ENGINEERING PREPARATION OF THE SOIL BASE FOR THE FOUNDATIONS OF THE CONSTRUCTIONS OF THE DERHACHI SOLID WASTE LANDFILL

H. Strizhelchyk, O. Bondarenko, I. Khrapatova, O. Palchenko, O. Liapin
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Abstract

After conducting engineering and geological investigations, it became necessary to provide scientific support for construction in terms of engineering preparation of the soil base for the foundations of the structures due to extreme unsustainability in the plan and depth of the rocks. Such engineering-geological conditions significantly impact the choice of foundation structures and the justification of measures to reduce or eliminate the negative effect on the environment and the development of dangerous geological processes and phenomena. We thoroughly studied the deformation and strength properties of the supporting soil layers and developed recommendations for their engineering preparation and improvement of the indicators. Bulk soil is present in local depressions: construction debris, sand, and compacted loam. Based on the analysis of physical and mechanical properties, we could conclude that this soil cannot be used as a soil base for the foundations of buildings due to its loose composition and enrichment with organic substances and must be completely replaced during the production of earthworks. They can be used as a basis for laying engineering networks. After excavation pits for individual columns, before setting up the preparation, it is necessary to carefully inspect the soil foundation to ensure that it is the same engineering and geological element specified in the project. The soil base of the foundations is redeposited subsidence loess loams, which have mostly lost their subsidence properties, but local inclusions with subsidence properties have remained in the thickness of these soils. If there are lenses of soils in the soil base with indicators of physical and mechanical characteristics that are lower than those adopted in the project and that have a thickness of less than one meter, they should be removed and replaced with sand or sand-crushed soil with layer-by-layer compaction and compaction quality control. Doing so will create the same soil conditions for the building foundation. The performed scientific and technical support of the construction made it possible to choose a method of technical soil reclamation—partial replacement of weak soils with sand and crushed stone, which, after layer-by-layer compaction, can withstand a significant load and stability under vibrational influences. Keywords: landfills, solid household waste.
德黑兰固体废弃物填埋场建筑地基土基的工程准备工作
在进行工程地质勘察后,由于岩石的平面和深度极不稳定,有必要在结构地基土基的工程 准备方面为施工提供科学支持。这种工程地质条件对地基结构的选择以及采取措施减少或消除对环境的负面影响和危险地质过程和现象的发展的合理性产生了重大影响。我们对支撑土层的变形和强度特性进行了深入研究,并就其工程准备和指标改进提出了建议。当地洼地中存在大量土壤:建筑垃圾、沙子和夯实的黄土。根据物理和机械性能分析,我们可以得出结论,由于这种土壤成分松散,富含有机物质,因此不能用作建筑物地基的土壤基础,必须在土方工程生产过程中全部更换。它们可以作为铺设工程网络的基础。在为单个柱子开挖基坑之后,在设置准备工作之前,有必要仔细检查土基,以确保它与工程中规定的工程地质要素相同。地基的土基是重新沉积的沉陷性黄土,它们大部分已经失去了沉陷性,但在这些土壤的厚度中还残留着具有沉陷性的局部夹杂物。如果土基中存在物理力学性质指标低于工程采用指标的透镜土,且厚度小于一米,则应将其清除,换成砂土或砂碾土,并逐层压实,控制压实质量。这样做将为建筑地基创造相同的土壤条件。通过对施工的科学和技术支持,可以选择一种技术性土壤改良方法--用砂和碎石对软弱土壤进行部分置换,经过逐层压实后,这些土壤在振动影响下可以承受很大的荷载和稳定性。
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