首页  |  本刊简介  |  编委会  |  投稿须知  |  订阅与联系  |  微信  |  出版道德声明  |  Ei收录本刊数据  |  封面
半干旱黄土丘陵区土壤结皮的地表水文效应
摘要点击 1297  全文点击 825  投稿时间:2012-03-28  修订日期:2012-05-06
查看HTML全文 查看全文  查看/发表评论  下载PDF阅读器
中文关键词  黄土高原  土壤结皮  水文效应  降雨模拟  入渗特征
英文关键词  the Loess Plateau  soil crust  hydrological effects  rainfall simulation  infiltration
作者单位E-mail
卫伟 中国科学院生态环境研究中心城市与区域生态国家重点实验室,北京 100085 weiwei@rcees.ac.cn 
温智 宁夏大学西部生态研究中心,银川 750021  
陈利顶 中国科学院生态环境研究中心城市与区域生态国家重点实验室,北京 100085  
陈瑾 定西市水土保持科学研究所,定西 743000  
吴东平 定西市水土保持科学研究所,定西 743000  
中文摘要
      黄土高原广泛分布的土壤结皮对地表水文过程有重要影响. 以定西黄土丘陵区安家沟小流域内的土壤结皮为研究对象,基于野外采样和水文模拟实验等技术,探讨不同土壤结皮类型对地表水文过程的影响. 结果表明: 1与裸地相比,有结皮覆盖的地表土壤容重较小,土壤持水能力显著增强,其增加幅度为裸地的1.4~1.9倍; 2土壤结皮可有效拦截降雨,以苔藓结皮的拦截能力最强,其次为混生结皮和地衣结皮,无结皮覆盖的裸地抵御降雨冲击的能力最差; 3模拟实验显示,土壤结皮能在一定程度上增加水分入渗速率及总入渗量. 有结皮覆盖的平均地表入渗速率是裸地的近2倍,而其累计入渗总量也远远高于裸地.
英文摘要
      Soil crusts are distributed extensively in the Chinese Loess Plateau and play key roles in surface hydrological processes. In this study, a typical loess hilly region in Anjiagou catchment, Dingxi city, Gansu province was selected as the study region, and soil crusts in the catchment were investigated. Then, the hydrological effect of soil crusts was studied by using multi-sampling and hydrological monitoring experiments. Several key results were shown as follows. Firstly, compared with bared soil without crust cover, soil crusts can greatly reduce the bulk density, improve the porosity of soil, and raise the holding capacity of soil moisture which ranges from 1.4 to 1.9 times of that of bared soil. Secondly, the role of soil crust on rainfall interception was very significant. Moss crust was found to be strongest on rainfall interception, followed by synantectic crusts and lichen crusts. Bared soil without covering crusts was poorest in resisting rainfall splash. Thirdly, hydrological simulation experiments indicate that soil crusts play a certain positive role in promoting the water infiltration capacity, and the mean infiltration rate of the crusted soil was 2 times higher than that of the no-crust covered soils. While the accumulated infiltrated water amounts was also far higher than that of the bared soil.

您是第53407131位访客
主办单位:中国科学院生态环境研究中心 单位地址:北京市海淀区双清路18号
电话:010-62941102 邮编:100085 E-mail: hjkx@rcees.ac.cn
本系统由北京勤云科技发展有限公司设计  京ICP备05002858号-2