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首页> 外文期刊>Journal of Forestry >Integration of LIDAR and Digital Aerial Imagery for Detailed Estimates of Lodgepole Pine (Pinus contorta) Volume Killed by Mountain Pine Beetle (Dendroctonus ponderosae)
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Integration of LIDAR and Digital Aerial Imagery for Detailed Estimates of Lodgepole Pine (Pinus contorta) Volume Killed by Mountain Pine Beetle (Dendroctonus ponderosae)

机译:激光雷达和数字航空影像的集成,详细估算了被山松甲虫(Pendus contorta)杀死的山松(Pinus contorta)体积

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摘要

The Canadian province of British Columbia is currently experiencing the most severe mountain pine beetle infestation on record. Estimating the volume of pine killed across the land base is critical for understanding the impacts of the infestation and for adjusting annual timber supply forecasts and allocating mitigation resources. At present, coarse strategic data sets are used to quantify pine volume losses associated with mountain pine beetle; however, we posit that high spatial resolution remotely sensed data sets may facilitate more refined estimates of volume losses. In this article, we proposed a method whereby LIDAR and digital aerial imagery are used in a sampling approach to estimate volume losses at the plot level. Fifty-five 0.25-ha photo-plots were established. Mean plot dominant stand heights were derived from LIDAR data. Tree species, mountain pine beetle attack status (red or gray), dbh, stem density, and mean plot age were estimated via manual interpretation of the aerial imagery. These attributes were then combined using species-specific equations to estimate the volume of pine killed within each of the sample photo-plots. The plot-level average volume killed by mountain pine beetle was estimated to be 40 m^sup 3^ (SD = 27 m^sup 3^), or 159 m^sup 3^/ha (SD = 109 m^sup 3^/ha), representing approximately 42% of total pine by volume. The plot-level procedures for producing estimates of infestation impact are developed to form the basis for a large-area, sample-based monitoring program. [PUBLICATION ABSTRACT]
机译:加拿大不列颠哥伦比亚省目前正在经历有记录以来最严重的山松甲虫侵扰。估算整个陆地基地被杀死的松树的数量对于了解侵染的影响以及调整年度木材供应预测和分配缓解资源至关重要。目前,使用粗略的战略数据集来量化与山松甲虫有关的松树体积损失。但是,我们认为,高空间分辨率的遥感数据集可能有助于更精确地估计体积损失。在本文中,我们提出了一种方法,其中在采样方法中使用LIDAR和数字航空影像来估算地块级别的体积损失。建立了55个0.25公顷的照片图。平均图的主要林分高度是从LIDAR数据得出的。树木种类,山松甲虫的侵袭状态(红色或灰色),dbh,茎密度和平均积龄是通过对航空影像的人工解释来估算的。然后使用特定于物种的方程式将这些属性组合在一起,以估计每个样本光绘图中被杀死的松树的体积。据估计,被山松甲虫杀死的地块平均体积为40 m ^ sup 3 ^(SD = 27 m ^ sup 3 ^)或159 m ^ sup 3 ^ / ha(SD = 109 m ^ sup 3 ^ / ha /公顷),约占松树总体积的42%。开发用于产生侵染影响估计值的地块级程序,以构成基于样本的大面积监测程序的基础。 [出版物摘要]

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    《Journal of Forestry》 |2010年第3期|p.111-119|共9页
  • 作者单位

    Received January 7, 2009, accepted July 21 , 2009.Christopher Bater (cbater@interchange.ubc.ca) is spatial analyst. Integrated Remote Sensing Studio, Department of Forest Resources Management, Faculty of Forestry, University of British Columbia, 2424 Main Mall, Vancouver, British Columbia, V6T IZ4, Canada. Michael A. Wulder (mwulder@nrcan-rncan.gc.ca) is senior research scientist, and Joanne C. White (jowhite@nrcan-nrcan.gc.ca) is spatial analyst, Canadian Forest Service, Paafic Forestry Center, Canadian Forest Service, Natural Resources Canada, 506 West Burnside Road Victoria, British Columbia, VSZ IM5, Canada. Nicholas C. Coops (nicholas.coops@ubc.ca) is professor, Integrated Remote Sensing Studio, Department of Forest Resources Management, Faculty of Forestry, University of British Columbia, 2424 Main Mali, Vancouver, British Columbia, V6T 1Z4, Canada. The authors acknowledge Jerry Stenbergand Ken Blagborne of Forest Dimensions for provision of the data and early discussions concerning information needs, Kevin Um for generation of the canopy height modeh and orthorectification of the air photos, and Don Skinner for photo interpretation. This research was funded by the Government of Canada through the Mountain Pine Beetle Program, a 3-year, $100 million program administered by Natural Resources Canada, Canadian Forest Service.,;

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