Abstract

This study examined a midlatitude low pressure system that deepened to 974 hPa over the Sea of Japan on 31 August 2016 using the Japanese 55-year reanalysis (JRA-55) dataset. The low appears to have developed by absorbing Typhoon Lionrock (2016). This unusual development of the low occurred in a relatively weak baroclinic environment in association with high potential vorticity air that moved southeastward and downward along a slantwise isentropic surface in the upper troposphere. Middle and lower tropospheric warming also contributed to the deepening of the surface low. In the last stage of its development, the upper-tropospheric trough became coupled with Typhoon Lionrock. Lionrock also contributed to the deepening of the low at an earlier stage by inducing moist air to flow in the lower troposphere between Lionrock and a high pressure system located to its north. The consequent latent heat release over the Sea of Japan led to intensification of the upper-tropospheric ridge and increased vorticity advection. These are also considered to have contributed to the deepening of the low.
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2016年8月下旬日本海低气压的深化与演变:中纬度气流与台风狮岩(1610)的相互作用
本研究使用日本55年再分析(JRA-55)数据集分析了2016年8月31日在日本海上空加深至974 hPa的中纬度低压系统。该低气压似乎是通过吸收台风“狮子石”(2016)而形成的。这种不寻常的低气压发展发生在相对较弱的斜压环境中,与沿对流层上层倾斜等熵面向东南和向下移动的高位涡空气有关。对流层中下层变暖也促进了地表低压的加深。在其发展的最后阶段,对流层上层槽与台风“狮子石”耦合。在较早阶段,狮子岩还通过诱导湿润空气在狮子岩和位于其北部的高压系统之间的对流层下层流动,促进了低气压的加深。随后日本海上空的潜热释放导致对流层上脊增强和涡度平流增加。这些因素也被认为是造成低气压加深的原因。
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来源期刊
Papers in Meteorology and Geophysics
Papers in Meteorology and Geophysics Earth and Planetary Sciences-Geophysics
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