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Identification of gaps in mangrove forests with airborne LIDAR

机译:机载激光雷达识别红树林中的空隙

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Mangrove forests change frequently due to disturbances from tropical storms, frost, lightning, and insects. It has been suggested that the death and regeneration of trees in small gaps due to lightning may play a critical role in mangrove forest turnover; however, the large-scale quantification of spatial pattern and areas of gaps is lacking for investigating this issue. Airborne light detection and ranging (LIDAR) technology provides an effective way for identifying gaps by remotely obtaining direct measurements of ground and canopy elevations. A method based on an alternative sequential filter and black top-hat mathematical morphological transformation was developed to extract gap features. Comparison of identified gap polygons with raw LIDAR measurements and field surveys shows that the proposed method successfully extracted gap features in mangrove forests in Everglades National Park. There are 400-500 lightning gaps per square kilometer in mangrove forests at the study sites. The distribution of gap sizes follows an exponential form and the area of gaps with sizes larger than 100 m(2) account for 55-61% of the total area of gaps. The area of gaps in the mangrove forest in Everglades National Park is about 4-5% of the total forest area and the average gap formation rate is about 0.3% of the total forest area per year, indicating that lightning gaps play an important role in mangrove forest dynamics. (C) 2007 Elsevier Inc. All rights reserved.
机译:由于热带风暴,霜冻,闪电和昆虫的干扰,红树林经常发生变化。有人提出,由于雷电,小空隙中树木的死亡和再生可能在红树林的周转中起关键作用。然而,缺乏对空间格局和缺口区域进行大规模量化以调查这一问题的方法。机载光检测和测距(LIDAR)技术通过远程获取地面和树冠高程的直接测量值,提供了一种识别间隙的有效方法。开发了一种基于交替顺序滤波器和黑顶帽数学形态学变换的方法来提取间隙特征。将识别出的间隙多边形与原始激光雷达测量结果和野外调查进行比较表明,该方法成功地提取了大沼泽国家公园红树林的间隙特征。研究地点的红树林每平方公里有400-500个雷电间隙。间隙尺寸的分布遵循指数形式,大于100 m(2)的间隙面积占间隙总面积的55-61%。大沼泽国家公园红树林林隙的面积约占森林总面积的4-5%,平均缺口形成率约为每年林木总面积的0.3%,这表明雷电间隙在森林中起着重要作用。红树林的动态。 (C)2007 Elsevier Inc.保留所有权利。

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