首页> 外文期刊>Water resources research >Debris flow deposition and reworking by the Colorado River in Grand Canyon, Arizona
【24h】

Debris flow deposition and reworking by the Colorado River in Grand Canyon, Arizona

机译:亚利桑那州大峡谷的科罗拉多河的泥石流沉积和返工

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Flow regulation by large dams affects downstream flow competence and channel maintenance. Debris flows from 740 tributaries in Grand Canyon, Arizona, transport coarse-grained sediment onto debris fans adjacent to the Colorado River. These debris fans constrict the river to form rapids and are reworked during river flows that entrain particles and transport them downstream. Beginning in 1963, flood control operations of Glen Canyon Dam limited the potential for reworking of aggraded debris fans. We analyzed change in debris fans at the mouths of 75-Mile and Monument Creeks using photogrammetry of aerial photography taken from 1965 to 2000 and supplemented with ground surveys performed from 1987 to 2005. Our results quantify the debris fan aggradation that resulted from debris flows from 1984 to 2003. Volume, area, and river constriction increased at both debris fans. Profiles of the two debris fans show that net aggradation occurred in the middle of debris fans at stages above maximum dam releases, and surface shape shifted from concave to convex. Dam releases above power plant capacity partially reworked both debris fans, although reworking removed much less sediment than what was added by debris flow deposition. Large dam releases would be required to create additional reworking to limit the rate of debris fan aggradation in Grand Canyon.
机译:大型水坝的流量调节会影响下游的流量能力和渠道维护。残骸从亚利桑那州大峡谷的740个支流中流出,将粗粒沉积物输送到科罗拉多河附近的残骸扇上。这些杂物扇将河流束缚成急流,并在河水流动过程中被重新处理,从而夹带颗粒并将其输送到下游。从1963年开始,格伦峡谷大坝的防洪行动限制了对残骸爱好者进行改造的可能性。我们使用1965年至2000年进行的航拍摄影测量,分析了75英里和纪念碑河口的碎屑风扇变化,并补充了1987年至2005年进行的地面勘测。我们的结果量化了由泥石流造成的碎屑风扇聚集1984年至2003年。两个碎屑扇的体积,面积和河流收缩都增加了。这两个碎屑扇的剖面图表明,在最大泄洪量以上的阶段,碎屑扇的中间发生了净凝结,并且表面形状从凹形变为凸形。大坝排放超过发电厂的能力部分地重修了两个杂物扇,尽管重修所去除的沉积物比泥石流沉积所增加的少得多。将需要大坝泄洪,以进行额外的返工,以限制大峡谷中的碎屑风扇积聚速率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号