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Landscape heterogeneity and fire behavior: scale-dependent feedback between fire and grazing processes

机译:景观异质性和火灾行为:火灾和放牧过程之间尺度相关的反馈

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Fire and grazing are ecological processes that frequently interact to modify landscape patterns of vegetation. There is empirical and theoretical evidence that response of herbivores to heterogeneity is scale-dependent however the relationship between fire and scale of heterogeneity is not well defined. We examined the relationship between fire behavior and spatial scale (i.e., patch grain) of fuel heterogeneity. We created four heterogeneous landscapes modeled after those created by a fire-grazing interaction that differed in grain size of fuel patches. Fire spread was simulated through each model landscape from 80 independent, randomly located ignition points. Burn area, burn shape complexity and the proportion of area burnt by different fire types (headfire, backfire and flankfire) were all affected by the grain of fuel patch. The area fires burned in heterogeneous landscapes interacted with the fuel load present in the patch where ignition occurred. Burn complexity was greater in landscapes with small patch grain than in landscapes with large patch grain. The proportion of each fire type (backfire, flankfire and headfire) was similar among all landscapes regardless of patch grain but the variance of burned area within each of the three fire types differed among treatments of patch grain. Our landscape fire simulation supports the supposition that feedbacks between landscape patterns and ecological processes are scale-dependent, in this case spatial scale of fuel loading altering fire spread through the landscape..
机译:火和放牧是生态过程,经常相互作用以改变植被的景观格局。有经验和理论证据表明,草食动物对异质性的反应是尺度依赖性的,但是火与异质性尺度之间的关系尚不明确。我们研究了火行为与燃料异质性的空间尺度(即补丁颗粒)之间的关系。我们创建了四个异类景观,它们是通过火掠交互作用创建的,其燃料块的粒度不同。通过从80个独立且随机定位的点火点在每个模型景观中模拟了火势蔓延。燃烧面积,燃烧形状的复杂性以及不同火种(头火,逆火和侧面火)燃烧的面积比例均受燃油斑粒的影响。在异质景观中燃烧的区域火灾与发生点火的斑块中存在的燃料负荷相互作用。斑块较小的景观比斑块较大的景观的烧伤复杂度更高。不管斑纹颗粒如何,所有景观中每种火类型(逆火,侧火和头火)的比例都相似,但是三种斑纹中每种火种的燃烧面积方差在斑纹处理之间有所不同。我们的景观火灾模拟支持这样一种假设,即景观格局和生态过程之间的反馈取决于规模,在这种情况下,燃料负载的空间规模会改变整个景观的火势蔓延。

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