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首页> 外文期刊>Forest Ecology and Management >Spatial, seasonal, and diel forest floor moisture dynamics in Jeffrey pine-white fir forests of the Lake Tahoe Basin, USA
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Spatial, seasonal, and diel forest floor moisture dynamics in Jeffrey pine-white fir forests of the Lake Tahoe Basin, USA

机译:美国太浩湖盆地杰弗里松白冷杉林中空间,季节和diel林地的水分动态

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摘要

Variation in consumption of forest floor fuels in temperate coniferous forests have been linked to variation in fire effects, including mineral soil heating, tree mortality, and erosion. Moisture content of forest floor fuels influences consumption and therefore is a primary predictor of fire behavior and effects. To better understand spatial and temporal variability in forest floor moisture, we collected fuels from each forest floor horizon, cones, and woody fuels in four long-unburned Jeffrey pine(Pirtus jeffreyi) - white fir (Abies concolor) stands within the Lake Tahoe Basin, USA. To isolate the effects of spatial position within a stand, fuel moisture was measured at the base of trees, beneath the crown drip line, and beyond the crown in opengaps across a fire season. We compared spatial moisture dynamics at the m2, ha, and Basin scales and temporal dynamics at the day (one 24-h sampling period), month, and year scales (one site was measured in 2009 and 2010). Duff moisture varied spatiallywithin stands, whereas moisture in litter, cones, and woody fuels did not. Forest floor moisture differed between years while woody fuel moisture did not. The variability in field results underscore the importance of measuring duff moisture content, as well as 10-h woody fuel moisture. A better understanding of the complexity of forest fuels will help land managers manage fire in Tahoe Basin forests and inform the understanding of fuels dynamics in other temperate coniferous forests.
机译:温带针叶林林地燃料消耗的变化与火灾的变化有关,包括矿物土壤加热,树木死亡率和侵蚀。森林地板燃料的水分含量会影响消耗量,因此是火灾行为和后果的主要预测指标。为了更好地了解林地水分的时空变化,我们从太浩湖盆地内的四个长期未燃烧的杰弗里松(Pirtus jeffreyi)-白杉(Abies concolor)林中收集了每个林地地平线,视锥和木质燃料的燃料。 , 美国。为了隔离支架内空间位置的影响,在整个火季中,在树根处,树冠滴水线以下以及树冠上方的开放间隙中测量了燃料水分。我们比较了平方米,公顷和流域尺度上的空间水分动态,以及当日(一个24小时采样期),月和年尺度(2009年和2010年测量了一个站点)的时空动态。达芙的水分在林分内空间变化,而凋落物,果皮和木质燃料中的水分没有变化。多年之间,森林地面的水分有所不同,而木质燃料的水分却没有。田间结果的可变性强调了测量达芙水分含量以及10小时木质燃料水分的重要性。更好地了解森林燃料的复杂性将有助于土地管理人员管理塔霍盆地森林的火灾,并有助于了解其他温带针叶林燃料动态。

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