浮石含量对浮石土不排水循环特性的影响

IF 3.3 2区 工程技术 Q2 ENGINEERING, GEOLOGICAL
Emma Gardiner, Mark Stringer, Misko Cubrinovski, Sean Rees, Chris McGann
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引用次数: 0

摘要

浮石土颗粒的特点是它们的水泡性质,这导致了重量轻,可破碎的颗粒,具有极其粗糙和棱角分明的表面纹理。这些特性赋予浮石土独特的工程特性,使其与更常见的硬颗粒材料不同,这使得工程师对评估液化的风险和潜在后果感兴趣。天然富浮石土壤含有不同数量的浮石;然而,目前还不清楚混合土中浮石的含量是如何改变这种行为的。通过一系列三轴试验,研究了浮石掺量对硬粒砂和浮石砂的循环阻力的影响。总体而言,循环阻力随浮石含量的增加而降低。此外,循环阻力表现为3个波段:(a)当浮石含量达到40%时,循环阻力下降幅度不大;(b)当浮石含量达到80%及以上时,循环阻力下降幅度约为20%;(c)处于过渡区。然而,尽管循环阻力较低,孔隙压力的产生和应变发展模式似乎不受混合土中浮石含量的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of pumice content on the undrained cyclic behaviour of pumiceous soil
Pumice soil grains are characterized by their vesicular nature, which leads to lightweight, crushable grains with an extremely rough and angular surface texture. These characteristics give pumiceous soils particular engineering properties that are distinct from more commonly encountered hard-grained materials, making them problematic for engineers interested in assessing the risk and potential consequences of liquefaction. Natural pumice-rich soils are found with varying amounts of pumice; however, it remains unclear how the quantity of pumice present in a soil mixture alters the behaviour. This paper investigates the effect of pumice content on cyclic resistance using blends of a hard-grained sand and a pumice sand through a series of triaxial tests. Overall, the cyclic resistance was found to reduce with increasing pumice content. Furthermore, the cyclic resistances appeared to fall into three bands: (a) little apparent reduction in cyclic resistance for pumice contents up to 40%, (b) a reduction in cyclic resistance of approximately 20% at pumice contents of 80% and higher, and (c) a transitional zone. However, despite the lower cyclic resistance, the patterns of pore pressure generation and strain development did not appear to be affected by the amount of pumice in the soil mixture.
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来源期刊
Soils and Foundations
Soils and Foundations 工程技术-地球科学综合
CiteScore
6.40
自引率
8.10%
发文量
99
审稿时长
5 months
期刊介绍: Soils and Foundations is one of the leading journals in the field of soil mechanics and geotechnical engineering. It is the official journal of the Japanese Geotechnical Society (JGS)., The journal publishes a variety of original research paper, technical reports, technical notes, as well as the state-of-the-art reports upon invitation by the Editor, in the fields of soil and rock mechanics, geotechnical engineering, and environmental geotechnics. Since the publication of Volume 1, No.1 issue in June 1960, Soils and Foundations will celebrate the 60th anniversary in the year of 2020. Soils and Foundations welcomes theoretical as well as practical work associated with the aforementioned field(s). Case studies that describe the original and interdisciplinary work applicable to geotechnical engineering are particularly encouraged. Discussions to each of the published articles are also welcomed in order to provide an avenue in which opinions of peers may be fed back or exchanged. In providing latest expertise on a specific topic, one issue out of six per year on average was allocated to include selected papers from the International Symposia which were held in Japan as well as overseas.
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