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首页> 外文期刊>Journal of arid environments >Precipitation regime classification for the Mojave Desert: Implications for fire occurrence
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Precipitation regime classification for the Mojave Desert: Implications for fire occurrence

机译:莫哈韦沙漠的降水状况分类:对火灾发生的影响

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Long periods of drought or above-average precipitation affect Mojave Desert vegetation condition, biomass and susceptibility to fire. Changes in the seasonality of precipitation alter the likelihood of lightning, a key ignition source for fires. The objectives of this study were to characterize the relationship between recent, historic, and future precipitation patterns and fire. Classifying monthly precipitation data from 1971 to 2010 reveals four precipitation regimes: low winter/low summer, moderate winter/moderate summer, high winter/low summer and high winter/high summer. Two regimes with summer monsoonal precipitation covered only 40% of the Mojave Desert ecoregion but contain 88% of the area burned and 95% of the repeat burn area. Classifying historic precipitation for early-century (wet) and mid-century (drought) periods reveals distinct shifts in regime boundaries. Early-century results are similar to current, while the mid-century results show a sizeable reduction in area of regimes with a strong monsoonal component. Such a shift would suggest that fires during the mid-century period would be minimal and anecdotal records confirm this. Predicted precipitation patterns from downscaled global climate models indicate numerous epochs of high winter precipitation, inferring higher fire potential for many multi-decade periods during the next century. (C) 2015 Elsevier Ltd. All rights reserved.
机译:长期干旱或高于平均水平的降水会影响莫哈韦沙漠的植被状况,生物量和易燃性。降水季节的变化会改变雷电的可能性,雷电是引起火灾的主要点火源。这项研究的目的是表征近期,历史和未来降水模式与火灾之间的关系。对1971年至2010年的月度降水数据进行分类,可以发现四种降水类型:冬季低/夏季低,冬季中/夏季中,冬季高/夏季低和冬季高/夏季高。夏季季风降水的两种模式仅覆盖了莫哈韦沙漠生态区的40%,但包含了88%的燃烧面积和95%的重复燃烧面积。对本世纪初(湿)和本世纪中叶(干旱)的历史降水进行分类,可以发现政权边界发生了明显的变化。本世纪初的结果与当前类似,而本世纪中叶的结果表明,具有强烈季风成分的政权面积大大减少。这种转变表明,本世纪中叶的火灾将是最小的,据传闻证实。降尺度的全球气候模型预测的降水模式表明了冬季降水高发的许多时期,并在下一世纪的许多个数十年期间推断出更高的着火潜力。 (C)2015 Elsevier Ltd.保留所有权利。

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