68 resultados para rainfall-runoff


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利用黄土高原沟壑区典型小流域坡地天然降雨入渗 -产流的实测资料分别对考虑滞后效应与不考虑滞后效应的情况进行了模拟研究 ,结果表明 :在降雨入渗 -产流过程中 ,滞后效应加快入渗速率 ,减少径流量 ;滞后模型使土壤含水量、产流过程更加接近实测值。由此可见 ,土壤水滞后效应对土壤含水量、入渗速率、产流过程及产流量都有相当大的影响 ,因此在水量转化研究工作中考虑滞后效应的影响是必要的

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土壤侵蚀是造成环境退化的一个主要因素。长期以来因不合理的利用自然资源 ,日积月累的结果使得植被生存的环境受到极大的破坏 ,导致植被衰退 ,引发了严重的水土流失 ;水土流失的不断加剧 ,破坏了土地的生产力 ,土壤肥力降低 ,土壤蓄水能力减弱 ,植被生存的环境进一步恶化 ,如此以往使生态环境陷入恶性循环状态。黄土高原严重的水土流失与该区植被覆被率低有密切的关系。据“七五”统计 ,主要水土流失区现有森林面积约 2 5× 1 0 6hm2 ,其中人工林占 40 %左右 ,有林地森林覆盖率仅为 9 3% ,而且能发挥水土保持功能的森林覆被率仅为 7 0 % ,这些覆被率高的地区 ,地处六盘山、乔山、黄龙山等地 ,该区域人口密度较低 ,人为活动轻微 ,水土流失小 ;在黄土高原水土流失严重的地区 ,森林覆被率更低 ,仅 5 9% ,即使发挥水土保持功能 ,在宏观范围内仍然难以体现出保持水土的效益 (中共陕西省委研究室等 ,1 999;吴钦孝等 ,1 998)。森林植被有强大的水土保持功能 ,体现在下列几个方面 :植被冠层及地被物的截留作用 ,使大气降水的损失量较大 ,减小了产生径流的净雨量 ;地被物层对汇流的延长作用 ...

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径流是区域水土流失的基础。基于已有试验研究和观测数据,结合GIS空间分析功能,初步提出了区域径流计算的基本思路,并对降雨径流产生的各个环节做出了算法设计,考虑的过程包括降水、植被截留、入渗、微地形存储、地表径流等。基于DEM将流域划分为规则网格并以此为基本计算单元,将月降水过程划分为若干时段作为计算迭代的基本单元,本算法可以计算出区域内每一网格单元任一时段末的地表径流量,为进一步建立区域水土流失模型奠定了基础。

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Through leaching experiments and simulated rainfall experiments, characteristics of vertical leaching of exogenous rare earth elements (REEs) and phosphorus (P) and their losses with surface runoff during simulated rainfall in different types of soils (terra nera soil, cinnamon soil, red soil, loess soil, and purple soil) were investigated. Results of the leaching experiments showed that vertical transports of REEs and P were relatively low, with transport depths less than 6 cm. The vertical leaching rates of REEs and P in the different soils followed the order of purple soil > terra nera soil > red soil > cinnamon soil > loess soil. Results of the simulated rainfall experiments (83 mm h(-1)) revealed that more than 92% of REEs and P transported with soil particles in runoff. The loss rates of REEs and P in surface runoff in the different soil types were in the order of loess soil > terra nera soil > cinnamon soil > red soil > purple soil. The total amounts of losses of REEs and P in runoff were significantly correlated.

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As a high-sedimentation rate depocenter along the path of the Kuroshio Current, the southwesternmost part of the Okinawa Trough is a key area to understand the Kuroshio history and sediments transportation. A 34.17-m-long sediment core was obtained by the advanced piston corer of Marco Polo/IMAGES XII MARION DUFRESNE during the May 2005 from the Southern Okinawa Trough at site MD05-2908. The recovered sediments were analyzed by AMS C-14 dating, coarse size fraction (> 63 mu m) extraction and moisture content determination in order to study its sedimentation flux and provenance. The depth-age relationship of core MD05-2908 was well constrained by 17 C-14 dating points. The sediments span across the mid-Holocene (6.8 ka B.P.) and have remarkablely high sedimentation rates between 1.8 and 21-2 m/ka, which is well consistent with the modern observations from sediment traps. We identified five 70-200 a periods of abnormally rapid sedimentation events at 6790-6600 a B.P., 5690-5600 a B.P., 4820-4720 a B.P., 1090-880 a B.P., and 260-190 a B.P., during which the highest sedimentation rate is up to 21-2 m/ka. In general, the lithology of the sediments were dominated by silt and clay, associated with less than 5% coarse size fraction (a parts per thousand << 63 mu m). As the most significant sediment source, the Lanyang River in northeastern Taiwan annually deliver about 10Mt materials to the coastal and offshore region of northeast Taiwan, a portion of which could be carried northward by currents toward the study area. Therefore, we concluded that the 5 abnormally rapid sedimentation events may be related to intensified rainfall in Taiwan and thus increased materials to our study area at that time. However, a few extreme-rapid sedimentation events cannot be explained by normal river runoff alone. The large earthquakes or typhoons induced hyperpycnal discharge of fluvial sediment to the ocean may also act as a potential source supply to the Okinawa Trough.