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Shallow foundations on lightweight TDA backfill: Field tests and 3D numerical modelling

机译:轻量级TDA回填浅基础:现场测试和3D数值模型

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摘要

Recent advances in fire recycling technologies coupled with increasing global environmental awareness have resulted in several new products derived from scrap fires, including fire-derived aggregate (TDA). TDA is an inexpensive engineered lightweight backfill material with excellent geotechnical properties, produced by shredding scrap fires into sizes ranging from 12 mm to 305 mm. This paper examines the performance of rigid footings resting on a surface of conventional backfill materials overlying a TDA layer. The study includes three full-scale field tests with TDA layers of different thicknesses. Based on the field tests, rigorous 3D finite element analyses (FEA) were developed to study the failure mechanism of shallow foundations over TDA. In addition, the effect on the footing performance of changing critical parameters including the TDA layer thickness, the strength of the top granular backfill, the foundation depth, the footing width, the footing shape, and subsurface soil conditions was studied. It was found that in comparison to using only conventional granular backfill, using an underlying TDA layer for shallow foundations results in a significant improvement in transferring the stresses and reducing the stress influence zone underneath the footings. For instance, before the punching shear failure in the top layer occurred, TDA was able to reduce the transferred stresses by almost one half of that by the natural backfill. Furthermore, the results of the parametric study illustrated the dependency of the bearing capacity of the spread footing on the relative thicknesses of the TDA and the top granular layers, in addition to the foundation width.
机译:消防回收技术的最新进展加上越来越多的全球环境意识导致了几种来自废料的新产品,包括火灾派生骨料(TDA)。 TDA是一种廉价的工程轻质回填材料,具有出色的岩土性特性,通过将废料粉碎为12毫米至305毫米的尺寸产生。本文探讨了依赖于覆盖TDA层的传统回填材料表面上刚刚踏板的性能。该研究包括三个具有不同厚度TDA层的全尺度场测试。基于现场测试,开发了严格的3D有限元分析(FEA)以研究TDA的浅层基础的故障机制。此外,研究了对包括TDA层厚度的临界参数的脚踏性能的影响,研究了顶部粒状回填,基础深度,基础宽度,基础形状和地下土壤条件的强度。发现与仅使用常规的粒状回填,使用底层TDA层用于浅基础导致转移应力并减少基础下方的应力影响区的显着改善。例如,在发生顶层的冲孔剪切失效之前,TDA能够通过天然回填的几乎一半减少转移的应力。此外,除了基础宽度之外,参数研究的结果示出了扩散基础的承载能力对TDA和顶部颗粒层的相对厚度的依赖性。

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