首页> 外文会议>Asian conference on remote sensingACRS >TERRESTRIAL LASER SCANNING TO SUPPORT CARBON ESTIMATION IN NATURE CONSERVATION AREA: A CASE STUDY OF HAAGSE BOS AND SNIPPERT FOREST, NETHERLANDS
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TERRESTRIAL LASER SCANNING TO SUPPORT CARBON ESTIMATION IN NATURE CONSERVATION AREA: A CASE STUDY OF HAAGSE BOS AND SNIPPERT FOREST, NETHERLANDS

机译:陆地激光扫描支持自然保护区碳估计 - 以荷兰为例,北京博斯和狙击林

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Forests have the ability to sequester and store carbon in the living biomass. This make forests play a crucial role in climate change. Thus, estimating aboveground forest biomass and carbon stocks is one of the most important element for measuring and monitoring carbon stock under the REDD+ mechanism. This study aims to estimate above-ground biomass (AGB) and carbon stock based on allometric equations in the temperate forest of nature conservation area of Haagse Bos and Snippert Forest, the Netherland. Terrestrial Laser Scanner (TLS) in a multiple-scan design to measure diameter at breast height (DBH) and tree height of all trees within 500 m~2 sample plots was used. Results of this study show that TLS can detect trees correctly with a success rate of 97% compared with field measurement. The highest success rate of trees detection are 98.3% for evergreen forest followed by 98% for broadleaf forest and 91.9% for mixed forest. Very strong relationship was found between the DBH measured with the TLS data and field measurements of plot values with R~2 of 0.96 and RMSE of 2.42 cm. However, comparing tree height of TLS data and field measurement, a reasonable relationship with R~2 of 0.61 and RMSE of 3.66 m were found. The above ground carbon (AGC) stocks in study area estimated from field measurement was 103.7 ton/ha., while the AGC stocks estimated from TLS data was 104 ton/ha. The result of mean AGC stock from field measurement and TLS data in evergreen forest were 61 ton/ha and 65 ton/ha, respectively. In broadleaf forest were 145 ton/ha and 151 ton/ha, respectively. However, in mixed forest were 106 ton/ha and 117 ton/ha, respectively. The results show that TLS data are very suitable and had a high agreement with ground truth for estimation of aboveground biomass and carbon stock.
机译:森林有能力螯合和储存活生物量的碳。这使森林在气候变化中发挥着至关重要的作用。因此,估计地上森林生物质和碳股是测量和监测REDD +机制下的最重要的元素之一。本研究旨在估计基于Haagse Bos和Snippert Forest,荷兰自然保护区的温带森林的同传方程的地上生物质(AGB)和碳储备。在多扫描设计中的陆地激光扫描仪(TLS)在乳房高度(DBH)中测量直径,并使用500 m〜2个样品图内所有树木的树形高度。该研究的结果表明,与现场测量相比,TLS可以正确地检测树木的成功率为97%。常绿林的最高成功率为98.3%,然后为阔叶林为98%,混合森林为91.9%。使用TLS数据和曲线值的曲线值测量的DBH之间发现了非常强烈的关系,其中R〜2的0.96和2.42cm的RMSE。但是,比较TLS数据和现场测量的树高,发现与0.61的R〜2和3.66米的合理关系。从现场测量估计的研究区域的上述地面碳(AGC)库存为103.7吨/公顷,而TLS数据估计的AGC股票为104吨/公顷。常绿森林中的场测量和TLS数据的平均AGC股票的结果分别为61吨/公顷,65吨/公顷。在阔叶林中分别为145吨/公顷,分别为151吨/公顷。然而,在混合林中分别为106吨/公顷,分别为117吨/公顷。结果表明,TLS数据非常适合,与地上生物质和碳储存估计的原始真相高。

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