GULLY MODELING FOR FOREST RECLAMATION PURPOSES
- Land Reclamation, Recultivation, and Land Protection
Purpose: the technology of laying geocomposite bentonite mats with the creation of an anti-filtration lining of increased reliability on the main canal section made under difficult conditions (in the presence of karst and suffusion phenomena) is considered.
Materials and methods. The theoretical basis of the research is the indicators of physical, mechanical and technical characteristics of bentonite mats of various manufacturing companies. The practical component is flow charts, diagrams and technology for the work performance in natural conditions on the main canal section.
Results and discussion: to reduce the filtration coefficient of anti-filtration coatings it is advisable to use two- and three-layer materials, which were used in the reconstruction of the Donskoy main canal section instead of polymeric materials, according to the results of the feasibility study. The work on laying sodium bentonite mats was carried out in difficult conditions after stopping the water supply, when there was an intense slope sloughing, and the water level in the canal was set below the groundwater level in the canal zone. At the same time, the canal was periodically cleaned with a dredger to remove the swollen soil along the canal bottom, and on the slopes – excavation with a dragline excavator, followed by transportation and soil storage in the slurry dump maps. Further, the work was carried out on maps with pools, separated by dams, where map sections were drained by a mobile pumping station.
Conclusions: the use of the developed technology for canal cleaning and laying roll materials based on bentonite made it possible to reconstruct successfully the most dangerous canal sections. The introduction of a structural and technical solution in the form of a combined screen design ensures almost complete water imperviousity of the bottom and slopes of the canal.
doi: 10.31774/2712-9357-2021-11-3-270-283
anti-filtration screen, main canal, filtration, bentonite mat, reconstruction
Kosichenko Yu. M., Baev O. A., Ishchenko A. V. The technology of laying bentonite mats on the canal under difficult conditions of work performance // Land Reclamation and Hydraulic Engineering [Electronic resource]. 2021. Vol. 11, no 3. P. 270–283. URL: http:www.rosniipm-sm.ru/en/article?n=1227 (date of access: 18.08.2021). doi:10.31774/2712-9357-2021-11-3-270-283
1. Solskiy S.V., Orlova N.L., 2010. Perspektivy i problemy primeneniya v stroitel'stve gruntovykh GTS sovremennykh geosinteticheskikh materialov [Prospects and problems of modern geosynthetic materials application in ground hydroengineering structures]. Izvestiya VNIIG im. B. Ye. Vedeneeva [Bull. of VNIIG named after B.E. Vedeneev], vol. 260, pp. 61-68. (In Russian).
2. Solskiy S.V., Bykovskaya S.Ya., 2021. Analiz osnovnykh prichin narusheniy protivofil'tratsionnykh elementov iz geomembran na gidrotekhnicheskikh sooruzheniyakh [Analysis of the main causes of structural failures in impervious geomembrane elements in hydraulic structures]. Gidrotekhnicheskoe stroitel'stvo [Hydraulic Engineering], no. 2, pp. 33-40. (In Russian).
3. Solsky S.V., Novikaya O.I., Kubetov S.V., 2014. Evaluation of the effectiveness of drainage and antifiltration devices of concrete dams on a rocky base (on the example of the Bureyskaya HPP). Magazine of Civil Engineering, no. 4, pp. 28-38.
4. Kozlov K.D., Guryev A.P., Khanov N.V., 2014. Gidravlicheskie issledovaniya pokrytiya iz geokompozitnogo materiala [Hydraulic studies of the coating from geocomposite material]. Prirodoobustroystvo [Environmental Engineering], no. 5, pp. 80-86. (In Russian).
5. Glagovskiy V.B., Solskiy S.V., Lopatina N.V., 2014. Geosinteticheskie materialy v gidrotekhnicheskom stroitel'stve [Geosynthetic materials in hydraulic engineering construction]. Gidrotekhnicheskoe stroitel'stvo [Hydraulic Engineering], no. 9, pp. 23-27. (In Russian).
6. Sainov M.P., Zverev A.O., 2018. Protivofil'tratsionnye elementy gruntovykh plotin iz geosinteticheskikh materialov [Anti-filtration elements of ground dams from geosynthetic materials]. Innovatsii i investitsii [Innovations and Investments], no. 1, pp. 202-210. (In Russian).
7. Kosichenko Yu.M., Ugrovatova E.G., Baev O.A., 2015. Obosnovanie raschetnykh zavisimostey fil'tratsionnykh soprotivleniy konstruktsiy oblitsovok kanalov [Justification of the calculated dependences of seepage resistances of the canal lining structures]. Izvestiya VNIIG im. B. Ye. Vedeneeva [Bull. of VNIIG named after B.E. Vedeneev], vol. 278, pp. 35-46. (In Russian).
8. Ishchenko A.V., 2007. Obespechenie fil'tratsionnoy bezopasnosti i effektivnosti protivofil'tratsionnykh ustroystv gidrotekhnicheskikh sooruzheniy: monografiya [Ensuring Filtration Safety and Efficiency of Impervious Devices of Hydraulic Engineering Structures: monograph]. Rostov-on-Don, SKNTs VSh Publ., 256 p. (In Russian).
9. Bandurin M.A., Bandurin V.A., 2013. Chislennoe modelirovanie ob"emnogo proti-vofil'tratsionnogo geotekstil'nogo pokrytiya s izmenyaemoy vysotoy rebra [Numerical modeling of volumetric impervious geotextile cover with variable rib height]. Inzhenerny vestnik Dona [Don Engineering Bull.], vol. 27, no. 4, p. 46. (In Russian).
10. Abdrazakov F.K., Rukavishnikov A.A., 2019. Intensifikatsiya meliorativnogo proizvodstva putem sovershenstvovaniya tekhnologiy rekonstruktsii i stroitel'stva orositel'nykh kanalov [Intensification of reclamation production by improving technologies for the reconstruction and construction of irrigation canals]. Melioratsiya i vodnoe khozyaystvo [Irrigation and Water Management], no. 1, pp. 6-9. (In Russian).
11. Abdrazakov F.K., Rukavishnikov A.A., 2018. Intensifikatsiya meliorativnogo proizvodstva putem sovershenstvovaniya tekhnologiy rekonstruktsii i stroitel'stva orositel'nykh kanalov Saratovskoy oblasti [Intensification of reclamation production by improving technologies for the reconstruction and construction of irrigation canals in Saratov region]. Agrarnyy nauchnyy zhurnal [Agrarian Scientific Journal], no. 10, pp. 48-51. (In Russian).
12. Kosichenko Yu.M., Baev O.A., 2020. Efficiency and durability of the linings channels of geosynthetics. Magazine of Civil Engineering, 96(4), pp. 42-59, DOI: 10.18720/MCE.96.4.
13. STO 87299967.202-2020. Po primeneniyu bentonitosoderzhashchikh materialov proizvodstva BentIzol. Standart organizatsii [On the use of bentonite-containing materials produced by BentIzol. Organization standard]. Kurgan, 2020, 22 p. (In Russian).
14. Ilyina O.A., Vedernikova M.V., Biryukov D.V., Lundin D.S., Proskurin D.V., 2021. Materialy i tekhnologii dlya radikal'nogo uluchsheniya gidroizoliruyushchikh kharakteristik khranilishch RAO [Materials and technologies for radical improvement of radioactive waste storage facilities waterproofing capacities]. Radioaktivnye otkhody [Radioactive Waste], no. 1(14), pp. 51-62, DOI: 10.25283/2587-9707-2021-1-51-62. (In Russian).