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Causes of Lining Instability of Large Water Diversion Channel and the Effects of Prevention and Control Measures
SU Xia, WEI Kai, HAO Ze-jia, LI Shao-long, CUI Hao-dong
Journal of Changjiang River Scientific Research Institute ›› 2025, Vol. 42 ›› Issue (2) : 188-193.
PDF(5207 KB)
PDF(5207 KB)
Causes of Lining Instability of Large Water Diversion Channel and the Effects of Prevention and Control Measures
Lining instability is common in excavation sections of large water diversion channels with high groundwater levels during the operation period. Effective seepage control measures are crucial for ensuring channel lining safety. This study addresses the lining instability issue in a canal section of the middle route of the South-to-North Water Diversion Project following the ‘7·20’ heavy rainstorm in Henan in 2021. Based on monitoring data and three-dimensional seepage simulation, the causes of the canal lining plate instability were analyzed, and the effects of additional vertical relief wells and transverse drainage pipes on the canal slope were evaluated using a three-dimensional model. Results show that the permeable strata in the channel foundation provide a seepage pathway for rainfall infiltration and lateral groundwater recharge. The rise in groundwater level due to extreme rainfall is the primary cause of canal lining plate instability. Drainage measures could effectively reduce the uplift pressure beneath the lining plate. These findings offer insights for the risk analysis, regulation, and operational management of similar canal sections.
water diversion channels / high groundwater level / uplift pressure / lining instability / seepage analysis
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Because expansive soil is very sensitive to water,the stability of expansive soil slope and its lining structure is one of the important challenges for the construction and operation of the first-stage project of middle route South-to-North Water Diversion in China. On the basis of geological structure classification, the permeability structure and seepage field system in expansive soil area and also the seepage field system in expansive soil slope of canal were classified respectively. For different kinds of seepage field system in expansive soil slope of canal, the seepage field transformations caused by canal construction were analyzed. The main tasks for seepage field control were discussed, and the principle was pointed out for the application of seepage field control scheme: laying drainage liner for long-term control of water content in unsaturated slope, deliberate design of berms with their negative effects on seepage control considered, reasonable utilization of drainage holes and relief wells to control seepage field and ground water pressure, reasonable arrangement of sensitive and reliable check valves for the canal stretches with the variation range of ground water level overlapping that of canal water level, tracking research on the efficiency of seepage field control and timely regulating it effectively.
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Seepage field regulation is crucial for the stability of canal slope and liner plate along the middle route of the South-to-North Water Transfer Project, especially for stretches excavated in expensive soil area with high groundwater level. In this article, the seepage field of a typical section was simulated with 3-D finite element technology to investigate into the rationality and effectiveness of seepage regulation measures comprehensively. The distribution of seepage field was analyzed and the seepage control measures were compared. Results show that the uplift pressure on canal pavement would be reduced significantly by drainage cushion with drainage holes opening only when groundwater level is higher than the canal water level, by drainage cushion replaced by drainage board, and by drainage holes replaced with permeable joints of liner plate in addition. The differences in the three measures were compared, and their application conditions were discussed and corresponding suggestions were given.
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Having produced tremendous social benefits since its operation, the middle route project of the South-to-North Water Transfer has attracted increasing demands from areas along the route and in the Beijing-Tianjin-Hebei region. Maintenance of the channel with water cutoff would bring about risks; hence repairing the channel lining board and in the meantime maintaining water delivery poses a difficulty for engineers. Complicated seepage control measures were arranged under the lining board in some excavated channels with high-level groundwater. In emergency maintenance of the lining board at bottom or at deep by constructing cofferdam in the presence of water conveyance, engineers are faced with anti-floating problems and seepage failure possibly caused by the water level difference inside and outside the cofferdam foundation pit. In view of this, in line with the design of seepage control and cofferdam layout, we propose a seepage control plan for the cofferdam foundation pit: to block the permeable pipe of the canal foundation outside the cofferdam foundation pit, and to install water pump around the pit for drainage. Simulation results of the three-dimensional seepage field demonstrate that the horizontal permeability gradient and the water inflow of the foundation pit can be reduced remarkably by using the plan, hence ensuring the safety of foundation pit. The research finding offers theoretical basis and technical support for the emergency maintenance in the presence of water delivery.
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