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输水盾构隧道预应力双层衬砌力学特性的模型试验研究
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Model Test Study on the Mechanical Characteristics of Prestressed Double-layer Lining in Water Conveyance Shield Tunnel
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    摘要:

    由于在承受高内水压方面具有显著的优越性,近年来预应力双层衬砌结构在输水盾构隧道中逐渐得到广泛的应用.为揭示预应力双层衬砌结构的力学特性,以珠三角水资源配置工程输水盾构隧道为原型,创新采用相似模型试验方法并结合声发射探测技术,对预应力双层衬砌结构在施工和运行全过程的内力、接触压力、位移以及损伤破坏等进行分析.试验结果表明:在拼装阶段,管片衬砌结构能够单独承担外水土压力,在预应力张拉阶段,管片衬砌和预应力衬砌均全环受压,而随着内水压的逐级施加,结构的轴压力逐渐减小,但在1.5 MPa内水压下,结构仍保持大部分区域受压;在预应力张拉阶段,管片衬砌和预应力衬砌脱开,不考虑其相互作用,在运行阶段,脱开区域闭合,两结构协调承载;随着预应力的逐级张拉,双层衬砌结构的位移线性增加,在张拉完成时,位移值和截面椭圆率分别达到1.37 mm和0.012‰,施加1.5 MPa内水压后,位移值减小至1.30 mm,截面椭圆率增加到0.20‰;在整个加载过程中,双层衬砌结构的渐进性损伤经历了初始弹性阶段和细观损伤阶段,结构内部从缺陷压密到逐渐出现损伤,但并未出现宏观裂纹,故结构处于安全状态.

    Abstract:

    Due to its significant superiority in withstanding high internal water pressure, prestressed double-layer lining structures have been gradually widely used in water conveyance shield tunnels in recent years. To unveil the mechanical properties of the prestressed double-layer lining structure, this study innovatively employs a similar model test method combined with acoustic emission detection technology, taking the water conveyance shield tunnel of the Zhujiang Delta Water Resources Allocation Engineering as a prototype. The internal forces, contact pressures, displacements, and damage and failure of the prestressed double-layer lining structure throughout the construction and operation process are analysed. The experimental results indicate that: during the assembly stage, the segmental lining structure can independently bear the external hydrostatic and earth pressures. During the prestressing tensioning stage, both the segmental and prestressed linings are compressed around the entire circumference. As the internal water pressure is progressively applied, the axial force of the structure gradually decreases. However, under 1.5 MPa of internal water pressure, the structure still maintains most of its area under pressure. During the prestressing tensioning stage, the segmental lining and prestressed lining separate, suggesting their interaction can be essentially disregarded. During the operation stage, the areas of separation close, thus the two structures bear the load in coordination. With the progressive tensioning of the prestress, the displacement of the double-layer lining structure increases linearly, reaching its maximum value of 1.37 mm upon completion of tensioning. At this point, the section’s ellipticity is 0.012‰. The application of 1.5 MPa of internal water pressure reduces the displacement to 1.30 mm and increases the section's ellipticity to 0.20‰. During the entire loading process, the progressive damage of the double-layer lining structure undergoes an initial elastic stage and a micro-damage stage. Inside the structure, defects compact and gradually lead to damage, but no macro-cracks appear, indicating that the structure remains in a safe state.

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王亚 ,王士民 ?,马晓斌 ,刘畅 ,廖少明 .输水盾构隧道预应力双层衬砌力学特性的模型试验研究[J].湖南大学学报:自然科学版,2025,52(7):188~198

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  • 在线发布日期: 2025-07-31
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