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首页> 外文期刊>Computers and Electronics in Agriculture >Terrestrial laser scanning for measuring the solid wood volume, including branches, of adult standing trees in the forest environment.
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Terrestrial laser scanning for measuring the solid wood volume, including branches, of adult standing trees in the forest environment.

机译:陆地激光扫描仪,用于测量森林环境中成年立木的实木体积(包括树枝)。

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摘要

This study evaluates the potential of terrestrial laser scanning (TLS) to assess the solid wood volume (i.e., stem and branch diameters of more than 7 cm) of adult standing trees in the forest environment. The solid wood volume of 42 trees of different species and size classes was investigated under leafless conditions, both by manual destructive field measurements and by TLS. The trees were first digitised by TLS using a protocol developed to provide fine-scale sampling of trees within acceptable scanning time. TLS data were processed by retro-engineering software using geometric fitting procedures to model tree woody structure and to compute the wood volume. After tree felling, labour-intensive fieldwork was conducted to obtain the solid wood volume of the trees by destructive measurements. The comparison between both methods gave excellent results, regardless of the tree species or size. The relative differences of the TLS estimates remained primarily within a range of +or-10% for estimating the volume of the main stem of the trees, and within a range of +or-30% for estimating the cumulative branch volumes. Although our semi-automated modelling method makes it possible to overcome the effect of (acceptable) wind, it remains time-consuming and requires further improvement to be used on a large number of trees. However, it demonstrates the appropriateness of laser scanning techniques and simple geometric fitting to characterise the woody structure of a tree in the forest environment and provides new insights for tree growth monitoring, carbon sequestration and bioenergy assessment.
机译:这项研究评估了陆地激光扫描(TLS)评估森林环境中成年立木的实木体积(即茎和树枝直径超过7厘米)的潜力。在无叶条件下,通过手动破坏性测量和TLS对42种不同树种和大小类别的树木的实木体积进行了研究。 TLS首先使用可在可接受的扫描时间内对树木进行精细采样的协议通过TLS将树木数字化。 TLS数据通过逆向工程软件使用几何拟合程序进行处理,以模拟树木的木质结构并计算木材体积。砍伐树木后,进行了劳动密集型的野外作业,以通过破坏性测量获得树木的实木体积。两种方法之间的比较都给出了极好的结果,而与树木的种类或大小无关。 TLS估计的相对差异主要用于估计树木主茎的体积,而仍在+或-10%的范围内,而对于估计累积分支体积,则在+或-30%的范围内。尽管我们的半自动建模方法可以克服(可接受的)风的影响,但它仍然很耗时,并且需要进一步改进才能用于大量树木。但是,它证明了激光扫描技术和简单的几何拟合在表征森林环境中树木的木质结构方面的适当性,并为树木生长监测,固碳和生物能源评估提供了新的见解。

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