Discussion on Ecological Wall Construction Along the Canal in Zhenjiang Couty of Jiangsu Province
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Discussion on Ecological Wall Construction Along the Canal in Zhenjiang Couty of Jiangsu Province
Bulletin of Soiland Water ConservationVol. 25, Issue 5, Pages: 31-35(2006)
作者机构:
三峡大学 水电科学研究院,湖北,宜昌,443002
作者简介:
基金信息:
DOI:
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Published:2006
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ZHOU Ming-tao, XU Wen-nian, Liu Gao-peng. Discussion on Ecological Wall Construction Along the Canal in Zhenjiang Couty of Jiangsu Province[J]. Bulletin of Soiland Water Conservation, 2006, 25(5): 31-35.
DOI:
ZHOU Ming-tao, XU Wen-nian, Liu Gao-peng. Discussion on Ecological Wall Construction Along the Canal in Zhenjiang Couty of Jiangsu Province[J]. Bulletin of Soiland Water Conservation, 2006, 25(5): 31-35.DOI:
Discussion on Ecological Wall Construction Along the Canal in Zhenjiang Couty of Jiangsu Province
According to the analysis on the conditions of terrain geology and hydrology about the ancient canal in Zhenjiang City
this paper separately discusses the cultivation principles about ecological wall on the river embankment
the overall plans and the design about the ecological concrete brick.Simultaneously combining the characteristics of climate
the plant selection has been optimized.Then the detailed cultivation craft of the ecological wall has been put forward.The demonstration project preliminarily verified that the ecological wall has integrated the three functions of slope protection
virescence and the sewage interception
and ecological benefit and non-point source pollution reduction are obvious.
Characteristics of Wind Erosion on Different Side Slopes in Highway Construction from Tongxin to Guyuan
Structure and shear strength of amorphous iron oxide-kaolinite cementation system in red soil
Spatiotemporal evolution of productive-living-ecological space at county level of Qinling-Daba Mountains area under background of urban-rural integration
Impact of resource-exhausted city transformation on net ecosystem productivity——A case study of Xuzhou City, Jiangsu Province
Soil-water characteristics and softening constitutive model of lime-stabilized loess
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Related Institution
College of Soil and Water Conservation, Beijing Forestry University