Development of the calculation methodology of cross-beam foundation on the sloping base complicated by karst and sinkhole processes
https://doi.org/10.22227/1997-0935.2024.9.1494-1504
Abstract
Introduction. A calculation scheme of karst sinkhole in karst territories using the results of laboratory experimental studies is developed, which makes it possible to determine the shape and size of karst sinkhole depending on the karst cavity dimeter (radius), its depth, the base slope angle and the angle of internal friction of soils composing the slope.
Materials and methods. The method of calculation of normal contact stresses in the sloping soil base under the bottom of the cross-beam foundation during the formation of karst sinkholes is given, considering three main cases of karst cavity location in the slope massif with the most unfavourable location of the karst cavity relative to the cross-beam foundation structures.
Results. The analytical dependence allowing to determine the theoretical value of the design value of the diameter Lc of the cavity in the sloping base is obtained, as well as to establish the main design dependences for determining the normal contact stresses, which allow to estimate the changes in the VAT parameters of the cross-beam foundation operation after the cavity vault collapse and formation of a complex shape of the collapse funnel.
Conclusions. The developed methodology is convenient to use for qualitative assessment of design solutions in the design of cross-beam foundations on a sloping base in karst-prone areas. The obtained variant design values of the main VAT parameters according to the proposed methodology will allow to apply rational design solutions in design.
About the Authors
A. B. BarykinRussian Federation
Alexander B. Barykin — Candidate of Technical Sciences, Lecturer at the Department of Geotechnics and Structural Elements, Institute “Academy of Construction and Architecture”
4 prospekt Vernadskogo, Simferopol, Republic of Crimea, 295007
B. Yu. Barykin
Russian Federation
Boris Yu. Barykin — Candidate of Technical Sciences, Associate Professor, Lecturer at the Department of Building Structures, Institute “Academy of Construction and Architecture”
4 prospekt Vernadskogo, Simferopol, Republic of Crimea, 295007
E. V. Zelenin
Russian Federation
Evgeniy V. Zelenin — postgraduate student, Institute “Academy of Construction and Architecture”
4 prospekt Vernadskogo, Simferopol, Republic of Crimea, 295007
References
1. Anikeev A.V., Ragozin A.L., Seleznev V.N. Evaluation of the geological risk on an urban construction site. Geoekologiya. Inzhenernaya Geologiya. Gidrogeologiya. Geokriologiya. 2007; 6:547-560. EDN IBCDKZ. (rus.).
2. Leonenko V.M., Leonenko M.V., Tolmachev V.V. Determination of karst protection design parameters within the framework of geotechnical system “karst-construction”. Assessment and management of natural risks : proceedings of the All-Russian Conf. “Risk-2006”. 2006; 315-318. (rus.).
3. Tolmachev V., Leonenko M. Experience in Collapse risk assessment of building on covered karst landscapes in Russia. Karst Management. 2011; 75-102. DOI: 10.1007/978-94-007-1207-2_4
4. Amelichev G.N., Vakhrushev B.A., Samokhin G.V., Tokarev S.V. Peculiarities of engineering surveys on the Carsted territories within the Crimean peninsula. Study of Hazardous Natural Processes and Geotechnical Monitoring in Engineering Surveys : proceedings of the All-Russian Scientific and Practical Conference. 2023; 72-92. EDN URNRRM. (rus.).
5. Vakhrushev B.A. Karst zonation of the Crimean Peninsula. Speleology and Karstology. 2009; 3:39-46. EDN RCVUYD. (rus.).
6. Barykin B.Yu., Barykin A.B., Morozov V.V. Buildings and constructions on a complex relief: educational and methodical manual. Simferopol, Institute “Academy of Construction and Architecture”, 2022; 74. (rus.).
7. Aktürk Ö., Drumm E.C., Tutluogˇlu L., Akgün H. Undrained stability of residual soil in karst. Sinkholes and the Engineering and Environmental Impacts of Karst. 2008; 223-232. DOI: 10.1061/41003(327)22
8. Newton J.G. Development of sinkholes resulting from man’s activities in the Eastern United States. Circular. 1987. DOI: 10.3133/cir968
9. Waltham T., Bell F., Culshaw M. Sinkholes and Subsidence: Karst and Cavernous Rocks in Engineering and Construction. Springer Praxis, 2005.
10. Zhou W., Beck B.F. Management and mitigation of sinkholes on karst lands : an overview of practical applications. Environmental Geology. 2008; 55:837-851. DOI: 10.1007/s00254-007-1035-9
11. Roscoe K.H. The influence of strains in soil mechanics. Géotechnique. 1970; 20(2):129-170. DOI: 10.1680/geot.1970.20.2.129
12. Salvati R., Tharp T.M., Capelli G. Conceptual model for geotechnical evaluation of sinkhole risk in the Latium Region. Geotechnical and Environmental Applications of Karst Geology and Hydrology. Lisse, Swets & Zeitlinger, 2001; 163-167.
13. Tharp T.M. Cover-collapse sinkhole formation and soil plasticity. Sinkholes and the Engineering and Environmental Impacts of Karst. 2003; 110-123. DOI: 10.1061/40698(2003)9
14. Anikeev A.V. Falls and sinkholes in karst areas: mechanisms of formation, forecast and risk assessment. Moscow, RUDN, 2017; 328. EDN ZSLFBT. (rus.).
15. Savarensky I.A., Mironov N.A. Guidelines for engineering-geological surveys in areas of karst development. Мoscow, 1995; 167. (rus.).
16. Evtushenko S., Zelenin E. Experimental studies of the interaction of a cross-beam foundation and an inclined base over a karst cavity. Construction and Architecture. 2023; 11(4):8. DOI: 10.29039/2308-0191-2023-11-4-8-8. EDN OIBIJK. (rus.).
17. Barykin A.B. Model studies of deformations of cross-beam foundations on slopes. Structural Mechanics and Calculation of Structures. 2017; 3(272):68-75. EDN YPJJIT. (rus.).
18. Barykin A.B. Experimental-theoretical bases of interaction of cross-beam foundations with the sloping base : dis. … Candidate of Technical Sciences. Volgograd, 2018; 184. EDN SSOIFD. (rus.).
Review
For citations:
Barykin A.B., Barykin B.Yu., Zelenin E.V. Development of the calculation methodology of cross-beam foundation on the sloping base complicated by karst and sinkhole processes. Vestnik MGSU. 2024;19(9):1494-1504. (In Russ.) https://doi.org/10.22227/1997-0935.2024.9.1494-1504