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Measuring fire severity: Are canopy, understorey and below-ground measures coupled in sclerophyll forest fires?

机译:衡量火灾严重程度:硬叶林大火是否结合了冠层,地下和地下措施?

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摘要

Fire creates complex patterns of burnt, scorched and unburnt vegetation, commonly referred to as fire severity. This study examines the spatial complexities of fire severity and explores the relationships between common methods of measuring fire severity and their utility in predicting the effects of fire severity on plant ecological processes. Experimental burns were undertaken in dry sclerophyll vegetation in Gibraltar Range National Park, NSW, Australia. Following fires, fire severity was assessed using three common methods (scorch height, burn tip diameter on shrubs, leaf scorch on graminoids). In addition, the relationship between on-ground measurements of fire severity and ecological processes known to be influenced by fire severity/intensity were also examined (emergence of seedlings of serotinous species, emergence of seedlings of hard-seeded species and resprouting ability of shrubs). Our results indicate that fire severity at the canopy level, understorey level and below-ground were not strongly correlated with each other. Furthermore, fire severity measurements in closest proximity to the ecological process being measured were found to have the strongest relationships. Finally, these results indicate that fire severity should be measured at all strata (below-ground, understorey level and canopy level) in order to examine the overall fire severity at a site.
机译:火灾会造成复杂的燃烧,焦化和未燃烧植被模式,通常称为火灾严重性。这项研究检查了火灾严重程度的空间复杂性,并探讨了测量火灾严重程度的常用方法与它们在预测火灾严重程度对植物生态过程的影响中的效用之间的关系。在澳大利亚新南威尔士州直布罗陀山脉国家公园的干燥硬叶植物中进行了实验性烧伤。火灾后,使用三种常用方法(焦烧高度,灌木上的燃烧尖端直径,类葛粉的叶子焦烧)评估火灾的严重性。此外,还检查了地面火势测量值与已知受火势/强度影响的生态过程之间的关系(有色种苗出苗,硬种子种苗出苗和灌木的繁殖能力) 。我们的结果表明,冠层,地下和地下的火灾严重程度彼此之间没有强烈关联。此外,发现与被测生态过程最接近的火灾严重性测量值具有最强的关系。最后,这些结果表明,应在所有地层(地下,地下层和林冠层)测量火灾严重性,以便检查现场的总体火灾严重性。

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