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Channel geometry of mountain streams in New Zealand

机译:新西兰山区河流的航道几何

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摘要

A dataset of 21 study reaches in the Porter and Kowai rivers (eastern side of the South Island), and 13 study reaches in Camp Creek and adjacent catchments (western side of the South Island) was used to examine downstream hydraulic geometry of mountain streams in New Zealand. Streams in the eastern and western regions both exhibit well-developed downstream hydraulic geometry, as indicated by strong correlations between channel top width, bankfull depth, mean velocity, and bankfull discharge. Exponents for the hydraulic geometry relations are similar to average values for rivers worldwide. Factors such as colluvial sediment input to the channels, colluvial processes along the channels, tectonic uplift, and discontinuous bedrock exposure along the channels might be expected to complicate adjustment of channel geometry to downstream increases in discharge. The presence of well-developed downstream hydraulic geometry relations despite these complicating factors is interpreted to indicate that the ratio of hydraulic driving forces to substrate resisting forces is sufficiently large to permit channel adjustment to relatively frequent discharges. (C) 2004 Elsevier B.V. All rights reserved.
机译:在Porter河和Kowai河(南岛的东侧)的21个研究河段的数据集中,在Camp Creek和相邻集水区(南岛的西侧)的13个研究河段的数据集用于检查山河下游的水力几何形状。新西兰。东部和西部地区的水流均表现出发达的下游水力几何学,如河道顶部宽度,堤岸深度,平均速度和堤岸流量之间的强相关性所表明。水力几何关系的指数与全世界河流的平均值相似。诸如河流沉积物输入河道,沿河道的冲积过程,构造抬升以及沿河道的不连续基岩暴露等因素可能会使河道几何形状向下游流量增加的调整变得复杂。尽管存在这些复杂因素,但仍存在发达的下游水力几何关系,这表明水力驱动力与基体抵抗力之比足够大,以允许对相对频繁的排放进行通道调整。 (C)2004 Elsevier B.V.保留所有权利。

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