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首页> 外文期刊>Progress in Earth and Planetary Science >Comparison of length and dynamics of wood pieces in streams covered with coniferous and broadleaf forests mapped using orthophotos acquired by an unmanned aerial vehicle
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Comparison of length and dynamics of wood pieces in streams covered with coniferous and broadleaf forests mapped using orthophotos acquired by an unmanned aerial vehicle

机译:用无人机车辆收购的正射床映射针叶和阔叶林覆盖的木材长度和动力学的比较

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As wood pieces supplied by landslides and debris flows are one of the main components of ecological and geomorphic systems, the importance of quantifying the dimensions of the wood pieces is evident. However, the low accessibility of disturbed channels after debris flows generally impedes accurate and quick wood-piece investigations. Thus, remote-sensing measurements for wood pieces are necessitated. Focusing on sub-watersheds in coniferous and broadleaf forests in Japan (the CF and BF sites, respectively), we measured the lengths of wood pieces supplied by landslides (> 0.2 m length and > 0.03 m diameter) from orthophotos acquired using a small unmanned aerial vehicle (UAV). The measurement accuracy was analyzed by comparing the lengths derived from the UAV method with direct measurements. The landslides at the CF and BF sites were triggered by extremely heavy rainfalls in 2017 and 2018, respectively. UAV flights were operated during February and September 2019 at the CF site and during November 2018 and December 2019 at the BF site. Direct measurements of wood pieces were carried out on the date of the respective second flight date in each site. When both ends of a wood piece are satisfactorily extracted from an orthophoto acquired by the UAV, the wood-piece lengths at the CF site can be measured with an accuracy of approximately ±0.5 m. At the BF site, most of the extracted lengths were shorter than the directly measured lengths, probably because the complex structures of the root wad and tree crown reduced the visibility. Most wood pieces were discharged from landslide scars at the BF site, but at the CF site, approximately 750 wood pieces remained in the landslide scars approximately 19 months after the landslide occurrence. The number of wood pieces in the landslide scars of the CF site increased with increasing landslide area, suggesting that some wood pieces can be left even if large landslides occur. The lengths and locations of the entrapped wood pieces at both sites were not significantly changed between the two UAV flight dates. However, during this period, the rainfall intensities around the CF site measured by the closest rain-gauge of the Japan Meteorological Agency reached their second highest values from 1976 to 2019, which exceeded the 30-year return period. This suggests that most of the entrapped wood pieces rarely migrated even under intense rainfall.
机译:作为由山体滑坡和碎片流动供应的木材是生态和地貌系统的主要组成部分之一,量化木块尺寸的重要性是显而易见的。然而,在碎片流动后的受干扰通道的低可访问性通常会阻碍准确和快速的木材调查。因此,需要用于木块的遥感测量。专注于日本的针叶树和阔叶林(分别为CF和BF站点)的次流域,从使用小无人获得的山体(>0.2μm长度和> 0.03米直径)测量了由山体滑坡(> 0.2米长)提供的木材的长度空中车辆(UAV)。通过比较从UAV方法的长度进行直接测量来分析测量精度。 CF和BF站点的山体滑坡分别在2017年和2018年的极度降雨引发。 UAV航班于2019年2月和2019年9月在CF站点和2018年11月和2019年12月在BF网站上运营。在每个站点的各个飞行日期的日期进行木块的直接测量。当木件的两端从由UAV获取的正芯片达到令人满意的时间时,CF位点处的木件长度可以以约±0.5米的精度测量。在BF位点,大多数提取的长度比直接测量的长度短,可能是因为根棉和树冠的复杂结构降低了可见性。大多数木块从BF位点的滑坡疤痕排出,但在CF位点,大约750根木块在滑坡发生后约19个月内留在山体滑坡疤痕中。 CF站点的滑坡疤痕中的木材碎片数量随着山体滑坡面积的增加而增加,表明即使发生大滑坡,也可以留下一些木块。两个站点的夹带木片的长度和位置在两个UAV飞行日期之间没有显着改变。然而,在此期间,通过日本气象局最近的雨量计来的CF网站周围的降雨强度达到了1976年至2019年的第二高值,超过了30年的回报期。这表明即使在激烈的降雨下也很少撕裂的木块很少迁移。

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