首页> 外文期刊>Journal of Pipeline Systems Engineering and Practice >Effects of Lift Thickness, Backfill Material, and Compaction Energy on Utility Trench Backfill Compaction Using Hydraulic Plate Compactors
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Effects of Lift Thickness, Backfill Material, and Compaction Energy on Utility Trench Backfill Compaction Using Hydraulic Plate Compactors

机译:升力厚度,回填材料和压实能量对液压板压实液外沟回填压实的影响

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Excavator-mounted hydraulic plate compactors have been used extensively for utility trench backfill compaction due to their efficiency. However, there is a need to study their effect on compaction and pipe performance in terms of loose lift thickness, backfill material, and compaction energy due to the lack of well-documented field studies. This paper presents the results of a field investigation to serve this need. Three different excavator-mounted hydraulic plate compactors with different compaction energy levels were used to compact two backfill soils: a well-graded 2A aggregate soil (gravel with sand), and a well-graded wash sand (sand with gravel). Three different loose lift thicknesses were used: 300, 450, and 600 mm (12, 18, and 24 in.). The results showed that the compacted dry density achieved in the field was dependent on the loose lift thickness, impulse force of the compactor, and the backfill material used. High-energy compactors effectively achieved high dry densities in the field for the 2A aggregates even at 600-mm lift thickness, whereas for the wash sand, they over-compacted the backfill, leading to lower densities. In contrast, low-energy compactors were effective in compacting the wash sand, achieving the target dry densities at 600-mm lift thickness. The high-energy compactors resulted in high compaction-induced stresses in the backfill; however, compaction-induced strains in the pipes generally were similar irrespective of the compactor used. (C) 2020 American Society of Civil Engineers.
机译:由于其效率,挖掘机安装的液压板压实器已广泛用于公用事业沟回填压实。然而,由于缺乏记录良好的现场研究,需要研究它们对松散升高,回填材料和压实能量的压实和管道性能的影响。本文介绍了现场调查的结果,以满足这种需求。具有不同压实能量水平的三个不同的挖掘机安装的液压板压块,用于紧凑两种回填土壤:较好的2A骨料(带沙子的砾石),以及良好的洗涤砂(带砾石的沙子)。使用三种不同的松散升力厚度:300,450和600 mm(12,18和24英寸)。结果表明,现场达到的压实干密度取决于松散的升力厚度,压实机的脉冲力和所用的回填材料。高能量压实机的高能量压实机即使在600毫米升降厚度下,2A聚集体有效地实现了高度的干燥密度,而用于洗涤砂,它们过度压缩回填,导致较低的密度。相比之下,低能量压实仪在压实洗涤砂方面有效,以600mm升力厚度实现目标干燥密度。高能压实器导致回填中的高压实诱导的应力;然而,无论使用的压实器如何,管道中的压实诱导的菌株通常类似。 (c)2020年美国土木工程师协会。

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