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Allometric equations for crown fuel biomass of Aleppo pine (Pinus halepensis Mill.) in Greece

机译:希腊阿勒颇松(Pinus halepensis Mill。)的冠状燃料生物量的计量方程。

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Allometric equations for the estimation of crown fuel weight of Aleppo pine (Pinus halepensis Mill.) trees in the Mediterranean Basin were developed. Forty trees were destructively sampled and their crown fuels were weighed separately for each fuel category. Crown fuel components, both living and dead, were separated into size classes and regression equations that estimate crown fuel load by diameter class were derived. The allometric equation y = ax super(b)with diameter at breast height as the single predictor was chosen, because the addition of other parameters did not decrease the residual sum of squares significantly. The adjusted coefficient of determination (R super(2) sub(adj)) values were high (R super(2) sub(adj) = 0.82-0.88) in all cases. Diameter at breast height was the most significant determinant of crown fuel biomass. The aerial fuels that are consumed during crown fires (i.e. needles and twigs with diameter less than 0.63 cm) comprised 29.3% of the total crown weight. Live fuels constituted 96.3% of total crown biomass, distributed as follows: needles 16.7% (average load 12.07 kg), branches with 0.0-0.63-cm diameter 12.6% (average load 9.18 kg), 0.64-2.5-cm diameter 37.3% (27.99 kg), 2.51-7.5-cm diameter 25.4% (18.59 kg), and >7.5-cm diameter 3.7% (2.65 kg). The equations provide quantitative fuel biomass attributes for use in crown fire behaviour models, fire management and carbon assessment in Aleppo pine stands.
机译:建立了估计地中海盆地阿勒颇松(Pinus halepensis Mill。)树冠燃料重量的异速方程。对40棵树进行了破坏性采样,并对每种燃料类别的树冠燃料分别称重。将冠状燃料成分(包括生的和死的)分为尺寸类别,并得出了按直径类别估算冠状燃料负荷的回归方程。选择异速方程y = ax super(b),以乳房高度处的直径作为唯一预测变量,因为添加其他参数不会显着减少残差平方和。在所有情况下,调整后的确定系数(R super(2)sub(adj))值都很高(R super(2)sub(adj)= 0.82-0.88)。胸高的直径是冠状燃料生物量的最重要决定因素。冠火期间消耗的航空燃料(即直径小于0.63厘米的针和细枝)占冠总重量的29.3%。活性燃料占冠生物量总量的96.3%,分布如下:针16.7%(平均负载12.07千克),直径0.0-0.63厘米的树枝占12.6%(平均负载9.18千克),直径0.64-2.5厘米的树枝占37.3%( 27.99公斤),直径2.51-7.5厘米25.4%(18.59公斤)和直径> 7.5厘米3.7%(2.65公斤)。这些方程式提供了定量的燃料生物量属性,可用于阿勒颇松林冠顶火灾行为模型,火灾管理和碳评估。

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