A Projection of Future JPCZs by WRF Dynamical Downscaling Simulations based on MIROC6 ScenarioMIP ssp585

Dynamical downscaling simulations of MIROC6 (the sixth version of Model for Interdisciplinary Research on Climate) data using the Weather Research and Forecasting (WRF) model were performed to investigate future changes in the Japan Sea polar airmass convergence zones (JPCZs) related to heavy snowfa...

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Veröffentlicht in:SOLA 2023, Vol.19, pp.101-108
Hauptverfasser: Kawano, Tetsuya, Yasukiyo, Rina, Kawamura, Ryuichi, Mochizuki, Takashi
Format: Artikel
Sprache:eng ; jpn
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Zusammenfassung:Dynamical downscaling simulations of MIROC6 (the sixth version of Model for Interdisciplinary Research on Climate) data using the Weather Research and Forecasting (WRF) model were performed to investigate future changes in the Japan Sea polar airmass convergence zones (JPCZs) related to heavy snowfall events in the Sea of Japan–side region of central and northern Japan. WRF dynamical downscaling simulations showed a northward shift of JPCZs and the associated changes in precipitation distribution. Rainfall increased significantly over the central part of the Sea of Japan and in the Tohoku region. On the other hand, snowfall decreased significantly over the entire Sea of Japan. However, there was a significant increase in snowfall in the inland mountainous areas of the Tohoku region. Jet streaks shift northward in the future climate, which was confirmed in the MIROC6 data. Reflecting such future environments, WRF dynamical downscaling simulations showed that a mesoscale cyclonic circulation anomaly passing over Hokkaido from the Sea of Japan, which is not resolved by MIROC6, contributes to the northward shift of JPCZs and the associated changes in rainfall and snowfall.
ISSN:1349-6476
1349-6476
DOI:10.2151/sola.2023-014