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耦合过程和景观格局的土壤侵蚀水环境影响评价

刘宇,吴炳方**,曾源,张磊   

  1. (中国科学院数字地球重点实验室/中国科学院遥感与数字地球研究所, 北京 100101)
  • 出版日期:2013-09-18 发布日期:2013-09-18

Assessment of the impacts of soil erosion on water environment based on the integration of soil erosion process and landscape pattern.

LIU Yu, WU Bing-fang, ZENG Yuan, ZHANG Lei   

  1. (Key Laboratory of Digital Earth Science/Institute of Remote Sensing and Digital Earth, Chinese Academy of Sciences, Beijing 100101, China)
  • Online:2013-09-18 Published:2013-09-18

摘要:

将景观格局的作用纳入到土壤侵蚀的生态环境影响评估中,具有方法上的实用意义,可为水体泥沙源区识别、评价立地侵蚀对目标水体的泥沙输出风险和流域景观格局对土壤流失抑制潜力提供一种途径.本文将RUSLE模型作为模拟立地土壤侵蚀强度的工具,考虑植被覆盖和地形对泥沙输送的阻滞作用,从点(栅格)和子流域两个尺度,采用景观格局表征方法定量评估南水北调中线水源区土壤侵蚀对河流、水库的影响.在点(栅格)尺度提出土壤侵蚀影响强度(I)指标表征土壤侵蚀对水体的泥沙输出风险;在流域尺度利用反映流域景观格局留滞泥沙能力的渗透指数(LI)指示泥沙进入水体的风险.结果表明: 耦合景观格局信息和侵蚀过程的指标能空间分布式地有效反映立地土壤侵蚀对水体泥沙输入的影响强度;LI与流域平均景观阻滞、平均植被覆盖度呈显著的指数关系, 子流域输沙模数与LI呈显著的指数回归关系.说明基于土壤侵蚀过程表征景观格局、将景观格局信息与景观土壤保持功能结合起来的评价方法,可为土壤侵蚀风险评价提供新途径.
 

Abstract: The integration of the effects of landscape pattern to the assessment of the impacts of soil erosion on eco-environmental is of practical significance in methodological prospect, being able to provide an approach for identifying water body’s sediment source area, assessing the potential risks of sediment export of on-site soil erosion to the target water body, and evaluating the capacity of regional landscape pattern in preventing soil loss. In this paper, the RUSLE model was applied to simulate the on-site soil erosion rate. With the consideration of the soil retention potential of vegetation cover and topography, a quantitative assessment was conducted on the impacts of soil erosion in the water source region of the middle route for SouthtoNorth Water Transfer Project on rivers and reservoirs by delineating landscape pattern at point (or cell) scale and sub-watershed level. At point (or  grid cell) scale, the index of soil erosion impact intensity (I) was developed as an indicator of the potential risk of sediment export to the water bodies. At subwatershed level, the landscape leakiness index (LI) was employed to indicate the sediment retention capacity of a given landscape pattern. The results revealed that integrating the information of landscape pattern and the indices of soil erosion process could spatially effectively reflect the impact intensity of in situ soil erosion on water bodies. The LI was significantly exponentially correlated to the mean sediment retention capacity of landscape and the mean vegetation coverage of watershed, and the sediment yield at sub-watershed scale was significantly correlated to the LI in an exponential regression. It could be concluded that the approach of delineating landscape pattern based on soil erosion process and the integration of the information of landscape pattern with its soil retention potential could provide a new approach for the risk evaluation of soil erosion.