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Mathematical consideration of the age-related decline in leaf biomass in forest stands under the self-thinning law

机译:自我稀释法下叶片生物质中叶生物量的年龄相关下降的数学考虑

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摘要

In addition to the hypothetical trends proposed by Kira and Shidei (1967), Odum (1969) and Ryan et al. (1997, 2004), Oshima et al. (1958) observed a complicated age-related change in stand leaf biomass in Abies forests. To explain this change in stand leaf biomass theoretically, the age-related change in leaf biomass was modeled based on the following three assumptions after canopy closure: (i) the self-thinning law; (ii) expanded allometric scaling between the mean individual leaf mass and mean individual total mass; and (iii) the formulation of a logistic function for stand density change. The model successfully explained these three trends in forest stand leaf biomass and introduced expanded allometric scaling including the properties of the model based on simple allometric scaling proposed by Ogawa (2017). Therefore, the model developed here can generalize age-related changes in forest stand biomass better than the model proposed by Ogawa (2017).
机译:除了基拉和山铁田(1967),Odum(1969)和Ryan等人提出的假设趋势 (1997年,2004年),Oshima等。 (1958)观察到滨海森林中虎秆生物量的复杂年龄相关变化。 为了理论上解释Stand叶片生物量的这种变化,叶片生物质的年龄相关变化是基于在冠层关闭后的以下三个假设:(i)自我稀释法; (ii)在平均单个叶片质量和平均单个总质量之间扩展同传缩放; (iii)制定用于稳定密度变化的物流功能。 该模型成功地解释了森林支架叶生物质的这三个趋势,并引入了扩展的同种异度缩放,包括基于OGAWA(2017)提出的简单同传缩放的模型的性质。 因此,这里开发的模型可以概括森林站生物量的年龄相关变化,而不是OGAWA(2017)所提出的模型。

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