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水生植物根系对膨润土防水毯渗透性能影响
引用本文:万娟,汪豪,谢晓靓,肖衡林,何俊,赵宏博. 水生植物根系对膨润土防水毯渗透性能影响[J]. 科学技术与工程, 2022, 22(10): 4077-4082
作者姓名:万娟  汪豪  谢晓靓  肖衡林  何俊  赵宏博
作者单位:湖北工业大学土木建筑与环境学院,武汉430068;长江勘测规划设计研究有限责任公司,武汉430010
基金项目:国家科技重大专项(2016YFC05022208);国家自然科学基金资助项目(51608182);湖北省中央引导地方科技发展专项(2019ZYYD053)
摘    要:膨润土防水毯(geosynthetic clay liner,GCL)是常用于湖底防渗的新型材料,但湖泊水生植物根系的生长可能对GCL的防渗效果产生影响.为探究植物根系穿透下GCL的渗透性能,选取再力花、芦苇、香蒲等植物开展模型试验,并采用全自动渗透仪(global digital systems,GDS)对水生植物根...

关 键 词:膨润土防水毯  根系穿透率  根系状态  渗透系数
收稿时间:2021-06-18
修稿时间:2022-03-22

The influence of aquatic plant roots on hydraulic conductivity of Geosynthetic Clay Liner
Wan Juan,Wang Hao,Xie Xiaoliang,Xiao HengLin,He Jun,Zhao HongBo. The influence of aquatic plant roots on hydraulic conductivity of Geosynthetic Clay Liner[J]. Science Technology and Engineering, 2022, 22(10): 4077-4082
Authors:Wan Juan  Wang Hao  Xie Xiaoliang  Xiao HengLin  He Jun  Zhao HongBo
Affiliation:School of Civil Engineering,Architectural and Environment,Hubei University of Technology;Changjiang institute of survey,planning,design and research
Abstract:Geosynthetic Clay Liner (GCL) is a new type of material commonly used for lake bottom seepage prevention, but if the roots of lake aquatic plants penetrate into GCL, it affects its seepage prevention effect. In order to explore the influence of GCL''s hydraulic conductivity under the penetration of plant roots, model tests were carried out on plants such as Thalia dealbata, reed, and cattail, GDS (global digital systems) geoenvironmental permeameter was used to test the hydraulic conductivity of GCL after the penetration of aquatic plant roots. The results show that: (1) Under the same confining pressure, with the increases of the penetration rate of plant roots, the GCL hydraulic conductivity under the penetration of Thalia dealbata, reed and cattail roots gradually increase, and the maximum increases to 10-7 m/s. (2) When the root penetration rate is greater than 1%, the GCL hydraulic conductivity of withered roots is about 1.26~3.13 times that of the normal roots morphology. The withered roots have a more significant impact on GCL permeability than the normal root morphology. (3) The roots of cattails and reeds have similar effects on the hydraulic conductivity of GCL, while the roots of Thalia dealbata have little effect on the hydraulic conductivity of GCL.
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