首页> 外文期刊>Geomorphology >Regional bankfull geometry relationships for southern California mountain streams and hydrologic applications
【24h】

Regional bankfull geometry relationships for southern California mountain streams and hydrologic applications

机译:加利福尼亚南部山区河流和水文应用的区域银行几何关系

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

This study develops and intercompares regional relationships for bankfull channel width, hydraulic depth, and cross-sectional area for southern California mountain streams based on several data sources: surveyed streams, US Geological Survey stream survey reports, and existing literature. Although considerable uncertainty exists in estimating bankfull conditions, the relationships developed from the varying data sources show significant agreement For small watersheds with drainage area ranging from 15 to -2000 km~2, the estimates of bankfull top width ranged from 7.2 to 44.5 m and hydraulic depth estimates ranged from 0.35 to 1.15 m. The utility of the developed bankfull geometry regional curves is demonstrated for southern California catchments through (a) the computation of the bankfull discharge and (b) the estimation of the surface runoff response necessary to produce bankfull conditions in the streams at the outlet of these catchments. For selected locations with instantaneous flow records, the occurrence frequency of events exceeding bankfull flow was examined for the available 10-15 year span of observational records. Bankfull discharge estimates for all small watersheds in the region ranged from 1.3 to 74 m~3/s, while the range at the selected gauged stream locations was from 2.6 to 16.4 m~3/s. Stream locations along the Transverse Mountains of southern California showed an average occurrence frequency of less than 1 year, whereas along the Peninsular Mountains the average return period tended to be greater than 1 year. The application of the regional curves to the estimation of the surface runoff response necessary to produce bankfull conditions at the channel outlets of small catchments may be used as an index for conditions of minor flooding with saturated soils. This surface runoff response index ranges from 2.0 to 5.5 mm for a 3-hour rainfall duration for southern California watersheds greater than 15 km~2 in area. Differences between the values for the Peninsular and Transverse Mountain Ranges are linked to geological, climatic, and geomorphologic differences. The developed regional geometry relationships are suitable for use in various hydrologic modeling applications, including distributed modeling with high resolution pertinent to flash flood forecasting.
机译:这项研究基于以下数据源,开发并比较了南加州南部山区河流的河岸河道宽度,水力深度和横截面积的区域关系:调查的河流,美国地质调查局的河流调查报告和现有文献。尽管估算河床满溢状况存在很大的不确定性,但根据不同数据源建立的关系显示出显着的一致性。对于流域面积为15至-2000 km〜2的小流域,河床满溢宽度的估算范围为7.2至44.5 m,水力深度估计范围为0.35至1.15 m。通过(a)计算满溢流量和(b)估计在这些集水口出口处的河流中产生满溢条件所必需的地表径流响应的估算,证明了发达的满溢几何区域曲线对南部加利福尼亚流域的实用性。 。对于具有瞬时流量记录的选定位置,对于可用的10-15年的观测记录跨度,检查了超过银行满流量的事件发生频率。该区域所有小流域的河岸满溢流量估计值在1.3至74 m〜3 / s之间,而选定的测量河流位置的范围在2.6至16.4 m〜3 / s之间。加利福尼亚南部横断山脉的溪流位置显示平均发生频率不到1年,而半岛山脉沿岸的平均返回期往往大于1年。将区域曲线应用于在小流域的河道出口处产生堤岸条件所必需的地表径流响应的估计中,可以用作饱和土壤轻微洪水条件的指标。对于面积大于15 km〜2的南加州流域,在3小时的降雨持续时间内,地表径流响应指数范围为2.0至5.5 mm。半岛山脉和横向山脉的值之间的差异与地质,气候和地貌差异有关。所开发的区域几何关系适用于各种水文建模应用程序,包括具有与洪水洪水预报有关的高分辨率的分布式建模。

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