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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Long-term large wood load fluctuations in two low-order streams in Southern Chile
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Long-term large wood load fluctuations in two low-order streams in Southern Chile

机译:智利南部两次低阶流的长期大型木材负荷波动

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The eco-hydrogeomorphic significance of large wood (LW) and its potential for increasing downstream hazards during extreme floods have been widely recognized. We used LW data collected for a 10-year period from the two low-order streams of Pichun (Pi) and Vuelta de Zorra (VZ) in Southern Chile to (a) determine if the abundance and dimensions of individual LW pieces change with time, (b) quantify wood load fluctuations during the 10-year period, and (c) assess the role of LW recruitment from the riparian forests to explain wood load fluctuations during the study period. Nine years after the first survey, the number of LW pieces in Pi and VZ diminished by 60 and 40%, respectively. Despite the reduction in these numbers, in Pi, the LW dimensions did not change significantly during the study. In VZ, the dimensions exhibited statistically significant differences, despite being within the same class. In both catchments, the LW load fluctuated during a 10-year period, but the drivers of change differed. Although tree toppling was the recruitment mechanism responsible for LW in both stream cases, the high wood load measured in Pi at the beginning of the study suggested massive tree recruitments before the first survey, followed by wood exports which were higher than inputs in the subsequent 10-year period. In VZ, LW load decreased during the first 9 years (mean annual rate of similar to 9.2 m(3) year(-1)) and then increased by similar to 12.1 m(3) year(-1)in year 10. At VZ, the inputs consisted of single trees that were recruited from the riparian area and by upstream flotation, while exports occurred by downstream fluvial transport. Wood inputs and exports occurred asynchronously and led to LW load fluctuations at decadal and annual intervals. Land management and tree species thus exert a major influence on wood inventory and budget in streams. (c) 2020 John Wiley & Sons, Ltd.
机译:广泛认可,大型木材(LW)的生态水 - 水电晶二甲二烯族意义及其增加下游危害的潜力得到了广泛认可。我们使用从智利南部两年的Pichun(PI)和Vuelta de Zorra(vz)的两个低阶流出的LW数据到(a)确定各个LW碎片的丰富和尺寸是否随时间而变化(b)在10年期间量化木材负荷波动,(c)评估LW招募在河岸林中的作用,以解释研究期间的木材负荷波动。第一次调查后九年,PI和VZ中的LW碎片数分别分别减少了60%和40%。尽管这些数字减少,但在PI中,在研究期间,LW尺寸并没有显着变化。尽管存在于同一课程,但尺寸表现出统计上显着的差异。在两个集水区内,LW负荷在10年期间波动,但变化的驱动因素不同。虽然树倒塌是招生机制,但在流体案件中负责LW,在第一次调查之前,在研究开始时PI中测量的高木载荷提出了大量的树木招聘,其次是在随后的10个高于投入的木材出口 - 年期。在VZ中,LW负荷在前9年期间减少(平均年度率与9.2米(3)年(-1)),然后在10年内增加12.1米(3)年(-1)。 VZ,输入包括从河岸区域和上游浮选招募的单树,而下游河流运输发生。木材投入和出口异步发生,导致了Decadal和每年间隔的LW负载波动。因此,土地管理和树种对溪流的木材库存和预算产生了重大影响。 (c)2020 John Wiley&Sons,Ltd。

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