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首页> 外文期刊>KSCE journal of civil engineering >Experimental Investigation on the Inherent and Initial Induced Anisotropy of Sand
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Experimental Investigation on the Inherent and Initial Induced Anisotropy of Sand

机译:砂的固有和初始诱导各向异性的实验研究

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In this paper, an experimental study concerning the relevance of the initial stress state and the inclination of principal effective stress to vertical (α) on the behavior of sand is presented. The study was carried out using the dry air pluviated Firoozkuh sand in a hollow cylinder apparatus. Most of the specimens were consolidated subjected to the anisotropic initial stress state, which is made by maintaining the principal stress ratio (i.e., R_c) and the inclination of initial principal stress (i.e., R_c) constant during the consolidation phase. Shear loading was carried out in the drained condition while the value of α and intermediate principal stress ratio (i.e., b) were held constant. Sands subjected to the anisotropic vertical initial stress (R_c = 2, α_c = 0) are found to be highly influenced by α due to initial induced anisotropy in addition to inherent anisotropy. The anisotropic response of medium dense sands is observed to be strongly dependent on α_c. The effect of soil anisotropy, specifically initial induced anisotropy, on the shear modulus is more noticeable than the shear strength. The initial induced anisotropy due to the initial stress state of medium dense sand may have a significant influence on the deformation of geotechnical structures such as shallow foundations, so that its neglecting may lead to unsafe designs.
机译:在本文中,进行了有关初始应力状态与主有效应力相对于砂土行为的垂直(α)倾角的相关性的实验研究。该研究是在空心圆筒装置中使用干燥的空气化的Firoozkuh砂进行的。大多数样品在各向异性初始应力状态下固结,这是通过在固结阶段保持主应力比(即R_c)和初始主应力的斜度(即R_c)恒定而制成的。在排水条件下进行剪切载荷,同时α值和中间主应力比(即b)保持恒定。发现受到各向异性垂直初始应力(R_c = 2,α_c= 0)的砂除了固有的各向异性外,还由于初始诱导的各向异性而受到α的强烈影响。观察到中等密度砂土的各向异性响应强烈依赖于α_c。土壤各向异性,特别是初始诱导的各向异性,对剪切模量的影响比剪切强度更明显。由于中等致密砂土的初始应力状态而引起的初始感应各向异性可能会对诸如浅基础等岩土结构的变形产生重大影响,因此忽略其可能导致不安全的设计。

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