基于杉木人工林自疏规律的林分模型推导树木生长模型

IF 1.5 4区 农林科学 Q2 FORESTRY
X. Zhang, Qv Cao, Y. Qu, J. Zhang
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引用次数: 0

摘要

张雄清,曹光V,曲彦成,张建国(1)密度依赖性死亡导致的自疏是森林发育过程中常见的现象。为了改进气候变化下森林演替过程的预测,需要可靠的林分水平模型。本研究基于气候敏感的杉木人工林自疏规律,从林分生长和生存模型中导出树径和生存模型,建立了一套完整的林分模型系统。由此产生的综合系统,具有统一的数学结构,应该在树和林分水平上提供一致的估计。在林分和树木水平上的预测都是合理的。由于从树木模型输出中汇总的林分水平值与直接从林分模型预测的林分水平值不同,因此采用分解方法来提供不同分辨率模型之间的数值一致性。与未经调整的方法相比,分解方法对树木存活率的预测略差,但对树木直径的预测略好。由于林分模型是在气候敏感的自疏轨迹下建立的,综合系统可以提供合理的预测,有助于气候变化下杉木人工林的管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deriving tree growth models from stand models based on the self-thinning rule of Chinese fir plantations
Xiongqing Zhang , Quang V Cao , Yancheng Qu , Jianguo Zhang (1) Self-thinning due to density-dependent mortality usually occurs during the forest development. To improve predictions of such processes during forest successions under climate change, reliable stand-level models are needed. In this study, we developed an integrated system of treeand stand-level models by deriving tree diameter and survival models from stand growth and survival models based on climate-sensitive self-thinning rule of Chinese fir plantations in subtropical China. The resulting integrated system, having a unified mathematical structure, should provide consistent estimates at both tree and stand levels. Predictions were reasonable at both stand and tree levels. Because stand-level values aggregated from the tree model outputs are different from those predicted directly from the stand models, the disaggregation approach was applied to provide numerical consistency between models of different resolutions. Compared to the unadjusted approach, predictions from the disaggregation approach were slightly worse for tree survival but slightly better for tree diameter. Because the stand models were developed under the climatesensitive self-thinning trajectory, the integrated system could offer reasonable predictions that could aid in managing Chinese fir plantations under climate change.
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来源期刊
CiteScore
3.30
自引率
0.00%
发文量
54
审稿时长
6 months
期刊介绍: The journal encompasses a broad range of research aspects concerning forest science: forest ecology, biodiversity/genetics and ecophysiology, silviculture, forest inventory and planning, forest protection and monitoring, forest harvesting, landscape ecology, forest history, wood technology.
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