The rapid rise of severe marine heat wave systems
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We introduce a new methodology to study marine heat waves (MHWs), extreme events in the sea surface temperature (SST) of the global ocean. Motivated by previously large and impactful MHWs and by the theoretical expectation that the dominant heating processes coherently affect large regions of the ocean, we introduce a methodology from computer vision to construct marine heat wave systems (MWHSs) â the collation of SST extrema in dimensions of area and time. We identify 649,475 MHWSs in the 37 year period (1983â2019) of daily SST records and find that the duration tdur (days), maximum area Amax (km2), and total âvolumeâ VMHWS (days km2) for the majority of MHWSs are well-described by power-law distributions: tdur^-3, Amax^â2 and VMHWS^â2 . These characteristics confirm SST extrema exhibit strong spatial coherence that defines the formation and evolution of MHWs. Furthermore, the most severe MHWSs deviate from these power-laws and are the dominant manifestation of MHWs: extrema in ocean ..., See https://iopscience.iop.org/article/10.1088/2752-5295/accd0e and https://zenodo.org/badge/latestdoi/262816104., netCDF viewer SQL viewer table viewer



