砂土中破碎小桩群的土-结构相互作用

IF 0.3 Q4 ENGINEERING, GEOLOGICAL
Sanchari Mondal, M. Disfani
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引用次数: 0

摘要

最近,作为住宅、商业和基础设施部门轻型结构应用的基础解决方案,模仿树根网络的倾斜微型桩群越来越受欢迎。电池微型桩组配置最近因其易于安装和环境友好等优点而备受关注。本文通过物理模型和数值模型相结合的方法,研究了倾斜微型桩群的抗侧载性能。研究了两个非传统的倾斜微型桩组,它们的配置代表树木的根系网络,与传统的倾斜小型桩组配置相比,它们能够吸收更大体积的土壤。研究中还包括了一个传统的倾斜微型桩组,以与本文介绍的新型微型桩组配置进行直接比较。传统斜向微型桩组有两个正斜向和两个负斜向25°微型桩。第二种类型的组在前排和后排各有一个25°垂直倾斜的微型桩。本研究还介绍了斜向微型桩群的另一个独特方向,它有四个斜向外25°的斜向小型桩。第三种类型的具有四个斜向外倾斜的微型桩的微型桩组提供了三组中最高的侧向阻力。这种更好的性能归因于更大体积的土壤参与抵抗施加在微型桩头的横向载荷。通过这项研究,可以更自信地倡导在抗横向荷载方面具有更好性能的非常规微型群桩配置的工业应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soil-Structure Interaction of Battered Minipile Groups in Sandy Soil
Battered minipile groups mimicking tree root networks have been gaining popularity as a footing solution for light structural applications in residential, commercial and infrastructure sectors, recently. Battered minipile group configurations are recently in the limelight due to advantages such as ease of installation and environmentally friendly nature. The lateral load resistance of battered minipile groups is investigated in this paper through a combination of physical and numerical modelling. Two-unconventional battered minipile groups with configurations representing the root network of trees with the capacity of engaging a larger volume of soil compared to conventional battered minipile group configurations are studied. A conventional battered minipile group is also included in the study to draw a direct comparison with the new minipile group configurations introduced in this paper. The conventional battered minipile group has two positively and two negatively 25° battered minipiles. The second type of group has one 25° perpendicularly battered minipile in the leading and trailing row each. Another unique orientation of the battered minipile group is also introduced in this study which has four diagonally outward 25° battered minipiles. The third type of minipile group with four diagonally outward battered minipiles offered the highest lateral resistance among the three groups. This better performance capability was attributed to the engagement of a larger volume of soil in resisting lateral load applied at the minipile head. Through this study, the industrial application of the unconventional minipile group configuration with better performance capability in terms of lateral load resistance can be advocated more confidently.
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来源期刊
Australian Geomechanics Journal
Australian Geomechanics Journal ENGINEERING, GEOLOGICAL-
CiteScore
0.40
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1
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