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Automated Information System for Monitoring Technical Condition During Operation of Production Buildings

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Building Life-cycle Management. Information Systems and Technologies

Part of the book series: Lecture Notes in Civil Engineering ((LNCE,volume 231))

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Abstract

The authors conducted an analysis of the work in the field of assessing the technical condition of industrial buildings and found out that in Russia there are no uniform criteria for assessing the technical condition and calculating the residual resource of industrial buildings, which is especially relevant for buildings that have worked their standard life. Based on the experience of the AIS “Accounting and Systematization of the Characteristics of Reinforced Concrete Bridge Structures through Water Supply Channels of the Rostov Region,” which allows recording and monitoring the technical condition of reinforced concrete bridges, the authors propose AIS for monitoring the technical condition of building structures of industrial buildings. The analysis of damage occurred to building structures of production buildings allowed the authors to identify areas of possible formation of defects and damages, systematize them, identify the causes of formation and develop standard recommendations for their elimination. The AIS developed with due account of all possible defects and damages of building structures of industrial buildings, according to the results of the inspection it enables to automatically fill in the list of defects of the building, accumulates information and to monitor the technical condition, development of damage over time, and the timing of scheduled inspections. The criteria developed by the authors for assessing the technical state of building structures depending on the degree of damage allow AIS to automatically assign the technical state to the structure, as well as propose repair options. The application of AIS will allow at the state level the service of Rostekhnadzor, the Ministry of Emergencies and other supervisory organizations to monitor the technical condition of production buildings throughout their life cycle, and the operating organizations to allocate funding for ongoing and major repairs in a timely manner.

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References

  1. Dobromyslov AN (2006) Diagnosis of damage to buildings and engineering structures, pp 256. DIA

    Google Scholar 

  2. Stewart MG (2010) Reliability safety assessment of corroding reinforced concrete structures based on visual inspection information. ACI Struct J 107(6):671–679

    Google Scholar 

  3. Smilin AV, Vatin NI (2014) Quality of visual inspection of buildings and structures and method of its implementation. Constr Unique Buildings Struct 10(25):134–146. ISSN 2304-6295

    Google Scholar 

  4. Tenžera D, Puž G, Radiæ J (2012) Visual inspection in evaluation of bridge condition. Gradjevinar 64(9):717–726

    Google Scholar 

  5. Mikhaylov VV, Kolobanov AS (2008) Evaluation of the residual life of galvanized structures of the coating of rental workshops of the main production of NLMK OJSC. Sci Bull Voronezh Univ Architecture Constr 1(9):61–66

    Google Scholar 

  6. Smolyago GA, Dronov VI, Dronov AB, Merkulov SI (2014) Study of the influence of defects in reinforced concrete structures on the development of reinforcement crust processes. Ind Civil Constr 12:25–27

    Google Scholar 

  7. Resin GA, Smolago GA, Drokin CB, Dronov AB, Belousov AP, Pushkin SA, Smolyago EG (2016) Evaluation of Residual Load-Bearing Capacity of Prefabricated Beam-Free Reinforced Concrete Floors, vol 6, pp 66–73. Izvestia of South-Western State University

    Google Scholar 

  8. Starch TA, Yevtushenko, SI, Starch, MP (2014) Certificate about the state registration of the computer program 2014617460, №2014615109. Accounting and systematization of the characteristics of reinforced concrete bridge structures through the water supply channels of the Rostov Region (“UiS ZHMS”) - declared. 29 May 2014; publ. zareg in the Register of the computer programs 22 July 2014

    Google Scholar 

  9. Evtushenko SI, Starchalny TA, Volosukhin VA et al (2013) Defects and damage to the construction structures of bridges on the reclamation channels of the Rostov region: monograph. Yuzh.Ros. State Polytechnic, un-t (NPI) named after M.I. Platova. - Novocherkassk: YURGPU (NPI) named after M.I. Platova pp 126

    Google Scholar 

  10. Starch TA, Yevtushenko SI (2019) Defects and damage of soil bases of industrial buildings. Constr Architecture 7(3, 24):45–49

    Google Scholar 

  11. Starch TA, Yevtushenko SI (2019) Defects and damage of columnar foundations of production buildings. Constr Architecture 7(4, 25):36–40

    Google Scholar 

  12. Starch TA, Yevtushenko SI (2020) Defects and damage of reinforced concrete columns of production buildings. Constr Architecture 8(2, 27):5–9

    Google Scholar 

  13. Starch TA, Yevtushenko SI (2021) Defects and damage of metal columns of production buildings. Constr Architecture 9(2, 27):11–15. https://doi.org/10.29039/2308-0191-2021-9-2-11-15

  14. Krahmalny TA, Evtushenko SI (2021) Damage to the vertical braces of industrial buildings. IOP Conf Ser Mater Sci Eng 1079:052086. https://doi.org/10.1088/1757-899X/1079/5/052086

  15. Yevtushenko SI, Krahmalny TA, Krahmalnya MP, Shapka VE, Alexandrov AB (2016) Systematization of defects in the facades of industrial buildings. In: Information Technologies in the Survey of Buildings and Structures in Operation: Materials of the XVI International Scientific and Practical Conference, Novocherkassk, 15 Nov 2016, pp 132–136. Publishing House of YURGPU (NPI), Yuzhno-Yuzhno - Novocherkassk

    Google Scholar 

  16. Krahmalny TA, Evtushenko SI (2020) Typical defects and damage to the industrial buildings’ facades. IOP Conf Ser Mater Sci Eng 775:012135. https://doi.org/10.1088/1757-899X/775/1/012135

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Correspondence to T. A. Krahmalniy .

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Evtushenko, S.I., Krahmalniy, T.A. (2022). Automated Information System for Monitoring Technical Condition During Operation of Production Buildings. In: Ginzburg, A., Galina, K. (eds) Building Life-cycle Management. Information Systems and Technologies. Lecture Notes in Civil Engineering, vol 231. Springer, Cham. https://doi.org/10.1007/978-3-030-96206-7_4

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  • DOI: https://doi.org/10.1007/978-3-030-96206-7_4

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  • Publisher Name: Springer, Cham

  • Print ISBN: 978-3-030-96205-0

  • Online ISBN: 978-3-030-96206-7

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