Debris flows as agents of morphological heterogeneity at low-order confluences, Olympic Mountains, Washington

被引:80
作者
Benda, L
Veldhuisen, C
Black, J
机构
[1] Earth Syst Inst, Mt Shasta, CA 96067 USA
[2] Skagit Syst Cooperat, Sedro Woolley, WA 98284 USA
[3] Hart Crowser Inc, Fortuna, CA 95540 USA
关键词
slope stability; fluvial geomorphology; debris flows; natural hazards;
D O I
10.1130/B25265.1
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Effects of tributary junctions on longitudinal patterns of riverine heterogeneity are relevant to both fluvial geomorphology and riverine ecology. We surveyed 10 km of small- to moderate-sized mountain channels in the Olympic Peninsula, Washington, to investigate how low-order confluences prone to debris flow deposition directly and indirectly influenced channel and valley morphology. In the Olympic Mountains, debris flows scour sediment and organic material from steep first- and second-order channels and create deposits (debris fans) at tributary junctions in higher-order streams. In lower-energy depositional environments there were statistically significant relationships among debris fans at low-order confluences and gravel substrate, wide channels, and numbers of logs and large pools. Effects of debris fans on channel morphology extended upstream and downstream of fan perimeters, indicating the importance of indirect (offsite) effects of debris flows. Consequently, certain aspects of channel morphology (e.g., pool density, substrate texture, and channel widths) were nonuniformly distributed, reflecting the role of network topology and disturbance history on the spatial scale of morphological heterogeneity. Moreover, heterogeneity of channel morphology increased in proximity to low-order confluences prone to debris flows. In contrast, confluence effects in higher-energy depositional environments were limited. Our field data and information from seven other studies indicate how variation in debris flow volume and composition, stream energy, and valley width at the point of deposition influence the relationship between low-order confluences and channel morphology.
引用
收藏
页码:1110 / 1121
页数:12
相关论文
共 83 条
[51]  
2, DOI 10.1577/1548-8675(1989)009<0427:IAD0WD>2.3.C0
[52]  
2]
[53]  
Nakamura F, 2000, HYDROL PROCESS, V14, P2849, DOI [10.1002/1099-1085(200011/12)14:16/17<2849::AID-HYP123>3.0.CO
[54]  
2-X, 10.1002/1099-1085(200011/12)14:16/17&lt
[55]  
2849::AID-HYP123&gt
[56]  
3.0.CO
[57]  
2-X]
[58]   A characterization of unmanaged riparian areas in the central Coast Range of western Oregon [J].
Nierenberg, TR ;
Hibbs, DE .
FOREST ECOLOGY AND MANAGEMENT, 2000, 129 (1-3) :195-206
[59]  
PLATTS WS, 1983, INT138 US DEP AGR FO
[60]   The natural flow regime [J].
Poff, NL ;
Allan, JD ;
Bain, MB ;
Karr, JR ;
Prestegaard, KL ;
Richter, BD ;
Sparks, RE ;
Stromberg, JC .
BIOSCIENCE, 1997, 47 (11) :769-784