Impacts of Different Landuse Patterns on Rainfall Utilization and Water Budget of Sloping Land in Red Soil Region
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Impacts of Different Landuse Patterns on Rainfall Utilization and Water Budget of Sloping Land in Red Soil Region
Bulletin of Soiland Water ConservationVol. 28, Issue 3, Pages: 97-102(2009)
作者机构:
1. 中国科学院亚热带农业生态研究所,湖南,长沙,410125
2. 中国科学院研究生院,北京,100049
3. CERN桃源农田生态系统国家科学观测研究站 湖南 桃源,415700
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Published:2009
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SONG Ying-pa, XIE Xiao-li. Impacts of Different Landuse Patterns on Rainfall Utilization and Water Budget of Sloping Land in Red Soil Region[J]. Bulletin of Soiland Water Conservation, 2009, 28(3): 97-102.
DOI:
SONG Ying-pa, XIE Xiao-li. Impacts of Different Landuse Patterns on Rainfall Utilization and Water Budget of Sloping Land in Red Soil Region[J]. Bulletin of Soiland Water Conservation, 2009, 28(3): 97-102.DOI:
Impacts of Different Landuse Patterns on Rainfall Utilization and Water Budget of Sloping Land in Red Soil Region
Based on fixed field observation for five typical landuse modes
this paper analyzed the effects of different landuses on its rainfall utilization and water balance.The main results were reported as follows.(1)The difference laws of steady soil water consumption in grassland and a higher ability in sufficient use of water stored in deep soil layer in tea garden and the restoration area showed that the characteristics of soil water utilization in different landuse patterns were different with different seasons and soil layers.(2)Evapotranspiration hold more than 83%of input(rainfall)
which was the most important output part of water balance in 100 cm plough layer.Evapotranspiration on cropland was the lowest and runoff on it was the highest
but those in the restoration area were reverse.(3)An optimal model of rainfall utilization on sloping land in red soil region must be constructed for reducing surface runoff and improving the utilization rate of rainfall
so the compound management of cropping forestryher bage and the tillage methods of broad base terracing would be the best choice.