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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Small-Strain Stiffness of Natural Pumiceous Sand
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Small-Strain Stiffness of Natural Pumiceous Sand

机译:天然浮砂的小应变刚度

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This paper focuses on the small-strain shear modulus (G_(max)) of natural pumiceous (NP) sands, a type of crushable volcanic soil commonly found in the North Island of New Zealand. These sands are also compressible and lightweight, resulting in difficulty to accurately evaluate their geotechnical properties. To better understand the G_(max) dependency of these NP sands on effective confining pressure (σ'_c) and void ratio (e), bender element tests are performed on three types of locally sourced NP sands and, for comparison purposes, similar tests are conducted on hard-grained Toyoura sand. The results illustrate that the G_(max) of NP sands are considerably lower than that of Toyoura sand over a wide range of e and σ'_c. Furthermore, materials with higher pumice content show higher dependency on σ'_c and lower dependency on e compared with those with lower pumice content as well as Toyoura sand. Particle characteristics (e.g., particle shape, particle-size distribution, particle crushing, pumice content, compressibility, and fines content) are taken into consideration to explain the different response of the tested materials.
机译:本文着眼于天然浮石(NP)砂的小应变剪切模量(G_(max)),这是一种常见于新西兰北岛的可压碎火山岩。这些砂也是可压缩且轻质的,导致难以准确评估其岩土性能。为了更好地了解这些NP砂对有效围压(σ'_c)和空隙率(e)的G_(max)依赖性,对三种类型的本地NP砂进行了弯曲元件测试,出于比较目的,进行了类似的测试在坚硬的丰谷沙子上进行。结果表明,在较大的e和σ'_c范围内,NP砂的G_(max)明显低于Toyoura砂。此外,与浮石含量较低的材料和丰谷砂相比,浮石含量较高的材料对σ'_c的依赖性较高,对e的依赖性较低。考虑了颗粒特性(例如颗粒形状,粒度分布,颗粒破碎,浮石含量,可压缩性和细粉含量)来解释被测材料的不同响应。

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