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- W4200534221 abstract "The heavy precipitation in Northern California—brought about by a landfalling atmospheric river (AR) on 25–27 February 2019—is investigated for an understanding of the underlying dynamical processes. By the peaks in hourly accumulation, this rainstorm can be divided into two stages (Stage I and Stage II). Using a recently developed multiscale analysis methodology, i.e., multiscale window transform (MWT), and the MWT-based theory of canonical transfer, the original fields are reconstructed onto three scale windows, namely, the background flow, synoptic-scale and mesoscale windows, and the interactions among them are henceforth investigated. In both stages, the development of the precipitation is attributed to a vigorous buoyancy conversion and latent heating, and besides, the instability of the background flow. In Stage I, the instability is baroclinic, while in Stage II, it is barotropic. Interestingly, in Stage I, the mesoscale kinetic energy is transferred to the background flow where it is stored, and is released back in Stage II to the mesoscale window again, triggering intense precipitation." @default.
- W4200534221 created "2021-12-31" @default.
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- W4200534221 date "2021-12-26" @default.
- W4200534221 modified "2023-10-18" @default.
- W4200534221 title "Multiscale Interactive Processes Underlying the Heavy Rainstorm Associated with a Landfalling Atmospheric River" @default.
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- W4200534221 doi "https://doi.org/10.3390/atmos13010029" @default.
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