岩土及其断裂带产物的工程地质研究(北哈巴罗夫斯克边疆区Albazinskoe矿床)

T. Ryashchenko, E. A. Maslov, E. Bryzhak, S. I. Shtel’makh
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引用次数: 0

摘要

背景。本文以位于哈巴罗夫斯克北部的阿尔巴津斯科金矿床两侧的样品为例,考虑了岩土及其断裂带产物的工程地质研究结果。开发和实施一种方法学方法,其中包括使用“脉冲星-2.2”单元(连续测深和透测测深方法)进行纵向地震波传播速度(“地震速度”)的实验室测定,以及密度、孔隙度和吸水率的测定,同时获取有关微观结构和微观结构类型的信息;变质作用影响下的矿物组成及蚀变特征(岩石薄片)。材料和方法。对于收集到的岩土样品,用r型聚类分析程序评估了地震速度与物理性质指标之间的关系。在实验室中,根据一种专门开发的方法研究了裂缝带的产物:扩展(黑粘土)和缩小(带有碎片的碎石地层)。首次测定了泥质岩中粘土和砾石的微量元素组成,并评价了其受有毒微量元素污染的程度(Zc指数)。通过对聚类分析程序确定的岩质土各种性质指标之间的关系进行定量评价,得出了岩石土密度对地震性质没有影响的“异常”结论,这可以用岩石土的质地和结构特征来解释。以及矿物组成和变质作用的结果(薄片上记录的微尺度碎裂和胚生特征)。所提出的方法方法可以推荐用于在不同地区的地震和工程地震研究中进一步研究岩石土的地震、强度和物理性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An engineering-geological study of rock soils and the products of their fracture zones (Albazinskoe deposit, north Khabarovsk Krai)
Background. The results of an engineering-geological study of rock soils and the products of their fault zones are considered on the example of samples selected in the sides of the Albazinskoe gold-bearing deposit located in the north of the Khabarovsk Krai.Aim. To develop and implement a methodological approach, which includes laboratory determinations of the velocity of propagation of longitudinal seismic waves (“seismic speed”) using a “Pulsar-2.2” unit (methods of continuous and through sounding), as well as density, porosity and water absorption determinations along with obtaining information about the types of microstructure and microtexture, the mineral composition and mineral alteration features under the influence of metamorphism (using petrographical thin sections).Materials and methods. For the collected rock soil samples the relationship between seismic velocity and physical properties indicators was evaluated (R-type cluster analysis programme). The products of fractural zones were studied in a laboratory according to a specially-developed methodological approach: extended (black clay) and reduced (crushed stone formations with debris). The microelement composition of the clay and gravel of argillites was determined for the first time, and the level of their pollution by toxic microelements (Zc index) was evaluated.Results. On the basis of quantitative assessment of the relationship between indicators of rocky soils various properties identified using the cluster analysis program, an “anomalous” conclusion is obtained about the absence of the rock soil density effect on seismic properties, which can be explained by the textural and structural features, as well as by mineral composition and the consequences of metamorphism (cataclastic and blastogenetic features recorded on the microscale in thin sections).Conclusion. The proposed methodological approach can be recommended for further studies of seismic, strength and physical properties of rocky soils during seismological and engineering-seismological studies of various territories.
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