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基于LiDAR的亞熱帶次生林林窗對幼樹更新影響分析
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湖南省自然科學(xué)基金面上項目(2015JJ2201)、湖南省教育廳科學(xué)研究項目(13B153、14C1182)和中南林業(yè)科技大學(xué)人才引進(jìn)科研啟動基金項目


Effect of Canopy Gap on Subtropical Secondary Forest Sapling Regeneration Based on LiDAR
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    摘要:

    以湖南亞熱帶次生林為研究對象,利用多時相機載激光雷達(dá)(Light detection and ranging,LiDAR)和野外調(diào)查數(shù)據(jù)對林窗及幼樹進(jìn)行監(jiān)測,分析比較林窗對幼樹密度分布和樹高生長變化的影響。結(jié)果表明,林窗大小和位置對幼樹密度分布都有顯著影響,喜光樹種幼樹主要集中在小林窗的中心區(qū)或大林窗的過渡區(qū),在大林窗中密度最大(647株/hm2),耐蔭樹種幼樹主要集中在林窗的邊緣區(qū),在中等林窗中密度最大(941株/hm2)。林窗大小對幼樹樹高生長有顯著影響,喜光樹種和耐蔭樹種幼樹分別在大林窗和中等林窗中樹高生長量最大(69.3cm/a、57.7cm/a),喜光樹種幼樹在中心區(qū)的樹高生長量明顯大于其他位置,耐蔭樹種幼樹的樹高生長量在位置上的差異不顯著。線性混合模型分析顯示林窗大小是促進(jìn)幼樹樹高生長的最主要因素,幼樹樹高生長變化在不同林窗中呈聚集性。從幼樹密度樹高生長情況來看,50~150m2林窗較適合促進(jìn)亞熱帶次生林的群落演替。

    Abstract:

    Canopy gaps are small-scale openings in forest canopies which offer suitable micro-climatic conditions for tree regeneration. The subtropical secondary forest in Hunan Province was focused, and multi-temporal light detection and ranging (LiDAR) and survey data were adopted to analyze effects of different canopy gaps on sapling density and height growth. The results showed that both size of gap and position within gap significantly affected sapling density distribution. Shade intolerant sapling was mainly distributed in central zones of small-sized gap and transition zones of large-sized gap, in which the density got the maximum (647 trees/hm2). Shade tolerant sapling was usually appeared in edge zones of gaps, and the maximum density (941 trees/hm2) was occurred in medium-sized gap. The size of gap significantly affected sapling height growth, shade intolerant and shade tolerant sapling had the greatest growth rate of 69.3cm/a and 57.7cm/a in large-sized and medium-sized gaps, respectively. Height growth of shade intolerant sapling in central zones was significantly higher than those in other zones, while shade tolerant sapling height growth was irrespective of their position within the gap. Results of mixed linear model suggested that size of gap had the main effect on sapling height growth, which exhibited aggregation among different levels of gaps. The higher density and more rapid height growth rate were got in the gap with size of 50~150m2, which could be the optimal gap size for facilitating community succession of subtropical secondary forest.

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劉峰,譚暢,王紅,龍江平.基于LiDAR的亞熱帶次生林林窗對幼樹更新影響分析[J].農(nóng)業(yè)機械學(xué)報,2017,48(3):198-204. LIU Feng, TAN Chang, WANG Hong, LONG Jiangping. Effect of Canopy Gap on Subtropical Secondary Forest Sapling Regeneration Based on LiDAR[J]. Transactions of the Chinese Society for Agricultural Machinery,2017,48(3):198-204.

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  • 收稿日期:2016-08-01
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  • 在線發(fā)布日期: 2017-03-10
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