Technologies of building deformation monitoring in Latvia

dc.citation.epage59
dc.citation.journalTitleСучасні досягнення геодезичної науки та виробництва
dc.citation.spage53
dc.citation.volumeІІ (44)
dc.contributor.affiliationLatvia University of Life Sciences and Technologies
dc.contributor.affiliationLviv Polytechnic National University
dc.contributor.affiliationSIA “GEO Jūrmala”
dc.contributor.authorCelms, A.
dc.contributor.authorTrevoho, I.
dc.contributor.authorCelmina, V.
dc.contributor.authorBrinkmanis-Brimanis, M.
dc.coverage.placenameЛьвів
dc.coverage.placenameLviv
dc.date.accessioned2023-06-19T11:55:09Z
dc.date.available2023-06-19T11:55:09Z
dc.date.created2022-06-14
dc.date.issued2022-06-14
dc.description.abstractDetermining the deformations of a building is a very important process in the construction and operation of a construction site. The main causes of deformation of structures and their foundations are sedimentation of foundation structures, weak load-bearing soil, crushed sand layers, wear and degradation of building foundations, uneven or excessive loading of foundations, poor condition of pile foundations, regular ambient vibrations, support of ambient temperature, various loads caused by wind, snow and other conditions, uncompact soil. The quality of building materials, binders, and aggregates can also be mentioned as the causes of the deformations of buildings and foundations. The paper analyzes the available information and regulatory enactments related to the monitoring of building deformations, evaluates the provision of building deformation in Latvia, describes the types of building deformations and their causes, building deformation monitoring technologies, as well as building monitoring methods, and summarizes the results. The aim of the study is to investigate and evaluate the deformation monitoring system of buildings. The results of the research reflect the procedures and technologies of deformation monitoring of buildings, the possibilities of using high-precision deformation sensors, substantiating the need to create an automated height, load, and other deformation-causing properties, and measurement control system. The work provides a specific assessment of the building deformation monitoring object in Strēlnieku Street in Riga.
dc.format.extent53-59
dc.format.pages7
dc.identifier.citationTechnologies of building deformation monitoring in Latvia / A. Celms, I. Trevoho, V. Celmina, M. Brinkmanis-Brimanis // Modern Achievements of Geodesic Science and Industry. — Lviv : Lviv Politechnic Publishing House, 2022. — Vol II (44). — P. 53–59.
dc.identifier.citationenTechnologies of building deformation monitoring in Latvia / A. Celms, I. Trevoho, V. Celmina, M. Brinkmanis-Brimanis // Modern Achievements of Geodesic Science and Industry. — Lviv : Lviv Politechnic Publishing House, 2022. — Vol II (44). — P. 53–59.
dc.identifier.urihttps://ena.lpnu.ua/handle/ntb/59283
dc.language.isoen
dc.publisherВидавництво Львівської політехніки
dc.publisherLviv Politechnic Publishing House
dc.relation.ispartofСучасні досягнення геодезичної науки та виробництва, 2022
dc.relation.ispartofModern Achievements of Geodesic Science and Industry, 2022
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dc.relation.referencesand structural monitoring) GEOinstruments. Retrieved
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dc.relation.referencesĢeodēzija (Geodesy). Rīga, Latvijas Ģeotelpiskās
dc.relation.referencesinformācijas aģentūra. 263.lpp. In Latvian.
dc.relation.referencesHOFT, Strēlnieku iela 5. 2021. Retrieved from:
dc.relation.referenceshttps://www.city24.lv/lv/jaunie-projekti/pardoddzivokli/Riga-Centrs/1470962 In Latvian
dc.relation.referencesLaiviņš E., Rosihins J. (1970). Grunšu mehānika, pamatnes
dc.relation.referencesun pamati (Soil mechanics, bases and foundations).
dc.relation.referencesRīga, Zvaigzne. 273.lpp. In Latvian.
dc.relation.referencesPublisko ēku ekspluatācijas uzraudzība (Monitoring the
dc.relation.referencesoperation of public buildings). Būvniecības valsts
dc.relation.referenceskontroles birojs (2019). Retrieved from:
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dc.relation.referencesVilks M. (1978). Būvju kvalitātes plānošana un kontrole
dc.relation.references(Building quality planning and control). Rīga, Liesma, 91 lpp. In Latvian.
dc.relation.referencesŽagars J., Zvirgzds J., Kaminskis J. (2014). Globālās
dc.relation.referencesnavigācijas satelītu sistēmas (GNSS) (Global
dc.relation.referencesnavigation satellite systems (GSSN)). Ventspils,
dc.relation.referencesVentspils starptautiskais radioastronomijas centrs. 231 lpp. In Latvian.
dc.relation.referencesVispārīgie būvnoteikumi (General building regulations).
dc.relation.referencesMinistru kabineta 2014. gada 1. oktobra noteikumi
dc.relation.referencesNr.500 Retrieved from: https://likumi.lv/doc.php?id=269069 In Latvian. 3D skenēšana ēkām un būvēm (12. 3D scanning of
dc.relation.referencesbuildings and structures) (2021). Retrieved from:
dc.relation.referenceshttps://www.3dscan.lv/3d-skenesana/ekas-un-buves/ In Latvian.
dc.relation.referencesenAuziņš A., Reiniks M. (2014). Apvidus topogrāfiskā
dc.relation.referencesenuzmērīšana (Terrain topographic surveying), Latvijas
dc.relation.referencesenMērnieku biedrība, Latvijas Kartogrāfu un ģeodēzistu
dc.relation.referencesenasociācija. Retrieved from: http://lmb.lv/wp-content/uploads/2014/09/ATU_30092014.pdf In Latvian
dc.relation.referencesenBūvju tehniskā apsekošana (Technical inspection of
dc.relation.referencesenbuildings) Ministru kabineta 2015. gada 1. jūlija
dc.relation.referencesennoteikumi Nr. 337. Retrieved from: https://likumi.lv/ta/id/275010-noteikumi-par-latvijas-buvnormativulbn-405-15-buvju-tehniska-apsekosana In Latvian.
dc.relation.referencesenBūvniecības informācijas sistēma (Construction information
dc.relation.referencesensystem). Būvniecības valsts kontroles birojs. Retrieved
dc.relation.referencesenfrom: https://bis.gov.lv/bisp/lv/planned_constructions/bismap#x=27.434906&y=56.881084&z=10 In Latvian.
dc.relation.referencesenGEOinstruments: konstrukciju monitoringa sistēma
dc.relation.referencesen(GEOinstrument: monitoring system of structures)
dc.relation.referencesen(2021). Retrieved from: https://www.geoinstruments.lv/monitorings/jumta-konstrukcija/ In Latvian.
dc.relation.referencesenĢeodēziskie darbi būvniecībā, Noteikumi par Latvijas
dc.relation.referencesenbūvnormatīvu LBN 305-15 (Geodetic works in
dc.relation.referencesenconstruction, Regulations on Latvian construction
dc.relation.referencesenstandard LBN 305-15) Ministru kabineta 2015. gada 16.jūnija noteikumi Nr. 325 Retrieved from:
dc.relation.referencesenhttps://likumi.lv/ta/id/274935-noteikumi-par-latvijasbuvnormativu-lbn-305-15-geodeziskie-darbibuvnieciba In Latvian.
dc.relation.referencesenĢeotehniskais un strukturālais monitorings (Geotechnical
dc.relation.referencesenand structural monitoring) GEOinstruments. Retrieved
dc.relation.referencesenfrom: file:///C:/Users/Daira/Downloads/2013-12-19_05_GEOKON%20(1).pdf In Latvian.
dc.relation.referencesenHelfriča B., Bīmane I., Kronbergs M., Zuments U. (2007).
dc.relation.referencesenĢeodēzija (Geodesy). Rīga, Latvijas Ģeotelpiskās
dc.relation.referenceseninformācijas aģentūra. 263.lpp. In Latvian.
dc.relation.referencesenHOFT, Strēlnieku iela 5. 2021. Retrieved from:
dc.relation.referencesenhttps://www.city24.lv/lv/jaunie-projekti/pardoddzivokli/Riga-Centrs/1470962 In Latvian
dc.relation.referencesenLaiviņš E., Rosihins J. (1970). Grunšu mehānika, pamatnes
dc.relation.referencesenun pamati (Soil mechanics, bases and foundations).
dc.relation.referencesenRīga, Zvaigzne. 273.lpp. In Latvian.
dc.relation.referencesenPublisko ēku ekspluatācijas uzraudzība (Monitoring the
dc.relation.referencesenoperation of public buildings). Būvniecības valsts
dc.relation.referencesenkontroles birojs (2019). Retrieved from:
dc.relation.referencesenhttps://www.bvkb.gov.lv/lv/media/418/download.
dc.relation.referencesenVilks M. (1978). Būvju kvalitātes plānošana un kontrole
dc.relation.referencesen(Building quality planning and control). Rīga, Liesma, 91 lpp. In Latvian.
dc.relation.referencesenŽagars J., Zvirgzds J., Kaminskis J. (2014). Globālās
dc.relation.referencesennavigācijas satelītu sistēmas (GNSS) (Global
dc.relation.referencesennavigation satellite systems (GSSN)). Ventspils,
dc.relation.referencesenVentspils starptautiskais radioastronomijas centrs. 231 lpp. In Latvian.
dc.relation.referencesenVispārīgie būvnoteikumi (General building regulations).
dc.relation.referencesenMinistru kabineta 2014. gada 1. oktobra noteikumi
dc.relation.referencesenNr.500 Retrieved from: https://likumi.lv/doc.php?id=269069 In Latvian. 3D skenēšana ēkām un būvēm (12. 3D scanning of
dc.relation.referencesenbuildings and structures) (2021). Retrieved from:
dc.relation.referencesenhttps://www.3dscan.lv/3d-skenesana/ekas-un-buves/ In Latvian.
dc.relation.urihttp://lmb.lv/wp-content/uploads/2014/09/ATU_30092014.pdf
dc.relation.urihttps://likumi.lv/ta/id/275010-noteikumi-par-latvijas-buvnormativulbn-405-15-buvju-tehniska-apsekosana
dc.relation.urihttps://bis.gov.lv/bisp/lv/planned_constructions/bismap#x=27.434906&y=56.881084&z=10
dc.relation.urihttps://www.geoinstruments.lv/monitorings/jumta-konstrukcija/
dc.relation.urihttps://likumi.lv/ta/id/274935-noteikumi-par-latvijasbuvnormativu-lbn-305-15-geodeziskie-darbibuvnieciba
dc.relation.urifile:///C:/Users/Daira/Downloads/2013-12-19_05_GEOKON%20(1).pdf
dc.relation.urihttps://www.city24.lv/lv/jaunie-projekti/pardoddzivokli/Riga-Centrs/1470962
dc.relation.urihttps://www.bvkb.gov.lv/lv/media/418/download
dc.relation.urihttps://likumi.lv/doc.php?id=269069
dc.relation.urihttps://www.3dscan.lv/3d-skenesana/ekas-un-buves/
dc.rights.holder© Західне геодезичне товариство, 2022
dc.rights.holder© Національний університет “Львівська політехніка”, 2022
dc.subjectautomated measurement control system
dc.subjectdeformation of the structure
dc.subjectconstruction supervision
dc.subjectdeformation sensors
dc.subjectsurveillance technologies
dc.subject.udc69.058.2
dc.subject.udc528.5(474.3)
dc.titleTechnologies of building deformation monitoring in Latvia
dc.typeArticle

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