计算地中海物种活燃料和死燃料负荷的异速方程

IF 2.6 2区 农林科学 Q1 FORESTRY
Leyre Deltell, Victor Manuel Santana, M. Jaime Baeza
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引用次数: 0

摘要

在森林火灾频发的地中海盆地,确定植被结构和燃料负荷是了解植被易燃性的关键。确定哪种植物结构变量与活燃料和死燃料关系最佳,从而为地中海盆地西部的九种植物建立异速方程。在伊比利亚半岛东部(巴伦西亚省),我们测量了四个结构变量(茎基部直径、高度、最大直径和垂直直径),并通过异速方程将其与分为不同大小等级的生燃料和死燃料联系起来。我们还分析了所研究物种不同发育阶段的燃料变化以及枯死燃料的垂直分布。考虑到所有发育状态的一般方程可用于确定活燃料。但是,为了获得枯死燃料,我们建议使用针对每种发育状态和燃料组分的特定方程,以获得更好的准确性。几乎在所有情况下,茎基部直径都是估算所研究物种燃料的最佳结构变量。物种本体发育过程中的枯燃料负荷是管理地中海植物群落的一个关键因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Allometric equations to calculate living and dead fuel loads in Mediterranean species

Allometric equations to calculate living and dead fuel loads in Mediterranean species

Determining the structure and fuel load is key to know the flammability of vegetation in the Mediterranean Basin where forest fires are frequent. Determine which plant structural variable is best related to living and dead fuel to develop allometric equations in nine species in the Western Mediterranean Basin. In the east of the Iberian Peninsula (Valencia Province), we measured four structural variables (basal stem diameter, height, maximum diameter and perpendicular diameter) that were related, by means of allometric equations, to the living and dead fuel separated into different size classes. We also analyze fuel changes across developmental states of the studied species, and the vertical distribution of dead fuel. General equations that consider all development states can be used to determine living fuel. However to obtain dead fuel, we recommend using specific equations for each development state and fuel fraction for better accuracy. The basal stem diameter was the best structural variable in almost all cases for estimating fuel in the studied species. Dead fuel load throughout species’ ontological development is a key factor to manage Mediterranean plant communities.

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来源期刊
CiteScore
5.10
自引率
3.60%
发文量
77
审稿时长
6-16 weeks
期刊介绍: The European Journal of Forest Research focuses on publishing innovative results of empirical or model-oriented studies which contribute to the development of broad principles underlying forest ecosystems, their functions and services. Papers which exclusively report methods, models, techniques or case studies are beyond the scope of the journal, while papers on studies at the molecular or cellular level will be considered where they address the relevance of their results to the understanding of ecosystem structure and function. Papers relating to forest operations and forest engineering will be considered if they are tailored within a forest ecosystem context.
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