Maintenance of construction pit against hydrological influences

During long-term operation, buildings and structures for various reasons receive various defects and damage in the form of precipitation and subsidence of the soil base, rolls of buildings and structures, deformations and displacements of the elements of the bearing base, which are recorded by geode...

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Main Authors: Olekhnovich Yanis, Sulatskiy Kirill, Kulakov Kirill
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/61/e3sconf_itese18_03073.pdf
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author Olekhnovich Yanis
Sulatskiy Kirill
Kulakov Kirill
author_facet Olekhnovich Yanis
Sulatskiy Kirill
Kulakov Kirill
author_sort Olekhnovich Yanis
collection DOAJ
description During long-term operation, buildings and structures for various reasons receive various defects and damage in the form of precipitation and subsidence of the soil base, rolls of buildings and structures, deformations and displacements of the elements of the bearing base, which are recorded by geodetic methods. Traditionally, while examining buildings and structures, geodetic methods are based on optical instruments (theodolites, levels, total stations) and grades, which are installed on the elements of controlled buildings and structures are used. The indicated optical methods, on the one hand, give high accuracy in registering deformations of the foundations and structures in comparison with other known methods, and on the other hand, the most famous methods have a number of disadvantages. This article has collected and refined information about one of the most effective geodetic method for assessing the deformation of the structures
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spelling doaj.art-220054ea20f045609c5569d317371d712022-12-21T22:50:03ZengEDP SciencesE3S Web of Conferences2267-12422019-01-011350307310.1051/e3sconf/201913503073e3sconf_itese18_03073Maintenance of construction pit against hydrological influencesOlekhnovich Yanis0Sulatskiy Kirill1Kulakov Kirill2Peter the Great St. Petersburg Polytechnic UniversityPeter the Great St. Petersburg Polytechnic UniversityMoscow State University of Civil EngineeringDuring long-term operation, buildings and structures for various reasons receive various defects and damage in the form of precipitation and subsidence of the soil base, rolls of buildings and structures, deformations and displacements of the elements of the bearing base, which are recorded by geodetic methods. Traditionally, while examining buildings and structures, geodetic methods are based on optical instruments (theodolites, levels, total stations) and grades, which are installed on the elements of controlled buildings and structures are used. The indicated optical methods, on the one hand, give high accuracy in registering deformations of the foundations and structures in comparison with other known methods, and on the other hand, the most famous methods have a number of disadvantages. This article has collected and refined information about one of the most effective geodetic method for assessing the deformation of the structureshttps://www.e3s-conferences.org/articles/e3sconf/pdf/2019/61/e3sconf_itese18_03073.pdf
spellingShingle Olekhnovich Yanis
Sulatskiy Kirill
Kulakov Kirill
Maintenance of construction pit against hydrological influences
E3S Web of Conferences
title Maintenance of construction pit against hydrological influences
title_full Maintenance of construction pit against hydrological influences
title_fullStr Maintenance of construction pit against hydrological influences
title_full_unstemmed Maintenance of construction pit against hydrological influences
title_short Maintenance of construction pit against hydrological influences
title_sort maintenance of construction pit against hydrological influences
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/61/e3sconf_itese18_03073.pdf
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AT sulatskiykirill maintenanceofconstructionpitagainsthydrologicalinfluences
AT kulakovkirill maintenanceofconstructionpitagainsthydrologicalinfluences