Determination of Scope of Geodetic Survey During the Operation of Buildings and Structures Subject to Effects of Man-Caused Geodinamic Processes

IF 0.6 Q3 MULTIDISCIPLINARY SCIENCES Science and innovation Pub Date : 2023-01-27 DOI:10.15407/scine19.01.099
P. Hryhorovskyi, N. Chukanova, Y. Kroshka, O. Murasova, V. Basanskyi
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Abstract

Introduction. Forecasting the dynamics of the progressing of building deformations with the use of the data of instrumental measurements should take into account the influence of geodynamic processes and other factors of the external environment on the operational suitability of buildings. The duration of the life cycle of buildings depends on the timely consideration of the damage threats and forecasting of changes in their technical condition under the influence of natural, man-caused, constructional, and operational factors.Problem Statement. Untimely detection and elimination of defects is the cause of damage and deformation of buildings.Purpose. The purpose of this research is to forecast the progressing defects and damage by the methods of timely assessment of the technical condition of buildings, with the use of instrumental measurement data on the influence of environmental factors on the mechanism of destruction and wear of buildings during their construction and operation.Material and Methods. The methods of analysis and generalization have been used to substantiate the relevance and to formulate the purpose and objectives of the research. The retrospective method for studying the objects over time has been used to collect statistical information and analytical materials on the main parameters of their construction and operation. To forecast the parameters of instrumental measurements at the stages of the life cycle, there have been employed the following empirical research methods: survey, monitoring, generalization of experience, expert surveys, expert evaluations, and forecasting. Risks of damage have been assessed based on the materials of engineering studies, given the possibility of hazard activation, the power and remoteness of the threat source, the technical condition of buildings, and the compaction. The initial data for choosing an effective system are: the stability of the slopes where the building is located, their steepness, the condition and geological composition of the soil base, sources of possible flooding and vibrations. Results. The authors have proposed choosing an effective system of instrumental observation of landslides during the construction and operation of buildings given the vulnerability criterion. The developed method allows choosing an effective system of landslide observations, during the construction and operation of buildings, given the mentioned criterion, i.e. the property of the building to lose serviceability as a result of its possible damage under the influence of negative factors.Conclusions. The proposed method can be used to determine the scope of instrumental observations of landslides and the periodicity of landslide control during the construction in complex geodynamic conditions.
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受人为地质过程影响的建筑物和构筑物运行期间大地测量范围的确定
介绍。利用仪器测量数据预测建筑物变形过程的动态,应考虑地球动力学过程和外部环境的其他因素对建筑物操作适宜性的影响。建筑生命周期的长短取决于在自然、人为、施工和使用等因素的影响下,能否及时考虑其破坏威胁和预测其技术状况的变化。问题陈述。不及时发现和消除缺陷是造成建筑物损坏和变形的原因。本研究的目的是通过对建筑物的技术状况进行及时评估的方法,利用仪器测量数据对建筑物在建造和使用过程中环境因素对其破坏和磨损机理的影响进行预测。材料和方法。分析和概括的方法被用来证实相关性,并制定研究的目的和目标。采用回顾性的方法对文物进行长期研究,收集有关文物建设和运行主要参数的统计信息和分析资料。为了预测仪器测量在生命周期各阶段的参数,采用了调查、监测、经验归纳、专家调查、专家评价和预测等实证研究方法。根据工程研究的材料,考虑到危险激活的可能性、威胁源的力量和距离、建筑物的技术条件和压实情况,对损害风险进行了评估。选择有效系统的初始数据是:建筑物所在斜坡的稳定性、陡度、地基的状况和地质成分、可能发生洪水和振动的来源。根据建筑物易损性准则,提出了在建筑物施工和运行过程中选择有效的滑坡仪器观测系统。所开发的方法允许在建筑物建造和运行期间选择有效的滑坡观测系统,给定上述标准,即建筑物在负面因素的影响下可能因损坏而失去使用能力的性质。该方法可用于确定复杂地动力条件下滑坡仪器观测范围和滑坡控制周期。
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Science and innovation
Science and innovation MULTIDISCIPLINARY SCIENCES-
CiteScore
1.10
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0.00%
发文量
55
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