首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Short-term lateral response of a buried modular polymer stormwater collection structure to compaction and overburden pressure
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Short-term lateral response of a buried modular polymer stormwater collection structure to compaction and overburden pressure

机译:埋式模块化聚合物雨水收集结构对压实和上覆压力的短期横向响应

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摘要

Results from full-scale physical experiments are reported to identify and quantify short-term lateral response around the perimeter of a modular polymer stormwater collection structure during backfilling and under applied vertical pressures equivalent to the maximum and maximum-factored burial depths. The physical simulation was such that lateral stresses developed in the side fill for stiff native trench conditions and the particular soil, compaction, and resulting lateral displacements of the side panels (i.e., soil-structure-compaction interaction). Two types of coarse-grained soil, two types of compaction, and two structure heights were examined. Tensile strains in edge PVC columns were induced by lateral bending from soil placement and lateral earth pressures. Of the conditions examined, rammer-compacted 19-mm poorly graded gravel resulted in the largest short-term edge column tensions (0.4%); however, even these values were 4.5 times smaller than the measured short-term PVC rupture strains.
机译:据报道,从大规模物理实验获得的结果可以识别和量化回填过程中,以及在施加的垂直压力等于最大和最大埋葬深度的情况下,模块化聚合物雨水收集结构周围的短期横向响应。物理模拟是这样的:在侧向填土中产生的侧向应力会针对刚性原生沟渠条件和特定的土壤,压实度以及侧板的侧向位移(即土壤-结构-压缩相互作用)而产生。检查了两种类型的粗粒土,两种类型的压实度和两种结构高度。边缘PVC柱中的拉伸应变是由土壤放置和侧向土压力引起的侧向弯曲引起的。在所考察的条件中,夯夯压实的19毫米低级砾石导致最大的短期边柱张力(0.4%);但是,即使这些值也比所测得的短期PVC断裂应变小4.5倍。

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