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Analysis of equivalent widths of alluvial channels and application for instream habitat in the Rio Grande.

机译:冲积河道等效宽度分析及其在里奥格兰德河上游生境中的应用。

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摘要

Rivers are natural systems that adjust to variable water and sediment discharges. Channels with spatial variability in width that are managed to maintain constant widths over a period of time are able to transport the same water and sediment discharges by adjusting the bed slope. Methods developed to define equilibrium hydraulic geometry characteristics of alluvial channels are limited to steady state input variables.; This dissertation examines how the channel slopes adjust in sequential reaches with different widths to achieve continuity of steady and unsteady water and sediment discharges. The objectives are: (1) to develop analytical relationships between equilibrium slope and width or width-depth ratio under steady water and sediment discharges; (2) to develop a transient numerical model for constant input variables to simulate the changes in channel slope with time; (3) to develop a transient numerical model for unsteady water and sediment discharges to simulate the transient solution of channel slope; and (4) to apply the model to the middle Rio Grande and integrate the results in the evaluation of potential fish habitat restoration activities.; Results of the analytical solutions indicate that wide channels require steeper slopes than narrow channels to transport the same water and sediment discharges. These results are in good agreement with laboratory flume data previously published and field measurements from the middle Rio Grande. Transient simulations under constant discharge show similar results. In addition, the transient model provides an estimate of the time to reach equilibrium under constant water discharge.; Transient simulations with variable discharge indicate that the slope changes rapidly during floods. Long-term simulations of slope changes under variable water and sediment discharges compare better with the simulation under a constant flow equal to the mean annual discharge.; Numerical simulations of the Bosque del Apache reach from 1992 to 1999 are in very good agreement with field measurements. Despite the increase in slope in wide reaches, shallow depths and low velocities occur more frequently in wide and steeper reaches than in narrow reaches. It is likely that low velocities and shallow depths are more favorable for the habitat of the Rio Grande silvery minnow.
机译:河流是适应各种水和沉积物排放量的自然系统。通过调整河床的坡度,可以在一段时间内保持恒定宽度的宽度具有空间可变性的河道能够输送相同的水和沉积物。定义冲积河道平衡水力几何特征的方法仅限于稳态输入变量。本文研究了如何在不同宽度的连续河段中调整河道坡度,以实现稳定和不稳定的水和泥沙排放的连续性。目标是:(1)在稳定的水和沉积物排放下建立平衡斜率与宽度或宽度-深度比之间的分析关系; (2)建立恒定输入变量的瞬态数值模型,以模拟通道斜率随时间的变化; (3)建立非稳态水沙流的瞬态数值模型,以模拟河道边坡的瞬态解; (4)将模型应用于里奥格兰德州中部,并将结果整合到潜在鱼类栖息地恢复活动的评估中;分析解决方案的结果表明,与相同的水和泥沙排放量相比,较宽的河道需要比狭窄的河道更陡的坡度。这些结果与先前发布的实验室水槽数据和中里奥格兰德州的现场测量结果非常吻合。恒定放电下的瞬态仿真显示了相似的结果。另外,瞬态模型提供了恒定排水量下达到平衡所需时间的估计。可变流量的瞬态模拟表明,洪水期间坡度变化迅速。在可变的水和泥沙排放下,长期的边坡变化模拟与在等于年平均排放量的恒定流量下的模拟效果更好。 1992年至1999年间,阿斯帕博斯克山脉(Bosque del Apache)的数值模拟与现场测量非常吻合。尽管大范围的坡度增加了,但较陡峭的河段,较窄的河段,较浅的深度和较低的速度发生的频率更高。较低的速度和较浅的深度可能更有利于里奥格兰德银色小鱼的栖息地。

著录项

  • 作者

    Leon, Claudia Altamira.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Engineering Civil.; Geology.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 283 p.
  • 总页数 283
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;地质学;
  • 关键词

  • 入库时间 2022-08-17 11:45:29

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