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Strain-dependent dynamic properties of Bushehr siliceous-carbonate sand: Experimental and comparative study

机译:布什尔碳硅质砂的应变相关动力特性:实验与比较研究

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Mixtures of calcareous and siliceous sediments are found in extensive areas of the earth including the seismic prone regions. However, a few experimental studies on dynamic properties of such soils have been conducted, compared with the siliceous soils. The investigations presented in this paper include: (1) experimental study on shear modulus (G) and damping ratio (D) of Bushehr siliceous-carbonate sand under various stress-density states, (2) comparison of the results with the available models of siliceous sands, and (3) development of a modified hyperbolic model for the studied siliceous-carbonate sand. Cyclic triaxial and resonant column tests were conducted on reconstituted samples of the Bushehr sands, retrieved from the northern coast of the Persian Gulf. The results indicate that dynamic properties of the sand are less affected by the initial stress anisotropy compared with the initial mean confining pressure (sigma'(m)) and relative density (D-r). The effect of D-r and stress anisotropy on the shear modulus is more pronounced in higher values of sigma'(m). Noticeable discrepancy has been observed between the experimental results of the Bushehr siliceous-carbonate sand and the previous models basically developed for the siliceous sands. Modified hyperbolic models are presented as the shear modulus and damping curves (i.e., G/G(max)-gamma and D-gamma) of the tested sand. The hyperbolic models presented in this study can be used for site response analysis of the regions with similar siliceous-carbonate deposits.
机译:钙质沉积物和硅质沉积物的混合物在包括地震多发地区在内的大片地球区域中发现。然而,与硅质土壤相比,已经进行了一些关于这种土壤的动力特性的实验研究。本文的研究包括:(1)在不同应力密度状态下,布什尔硅质碳酸盐砂的剪切模量(G)和阻尼比(D)的实验研究;(2)将结果与现有模型进行比较。硅质砂,以及(3)为研究的硅质碳酸盐砂开发改进的双曲线模型。循环三轴和共振柱测试是对从波斯湾北海岸取回的Bushehr砂的重构样品进行的。结果表明,与初始平均围压(sigma'(m))和相对密度(D-r)相比,砂土的动力特性受初始应力各向异性的影响较小。 D-r和应力各向异性对剪切模量的影响在更高的sigma'(m)值中更为明显。 Bushehr硅质碳酸盐砂的实验结果与以前为硅质砂开发的基本模型之间存在明显的差异。修改后的双曲线模型表示为试验砂的剪切模量和阻尼曲线(即G / G(max)-γ和D-γ)。本研究中提出的双曲线模型可用于对具有相似硅碳酸盐沉积物的区域进行现场响应分析。

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