Induced Partial Saturation: From Mechanical Principles to Engineering Design of an Innovative and Eco-Friendly Countermeasure against Earthquake-Induced Soil Liquefaction

L. Mele, S. Lirer, Alessandro Flora
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Abstract

Earthquake-induced soil liquefaction is a catastrophic phenomenon that can damage existing building foundations and other structures, resulting in significant economic losses. Traditional mitigation techniques against liquefaction present critical aspects, such as high construction costs, impact on surrounding infrastructure and effects on the surrounding environment. Therefore, research is ongoing in order to develop new approaches and technologies suitable to mitigate liquefaction risk. Among the innovative countermeasures against liquefaction, Induced Partial Saturation (IPS) is considered one of the most promising technologies. It consists of introducing gas/air bubbles into the pore water of sandy soils in order to increase the compressibility of the fluid phase and then enhance liquefaction resistance. IPS is economical, eco-friendly and suitable for urbanised areas, where the need to reduce the risk of liquefaction must be addressed, taking into account the integrity of existing buildings. However, IPS is still far from being a routine technology since more aspects should be better understood. The main aim of this review is to raise some important questions and encourage further research and discussions on this topic. The review first analyses and discusses the effects of air/gas bubbles on the cyclic behaviour of sandy soils, focusing on the soil volume element scale and then extending the considerations to the real scale. The use of useful design charts is also described. Moreover, a section will be devoted to the effect of IPS under shallow foundations. The readers will fully understand the research trend of IPS liquefaction mitigation and will be encouraged to further explore new practical aspects to overcome the application difficulties and contribute to spreading the use of this technology.
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诱导部分饱和:从力学原理到工程设计:针对地震诱发土壤液化的创新型生态友好对策
地震引发的土壤液化是一种灾难性现象,会破坏现有的建筑地基和其他结构,造成重大经济损失。传统的液化缓解技术存在一些关键问题,如建筑成本高、对周围基础设施的影响以及对周围环境的影响。因此,目前正在开展研究,以开发适合减轻液化风险的新方法和新技术。在针对液化的创新对策中,诱导部分饱和(IPS)被认为是最有前途的技术之一。它包括将气体/气泡引入砂质土壤的孔隙水中,以增加流体相的可压缩性,从而增强抗液化能力。IPS 经济、环保,适用于城市化地区,在这些地区必须降低液化风险,同时考虑到现有建筑物的完整性。然而,IPS 还远没有成为一项常规技术,因为还有更多方面需要更好地了解。本综述的主要目的是提出一些重要问题,并鼓励就这一主题开展进一步的研究和讨论。综述首先分析和讨论了气泡对砂土循环行为的影响,重点是土壤体积元素尺度,然后将考虑因素扩展到实际尺度。此外,还介绍了如何使用有用的设计图表。此外,还有一节专门讨论浅基础下 IPS 的影响。读者将充分了解 IPS 缓解液化的研究趋势,并鼓励他们进一步探索新的实际问题,以克服应用困难,促进该技术的推广应用。
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