Interaction of Stress-Strain State of the Reinforced Soil Mass and Vertical Shaft Mouth Lining with the Mine Surface Building’s Foundations

A. Prokopov, V. Akopyan, R. Y. Shevchenko
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Abstract

Introduction. The mining of mineral deposits is related to the construction of sophisticated technological complexes on the surface being a liaison between underground operations and above-ground systems. During construction of the mining companies’ buildings and structures of the above-ground technological complexes there arise problems related to the complicated engineering, geological and hydrogeological conditions, as well as emerge difficulties caused by the presence of underground workings (mining, transport, ventilation, auxiliary) affecting the construction and operation of surface facilities. In this article a study was made of the stress-strain state (SSS) of a complex system comprising a mine surface building, a vertical shaft mouth with a ventilation duct under conditions complicated by the presence of subsiding soils and the need of reinforcement thereof.Materials and methods. In the study there were used: the analysis of existing methods of soil bases reinforcement as applied to the specific engineering and geological conditions of construction, subject to the interdependence of aboveground and underground structures; the mathematical modeling of the system "a vertical shaft mouth with a ventilation duct - a subsiding soil mass reinforced with soil piles - a mine surface building’s foundations"; the study of SSS features on models, determination of the main factors affecting the design decisions on enforcement of soil bases and building foundations receiving a compound combination of operational loads.Results. It has been found that the above-ground loadbearing structures, foundations and soil bases should be calculated taking into account the interdependence with the vertical shaft and the adjacent ventilation duct, based on the SSS parameters definition. The monolithic concrete mouth lining has a significant impact on the SSS of the foundation slab, increasing rigidity at the points of contact between the slab and the lining. The minimum vertical settlement of the slab is observed above the shaft mouth lining, the maximum - in the central part of the building, in the points of maximum load application.Discussion and Conclusions. The results of the stress-strain state study of a reinforced soil mass and a vertical shaft mouth lining in interaction with the mine surface building’s foundations are formulated, and recommendations are given on considering the affecting factors when designing such facilities.
加筋土体、立井井口衬砌应力-应变状态与矿山地表建筑基础的相互作用
介绍。矿藏的开采涉及到在地面上建造复杂的技术综合体,这是地下作业和地上系统之间的联系。矿山公司在建设地上技术综合体的建筑物和构筑物时,由于工程、地质、水文地质条件复杂,以及由于地下工程(采矿、运输、通风、辅助)的存在而影响地面设施的建设和运行,出现了困难。本文研究了在存在沉降土的复杂条件下,由矿山地表建筑、竖井口和通风管道组成的复杂系统的应力-应变状态(SSS)及其加固需求。材料和方法。在研究中采用了:分析现有的土基加固方法,如适用于具体的工程和地质条件的建设,受制于地上和地下结构的相互依存关系;建立了“带通风管道的立井口-土桩加固的沉陷土体-矿山地表建筑基础”系统的数学模型;研究了模型的SSS特征,确定了影响地基和建筑基础在复合荷载作用下的设计决策的主要因素。研究发现,根据SSS参数定义,计算地上承重结构、基础和土基时应考虑到与立井和相邻通风管道的相互依存关系。整体式混凝土口衬对底板的SSS有显著影响,增加了底板与衬砌接触点的刚度。在井口衬砌上方观察到板的最小垂直沉降,在建筑物的中心部分,在最大荷载施加点处观察到最大垂直沉降。讨论和结论。给出了加筋土体和立井井口衬砌与矿山地表建筑基础相互作用的应力-应变状态研究结果,并对此类设施设计时应考虑的影响因素提出了建议。
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