TITLE EMERGENCY CALCULATION OF THE INDUSTRIAL BUILDING STRUCTURE
Main Article Content
Abstract
Emergency situations calculation for the industrial buildings structures is an important element in ensuring their reliability and safety in conditions that contribute to the emergence of significant social, environmental and economic consequences. This calculation is mandatory for objects of a high responsibility level (class KS-3), and can be carried out on a voluntary basis for objects of class KS-2, where a large number of people are expected to be present. The article presents the calculation of the industrial building structures with a high responsibility level and analyzes its results. The calculation was performed in accordance with paragraph 5.1 in SP 56.13330.2011 «Industrial buildings» for resistance to progressive collapse as an emergency situation result. A secondary model was created based on the primary calculation model. An emergency failure case of the middle load-bearing column in the frame along the 18/H axis was selected having analyzed the space-planning and design solutions for this building. It was established that the required beams and the roof slab reinforcement obtained as a calculation result of the secondary model does not exceed that obtained as a primary model calculation result based on the calculations performed results. Also, based on the calculation results of the ozone-sorption block building secondary model (fast filter section) for an emergency situation, it was determined that when such a situation occurs - when one of the columns is turned off - the remaining load-bearing elements take on additional forces without losing strength and stability, that is, resistance to the structure progressive collapse will be ensured.
Downloads
Article Details
Issue
Section

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
How to Cite
References
Onoprienko A.R., Solovyov A.K., Rimshin V.I., The use of solar energy for heating premises in the southern regions of the Russian federation in the spring-autumn period. Light & Engineering, 32(1), pp. 18-22 (2024) DOI: 10.33383/2023-067
Mihail V. Lukin, Svetlana I. Roshchina, Аnastasia V. Lukinа, Rimshin V.I., Computer modeling of energy-efficient joints of wood composite panels. International Journal for Computational Civil and Structural Engineering, 20(1), pp. 68-80 (2024) DOI: 10.22337/2587-9618-2024-20-1-68-80
Valeriy Telichenko, Vladimir Rimshin and Ekaterina Ketsko, Promising directions for the artificial intelligence development in the housing and utilities sector. E3S Web of Conferences, 533, 05001 (2024) DOI: https://doi.org/10.1051/e3sconf/202453505001
Telichenko V., Rimshin V., Ketsko E., Digital robotic systems for non-destructive reinforced concrete structures testing. E3S Web of Conferences, 533, 02045 (2024) DOI: 10.1051/e3sconf/202453302045
Rimshin V.I., Roshchina S.I., Lesovik R.V., Lukin M.V., Lukinа А.V., Prolongation of the life cycle of wooden structures due to the use of joints on aluminum connectors. Eurasian Chemical Communications, 6, p. 122 (2024) DOI:10.48309/jmpcr.2024.183586
Monastyrev P.V., Elchishcheva T.F., Makarchuk M.V.1, Erofeev V.T., Rimshin V.I., Erofeeva I.V., The effect of montmorillonite on the rheological and physico-mechanical properties of a thermosetting polymer composite. International Journal for Computational Civil and Structural Engineering, 20(2), pp. 109-117 (2024) DOI: 10.22337/2587-9618-2024-20-2-109-117
Rimshin V., Ketsko E., Justification of strengthening of reinforced concrete structures of an industrial building with composite materials. Lecture Notes in Civil Engineering, 372, pp. 129 (2024) https://doi.org/10.1007/978-3-031-36723-6_14
Rimshin V., Khamrakulov R., Alikabulov Sh., Radjabov Y., Abdurakhmonov A., Mirazimova G., Jamolova M., Study on the possibilities of increasing the effectiveness of thermal insulation of enclosing structures in window openings using low-emission coatings and films. E3S Web of Conferences, 563, 02024 (2024) DOI:10.1051/e3sconf/202456302024
Semenov V.A., Morozov S.V., Arishin S.V., Kuzina O.N., Rimshin V.I., Makisha E.V., Formal specification and verification of requirements in architecture and construction using the express modeling language Programming and Computer Software, 50 (5), pp. 376-391 (2024) https://doi.org/10.1134/S036176882470018X
Svetlana Roshchina, Mikhail Lukin, Ekaterina Ketsko, Scientific Basis of Studying the Pile Foundations Bearing Capacity During Building Reconstruction. Lecture Notes in Civil Engineering, 576, pp. 283-294 (2024) https://doi.org/10.1007/978-3-031-81635-2_28
Svetlana Roshchina, Anatoly Krishan, Ekaterina Ketsko, Tube-Concrete Structures Stress-Strain State Theory. Lecture Notes in Civil Engineering, 576, pp. 295-301 (2024) https://doi.org/10.1007/978-3-031-81635-2_29
Shafranovsky T., Rimshin V., Varlamov A., Merkulov S., Comparison of the durability of buildings in a group. IOP Conference Series: Materials Science and Engineering, 1079 (6), 062004 (2021) DOI:10.1088/1757-899X/1079/6/062004
Rimshin V.I., Kurbatov V.L., Erofeev V.T., Ketsko E.S., Comprehensive survey of the silt reservoir structures technical condition. IOP Conference Series: Materials Science and Engineering, 1079 (4), 042077 (2021) DOI:10.1088/1757-899X/1079/4/042077
Kostyuchenko Ya.B., Varlamov A.A., Rimshin V.I., Bykov G.S., Roschina S., Bearing capacity of steel-polystyrene concrete slab. IOP Conference Series: Materials Science and Engineering, 1079 (6), 062003(2021) DOI:10.1088/1757-899X/1079/6/062003
Varlamov A.A., Rimshin V.I., Davydov A., Minnatov A.R., Kurbatov A.M., Research of the degradation process of reinforced concrete structures. IOP Conference Series: Materials Science and Engineering, 1079 (6), 062005 (2021) DOI:10.1088/1757-899X/1079/6/062005
Telichenko Valery, Rimshin Vladimir, Ketsko Ekaterina, Design and Calculation Solutions for Designing Biological Treatment Facilities on The Pumping Station Example. AIP Conference Proceedings, 2497, 020009 (2023) https://doi.org/10.1063/5.0103519
P. A. Amelin , V. I. Rimshin , A. A. Kryuchkov , D. V. Obernikhin, Finite Element Modeling of the Work of Bent Reinforced Concrete Elements of Rectangular Section in the Abaqus Software Environment. Lecture Notes in Civil Engineering, 307, pp. 268-275 (2022) https://doi.org/10.1007/978-3-031-20459-3_34
Rimshin V.I., Truntov P.S., Technical inspection stages of the textile industry building. Izvestiya Visshih Uchebnih Zavedenii, Seriya Tehnologiya Tekstilnoi Promishlennosti, 1 (403), pp. 153-158 (2023) DOI 10.47367/0021-3497_2023_1_153
Кrishan A.L., Аstafeva M.A., Chernyshova E.P., Numerical and Experimental Investigation of Axially Loaded Columns with Spiral Reinforcement. Materials Science Forum, 1087, pp. 163-168 (2023) DOI: 10.4028/p-7841oa
Alexey Bulgakov, Jens Otto Wen-der Yu, Vladimir Rimshin and Alexey Shleenko, Structural organization of robotic building and mounting complexes. Journal of Robotics and Mechatronics, Proceedings of the 40th ISARC, Chennai, India, ISBN 978-0-6458322-0-4, ISSN 2413-58442023, pp. 208-213 (2023) DOI:10.22260/ISARC2023/0030
V. Telichenko, V. Rimshin, E. Ketsko, Engineering structures stability against progressive collapse. E3S Web of Conferences, 02037 (EDP Sciences, 2023) https://doi.org/10.1051/e3sconf/202341002037 FORM-2023
Vladimir Rimshin, Anatoly Krishan, Elena Korol, Svetlana Roshchina, and Igor Shubin, Square-Section Tube-Concrete Structures Studying Under Axial Compression Both with Spiral Reinforcement of the Concrete Core and Without Reinforcement. Proceedings of MPCPE 2022, Lecture Notes in Civil Engineering, 335, pp. 165-181 (2023) https://doi.org/10.1007/978-3-031-30570-2_15
Artem Strekalkin, Mikhail Sergeev, Dmitry Reva , and Vladimir Rimshin, Strength and Deformability of Butt Joints Made of Wood with Local Modification. Proceedings of MPCPE 2022, Lecture Notes in Civil Engineering, 335, pp. 191-199 (2023) https://doi.org/10.1007/978-3-031-30570-2_17
Mikhail Lukin, Roschina Svetlana, and Vladimir Rimshin, Mechanical Properties of Polymer Composition Based on Dimethacrylic Polyester with Nanostructured Filler for Wood Modification. Proceedings of MPCPE 2022, Lecture Notes in Civil Engineering, 335, pp. 277-287 (2023) https://doi.org/10.1007/978-3-031-30570-2_25 18
Martinov V., Lukin M., Rimshin V., Rusak K., Ivaniuk A., Influence of Different Types of Aggregates on the Structural Properties of Fiber-Reinforced Concrete. Lecture Notes in Networks and Systems, 403 LNNS, pp. 1467–1476 (2022) DOI: 10.1007/978-3-030-96383-5_164
Neverov A.N., Truntov, P.S., Ketsko E.S., Rimshin, V.I., Calculating the Strengthening of Construction Structures Before the Reconstruction of the Building. Lecture Notes in Civil Engineering, 182, pp. 173–179 (2022) DOI: https://doi.org/10.1007/978-3-030-85236-8_14
Lukin M., Martynov V., Rimshin V., Aleksiievets I., Reinforced Concrete Vertical Structures Under a Gently Sloping Shell of Double Curvature Under the Influence of Progressive Collapse. Lecture Notes in Civil Engineering, 182, pp. 577–587 (2022) DOI: 10.1007/978-3-030-85236-8_50
A.L. Krishan, V.I. Rimshin, I.L. Shubin, M.A. Astafeva, A.A. Stupak, Compressed Reinforced Concrete Elements Bearing Capacity of Various Flexibility. Lecture Notes in Civil Engineering, 182, pp. 283–291 (2022) DOI: 10.1007/978-3-030-85236-8_26
Rimshin V.I., Roshchina S.I., Ketsko E.S.,Truntov P.S., Kuzina I.S., Engineering Calculations of Acidifier Retaining Walls During Water Treatment Facilities Designing. Lecture Notes in Civil Engineering, 182, pp. 55–73 (2022) DOI: 10.1007/978-3-030-85236-8_5
Tho V.D., Korol E.A., Rimshin V.I., Anh P.T., Model of stress-strain state of three-layered reinforced concrete structure by the finite element methods. International Journal for Computational Civil and Structural Engineering, 18(2), pp. 62–73(2022) DOI: 10.22337/2587-9618-2022-18-2-62-73