Abstract
A heatwave (HW) is a spatiotemporally contiguous event that is spatially widespread and lasts many days. HWs impose severe impacts on many aspects of society and terrestrial ecosystems. Here, we systematically investigate the influence of the selected threshold method (the absolute threshold method ((Formula presented.)), quantile-based method ((Formula presented.)), and moving quantile-based method ((Formula presented.))) and selected variables (heat index ((Formula presented.)), air temperature ((Formula presented.))) on the change patterns of spatiotemporally contiguous heatwave (STHW) characteristics over China from 1961–2017. Moreover, we discuss the different STHW change patterns among different HW severities (mild, moderate, and severe) and types (daytime and nighttime). The results show that (1) all threshold methods show a consistent phenomenon in most regions of China: STHWs have become longer-lasting (6.42%, 66.25%, and 148.58% HW days ((Formula presented.)) increases were found from 1991–2017 compared to 1961–1990 corresponding to (Formula presented.), (Formula presented.), and (Formula presented.), respectively, as below), more severe (14.83%, 89.17%, and 158.92% increases in HW severity ((Formula presented.)) increases), and more spatially widespread (14.92%, 134%, and 245.83% increases in the summed HW area ((Formula presented.))). However, the HW frequency ((Formula presented.)) of moderate STHWs in some regions decreased as mild and moderate STHWs became extreme; (2) for threshold methods that do not consider seasonal variations (i.e., (Formula presented.) and (Formula presented.)), the spatial (Formula presented.) exceedance continuity was relatively weak, thus resulting in underestimated STHW characteristics increase rates; (3) for different variables defining STHWs, the relative changing ratio of the (Formula presented.) -based STHW was approximately 20% higher than that of the (Formula presented.) -based STHW for all STHW characteristics, under the (Formula presented.) threshold; (4) for different STHW types, the nighttime STHW was approximately 60% faster than the daytime STHW increase considering the (Formula presented.) threshold and approximately 120% faster for the (Formula presented.) method. This study provides a systematic investigation of different STHW definition methods and will benefit future STHW research.
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Song, H., Kong, D., Xiong, L., Gu, X., & Liu, J. (2022). Inter-Comparison of Diverse Heatwave Definitions in the Analysis of Spatiotemporally Contiguous Heatwave Events over China. Remote Sensing, 14(16). https://doi.org/10.3390/rs14164082
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