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Sources and interpretation of channel complexity in forested subalpine streams of the Southern Rocky Mountains

机译:南部洛矶山脉亚高山森林溪流河道复杂性的来源和解释

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摘要

We evaluate correlations between stream geomorphic complexity and characteristics of the adjacent riparian forest, valley geometry, and land use history in forested subalpine streams of the Colorado Front Range. Measures of geomorphic complexity focus on cross-sectional, planform, and instream wood piece and logjam variables. We categorize adjacent riparian forests as old-growth unmanaged forest (OU), younger unmanaged forest (YU), and younger managed forest (YM), and valley geometry as laterally confined, partly confined, or unconfined. Significant differences in geomorphic stream complexity between OU, YU, and YM result primarily from differences in wood pieces and logjams, and these differences correlate strongly with pool volume and organic matter storage. Significant differences in planform and cross-sectional complexity correlate more strongly with valley geometry, but do not explain as much of the observed variability in complexity between streams as do the wood variables. Unconfined OU streams have the largest wood loads and the greatest complexity, whereas legacy effects of logging, tie-drives, and channel simplification create lower complexity in YM streams, even relative to YU streams flowing through similarly aged forest. We find that management history of riparian forests exerts the strongest control on reduced functional stream channel complexity, regardless of riparian forest stand age.
机译:我们评估了科罗拉多前锋森林亚高山流溪流地貌复杂性与相邻河岸森林特征,山谷几何形状和土地利用历史之间的相关性。地貌复杂性的测量重点是横断面,平面形状以及入流木片和原木变量。我们将相邻的河岸森林分类为旧的非管理型森林(OU),较年轻的非管理型森林(YU)和较年轻的管理型森林(YM),以及山谷的几何形状分为侧向限制,部分限制或未限制。 OU,YU和YM之间的地貌流复杂性的显着差异主要是由木材碎片和木料的差异引起的,而这些差异与库的体积和有机质的储存强烈相关。平面形状和横截面复杂性的显着差异与谷底几何形状相关性更强,但并不能像木材变量那样解释溪流之间复杂性的观测差异。无限制的OU流具有最大的木材负荷和最大的复杂性,而采伐,联络驱动和渠道简化等遗留效应在YM流中产生较低的复杂性,即使相对于流过相似老化森林的YU流也是如此。我们发现,河岸森林的经营历史对减少功能性河道的复杂性具有最强的控制作用,而与河岸森林的林分年龄无关。

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