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Improving Approaches to Estimating Hydrogeological Investigations as a Part of Engineering Survey in Megacities: Case Study of St. Petersburg

机译:提高估算水文地质调查的方法,作为梅塔克斯堡的工程调查的一部分:St. Petersburg的案例研究

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摘要

Urban subsurface space is considered to be a dynamic multicomponent system, which includes sandy-clayey soils, groundwater in different state, microbiota, gases, and underground facilities (either as foundations or as surrounding walls), or engineering structures (tunnels of different purpose, hazardous industrial-waste storages, etc.). Special attention is paid to the significance of hydrogeological studies, primarily, to the influence of hydrodynamic and physicochemical conditions and aquifer chemistry on soils, stress and strain state of the stratum, deformation of structures, and the formation of corrosiveness of subsurface medium. The main factors that govern groundwater composition within zones with different contamination level in megacity territory are analyzed. Results of studying the effect of various aquifers on the conditions of construction and operation of above-ground and subsurface structures are presented. Recommendations for assessing the hydrogeological conditions as a part of geotechnical survey are given.
机译:城市地下空间被认为是一种动态的多组分系统,包括砂岩土壤,不同状态,微生物群,气体和地下设施(作为围绕墙壁的地下设施)或工程结构(不同目的的隧道,危险的工业废物储存等)。特别关注水文地质研究的重要性,主要是对水动力学和物理化学条件和含水层化学对土壤,应力和应变状态的影响,结构变形,以及地下介质的腐蚀性的影响。分析了在巨型地区内具有不同污染水平的地区地区地区的主要因素。提出了研究各种含水层对地上和地下结构的建设条件的影响的结果。给出了评估水文地质条件作为岩土工程调查的一部分的建议。

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