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缓冲层-桩板墙组合支护膨胀土边坡现场试验研究
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Study on Field Test of Expansive Soil Slopes Supported by Buffer Layer-pile-slab Wall Combination Structures
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    摘要:

    为研究缓冲层对桩板墙结构支护膨胀土边坡的力学与变形特性的影响,以湖北当阳某铁路膨胀土边坡的桩板墙-缓冲层[包括聚苯乙烯泡沫(EPS)缓冲层和袋装砂石缓冲层2种]组合支护结构为对象,通过实施现场试验,分析气候环境作用下该组合支护结构中的土体湿度、桩身位移、板后土压力及桩与板弯矩的变化规律,揭示不同缓冲层情况下膨胀土边坡-缓冲层-桩板墙组合支护结构的相互作用及其协同的力学与变形关系.结果表明:相比于袋装砂石缓冲层,EPS缓冲层能够更有效地降低侧向膨胀压力,在本试验中测得最大消减率为69%. 同时,EPS缓冲层能够及时响应气候环境引起的膨胀土胀缩变化,继而动态改善板后侧向总土压力的分布,而袋装砂石缓冲层对气候环境的响应能力明显相对较弱.膨胀土边坡-EPS缓冲层-桩板墙结构三者之间能够形成稳定的协调相互作用,进而降低膨胀土膨胀特性对桩间板弯矩的影响.

    Abstract:

    To study the effects of buffer layers on the mechanical and deformation characteristics of the pile-slab wall structure supporting expansive soil slopes, the combined pile-slab wall-buffer layer [including polystyrene foam (EPS) buffer layer and bagged gravel buffer layer] supporting structure of a railway expansive soil slope in Dangyang, Hubei Province was taken as the object. Through a field test, the change laws of soil moisture, pile displacement, earth pressure behind the inter-pile slab, and pile and inter-pile slab bending moment of the combined supporting structure under the climate environment were analyzed. The interaction mechanism of the expansive soil slope-buffer layer-pile-slab wall combined supporting structure and its synergistic mechanical and deformation relationship were revealed under different buffer layers. The research results show that compared with the bagged gravel buffer layer, the EPS buffer layer can effectively reduce the lateral swelling pressure, with a maximum reduction rate of 69% obtained by this test. Meanwhile, the EPS buffer layer can rapidly respond to the change of swelling-shrinkage behavior of expansive soils caused by the climate environment and then dynamically improve the distribution of total lateral earth pressure behind the slab, while the bagged gravel buffer layer is relatively weak in response to the climate environment. A stable and coordinated interaction can be formed between the expansive soil slope-EPS buffer layer-pile-slab wall structure, which can reduce the influence of swelling characteristics of expansive soils on the bending moment of inter-pile slabs.

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杨果林 ,李文生 ,段君义 ?,杨啸 ,李兴瑷 ,夏晓鹏 .缓冲层-桩板墙组合支护膨胀土边坡现场试验研究[J].湖南大学学报:自然科学版,2025,52(1):24~33

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  • 在线发布日期: 2025-01-22
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