Warming amplification of minimum and maximum temperatures over high-elevation regions across the globe (PLoS ONE 10:10 (e0140213))

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Abstract

An analysis of the annual mean temperature (TMEAN) (1961-2010) has revealed that warming amplification (altitudinal amplification and regional amplification) is a common feature of major high-elevation regions across the globe against the background of global warming since the mid-20th century. In this study, the authors further examine whether this holds for annual mean minimum temperature (TMIN) and annual mean maximum temperature (TMAX) (1961-2010) on a global scale. The extraction method of warming component of altitude, and the paired region comparison method were used in this study. Results show that a significant altitudinal amplification trend in TMIN (TMAX) is detected in all (four) of the six highelevation regions tested, and the average magnitude of altitudinal amplification trend for TMIN (TMAX) [0.306±0.086 °C km-1(0.154±0.213 °C km-1)] is substantially larger (smaller) than TMEAN (0.230±0.073 °C km-1) during the period 1961-2010. For the five paired highand low-elevation regions available, regional amplification is detected in the four high-elevation regions for TMIN and TMAX (respectively or as a whole). Qualitatively, highly (largely) consistent results are observed for TMIN (TMAX) compared with those for TMEAN. Copyright:

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Fan, X., Wang, Q., Wang, M., & Jimenez, C. V. (2015). Warming amplification of minimum and maximum temperatures over high-elevation regions across the globe (PLoS ONE 10:10 (e0140213)). PLoS ONE, 10(10). https://doi.org/10.1371/journal.pone.0140213

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