农林业土地覆盖下火山流域的流量和悬浮流量动态

L. Hadini, J. Sartohadi, M. Setiawan, D. Mardiatno
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引用次数: 1

摘要

火山流域上部土壤条件较厚,悬浮流对土地利用形式较为敏感。农林业是印度尼西亚火山景观的主要土地利用形式。目前对农林业为土地覆盖的上游流域悬浮流的详细研究还比较缺乏。本研究以农林复合地区为研究对象,研究了流量与悬浮流量的对应关系、初始降雨事件与悬浮流形成的时间滞后;并分析了悬浮液在流动过程中的粒度特征。在重点流域某沟槽出口进行了悬浮流测量,共获得436条悬浮流数据。在野外和实验室对每一次降雨进行了测量分析。在野外调查中,详细记录了雨水集水区的作物特征。在野外调查中,观察到河道向沟系收敛的特征。流量峰值与悬浮峰值之间存在三种关系模式,即:(1)流量峰值与悬浮峰值对应,(2)流量峰值先于悬浮峰值,(3)流量峰值发生在悬浮峰值之后。降雨事件与悬浮流发生的平均时间间隔为17.7 min。悬浮峰含量变化范围为0.0016 ~ 4.71 g/L,平均为1.03 g/L。悬浮液的粒径以粘土组分71 ~ 76%(上升阶段平均为73%)和粘土组分68 ~ 71%(下降阶段平均为69%)为主
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Dynamics of Flow Discharge and Suspension Flow Discharge in Volcano Watershed with Agroforestry Land Cover
The suspension flow from the upper part of a volcano watershed, which has a very thick soil condition, is sensitive to landuse form. Agroforestry is the dominant landuse form in the volcanic landscape of Indonesia. There is a lack of detailed studies about suspension flow in the upper watershed where agroforestry is the land cover. This research, performed in agroforestry area, covered the correspondence between flow discharge and suspension flow discharge, the time lag of initial rain events and the formation of suspension flow; and the characteristics of the grain size of the suspensions during the flow. The suspension flow was measured at the outlet of a gully in key watershed areas, which yielded a total of 436 suspension data. The measurement analysis was conducted at every rain event in the field and in the laboratory. The crop characteristics in the rain catchment area were recorded in details during the field survey. The characteristics of the channels converging toward the gully system were observed during the field survey. There were three relationship patterns between the peak flow discharge and the peak suspension discharge, namely (1) the peak flow discharge corresponded to the peak suspension discharge, (2) the peak flow discharge preceded the peak suspension discharge, (3) the peak flow discharge occurred after the peak suspension discharge. The average time interval between the rain events and the occurrence of suspension flow was 17.7 minutes. The peak suspension content varied from 0.0016 g/L up to 4.71 g/L with an average of 1.03 g/L. The grain size of the suspension was dominated by 71-76% of clay fraction with an average of 73% at the rising phase and 68-71% of clay fraction with an average of 69% at the falling stage
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