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Impact of ski run construction on atypical channel head development

机译:滑雪道建设对非典型航道头部发育的影响

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The development of ski infrastructure in mountainous areas has a significant impact on the development of erosion landforms and modification of existing landforms on slopes. The main purpose of our study was to determine the effects of ski run construction and artificial snowmaking on the development of channel heads and drainage lines as well as pattern of processes occurring along longitudinal profile of stream channel. The research was performed in the Remiaszow catchment on two ski runs in the Bialzanska Kotelnica ski area (the Polish Inner Carpathians). Analysis of the location of the channel head of the Remiaszow Stream catchment over time was performed on the basis of multi-temporal DEMs generated using high resolution LiDAR data. The data were obtained via two ALS scans (Airborne Laser Scanning): before the 2013 and after 2016 ski run construction, as well as TLS (Terrestrial Laser Scanning) conducted in 2017 and in the course of fieldwork in 2018 using GPS RIK. The construction of ski runs leads to the formation of new channel heads, all of which develop in drainage ditches. Three distinct zones emerge in the longitudinal profile: 1) artificially concentrated flow zone, 2) forced, dispersed flow zone, 3) rejuvenated, concentrated flow zone. This means that two channel head formation zones become available in the longitudinal profile. large inflows of water (200% or more) due to artificial snowmaking lead to bidirectional development of the valley network. In general, identification of the channel head pattern in area of ski run construction play important role in understanding of the sustainable development of mountain ecosystem. (C) 2019 Elsevier B.V. All lights reserved.
机译:山区滑雪基础设施的发展对侵蚀地貌的发展和斜坡上现有地貌的改造具有重大影响。我们研究的主要目的是确定滑雪道建设和人工造雪对河床顶部和排水管线的发展以及沿河道纵向剖面发生的过程模式的影响。这项研究是在Remiaszow流域的Bialzanska Kotelnica滑雪区(波兰内喀尔巴阡山脉)的两个滑雪道上进行的。基于使用高分辨率LiDAR数据生成的多时间DEM,对Remiaszow流域的流域通道头的位置进行了分析。数据是通过两次ALS扫描(机载激光扫描)获得的:2013年之前和2016年滑雪道建设之后,以及2017年进行的TLS(地面激光扫描)以及2018年使用GPS RIK进行的野外作业。滑雪道的建设导致形成新的渠首,所有渠首都在排水沟中发展。纵向轮廓上出现三个不同的区域:1)人工集中的流动区域,2)强制分散的流动区域,3)充满活力的集中流动区域。这意味着在纵向轮廓上可以使用两个通道头形成区域。人工造雪导致大量的水流入(200%或更多)导致山谷网络的双向发展。总体而言,在滑雪道建设区域内识别河床形态对了解山区生态系统的可持续发展具有重要作用。 (C)2019 Elsevier B.V.保留所有照明。

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