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首页> 外文期刊>Journal of African Earth Sciences >Assessment of brittleness and empirical correlations between physical and mechanical parameters of the Asmari limestone in Khersan 2 dam site, in southwest of Iran
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Assessment of brittleness and empirical correlations between physical and mechanical parameters of the Asmari limestone in Khersan 2 dam site, in southwest of Iran

机译:评估伊朗西南部Khersan 2坝址的Asmari石灰石的脆性和物理力学参数之间的经验相关性

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The determination of brittleness and geomechanical parameters, especially uniaxial compressive strength (UCS) and Young's modulus (E-s) of rocks are needed for the design of different rock engineering applications. Evaluation of these parameters are time-consuming processes, tedious, expensive and require well-prepared rock cores. Therefore, compressional wave velocity (V-p) and index parameters such as point load index and porosity are often used to predict the properties of rocks. In this paper, brittleness and other properties, physical and mechanical in type, of 56 Asmari limestones in dry and saturated conditions were analyzed. The rock samples were collected from Khersan 2 dam site. This dam with the height of 240 m is being constructed and located in the Zagros Mountain, in the southwest of Iran. The bedrock and abutments of the dam site consist of Asemari and Gachsaran Formations. In this paper, a practical relation for predicting brittleness and some relations between mechanical and index parameters of the Asmari limestone were established. The presented equation for predicting brittleness based on UCS, Brazilian tensile strength and Vp had high accuracy. Moreover, results showed that the brittleness estimation based on B3 concept (the ratio of multiply compressive strength in tensile strength divided 2) had more accuracy as compared to the B2 (the ratio of compressive strength minus tensile strength to compressive strength plus tensile strength) and B1 (the ratio of compressive strength to tensile strength) concepts. (C) 2017 Elsevier Ltd. All rights reserved.
机译:不同岩石工程应用的设计需要确定岩石的脆性和岩土力学参数,特别是岩石的单轴抗压强度(UCS)和杨氏模量(E-s)。这些参数的评估是耗时的过程,繁琐,昂贵并且需要准备充分的岩心。因此,通常使用压缩波速度(V-p)和诸如点载荷指数和孔隙度之类的指数参数来预测岩石的特性。本文分析了56种Asmari石灰石在干燥和饱和条件下的脆性及其他物理和机械性质。岩石样品是从Khersan 2坝址采集的。这座高240 m的水坝正在建设中,位于伊朗西南部的Zagros山中。坝址的基岩和桥台包括Asemari和Gachsaran组。本文建立了预测阿斯玛利石灰石脆性的实用关系以及力学参数和指标参数之间的一些关系。提出的基于UCS,巴西拉伸强度和Vp的脆性预测方程具有较高的精度。此外,结果表明,与B2(抗压强度减去抗拉强度与抗压强度加抗拉强度之比)相比,基于B3概念(脆性强度乘以抗压强度的倍数除以2)的脆性估算具有更高的准确性,并且B1(抗压强度与抗拉强度之比)的概念。 (C)2017 Elsevier Ltd.保留所有权利。

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