首页> 外文期刊>Journal of geophysical research. Earth Surface: JGR >Thresholds for bed load transport and channel initiation in a chert area in Ashio Mountains, Japan: An empirical approach from hydrogeomorphic observations
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Thresholds for bed load transport and channel initiation in a chert area in Ashio Mountains, Japan: An empirical approach from hydrogeomorphic observations

机译:日本芦生山a石地区床荷运输和河道起伏的阈值:水文地貌观测的经验方法

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摘要

We examined the effect of bed load transport on channel-head locations where shallow landsliding is infrequent. Area-slope thresholds for bed load transport estimated from hydrogeomorphic observations were compared with certain area-slope relations at 24 channel heads in a chert area, the Ashio Mountains, Japan. The hydrogeomorphic observations include (1) spring discharge at 12 sites, (2) rainfall intensity, and (3) peak discharge and bed load transport immediately below two channel heads of differing gradient. We confirmed an increase of spring discharge in proportion to drainage area during a stormflow. We performed regression analyses involving the peak 4-hour rainfall and the peak discharge per unit area to give the optimal rainfall-runoff equation. The bed load yield increases abruptly when the peak discharge exceeds a critical discharge. We calculated area-slope thresholds for bed load transport for 1-year and 100-year rainfalls, combining the rainfall-runoff equation with the critical discharge. More than half of all channel heads are located where peak discharge produced by frequent rainstorms (return intervals of less than 100 years) is sufficient to transport bed load. In mountains where shallow landsliding is infrequent, bed load transport has a strong influence on channel-head location.
机译:我们研究了床荷载运输对很少发生浅层滑坡的河床头位置的影响。通过水文地貌观测估计的床荷输运的区域-坡度阈值与日本芦町山区cher石地区24个渠首的某些区域-坡度关系进行了比较。水文地貌观测包括(1)12个地点的春季流量,(2)降雨强度,(3)两个流量梯度不同的河床头正下方的峰值流量和床荷输移。我们确认了暴雨期间春季排水量与排水面积成正比。我们进行了涉及4小时峰值降雨量和单位面积峰值流量的回归分析,以得出最佳的降雨径流方程。当峰值排放量超过临界排放量时,床层负荷的收率突然增加。我们结合了降雨径流方程和临界流量,计算了1年和100年降雨的床荷运输的面积-坡度阈值。在所有河床顶部中,超过一半位于经常暴雨(返回间隔小于100年)产生的峰值流量足以运输河床荷载的位置。在很少发生浅层滑坡的山区,河床荷载的运输对河床顶部的位置有很大的影响。

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