Submitted:
03 December 2024
Posted:
04 December 2024
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Abstract
Keywords:
1. Introduction
2. The Main Part
2.1. Geomorphology
2.2. Climatic Conditions of the Area
2.3. Geological Structure
2.4. Hydrography and Hydrogeological Conditions
2.5. Geological Structure and Tectonics
2.6. Seismicity
2.7. Hazardous Geological Processes
2.8. Geophysical Research
3. Conclusion
References
- Atayev Z.V. Physical-geographical zoning // Atlas of the Republic of Dagestan. Moscow: Roskartografiya, 1999. 19 p.
- Atayev Z.V. Landscapes of High-Mountain Dagestan and their current state // Bulletin of the Dagestan State Pedagogical University. Natural and Exact Sciences. 2007. No. 1. Pp. 90-99.
- Abdulzhalimov A.A., Atayev Z.V., Bratkov V.V. Modern climatic changes in high-mountain landscapes of the North-East Caucasus // Bulletin of the Dagestan State Pedagogical University. Natural and Exact Sciences. 2015. No. 2 (31). Pp. 86-94.
- Atayev Z.V. Response of Dagestan landscapes to modern climate change // Proceedings of the Institute of Geology of the Dagestan Scientific Center of the Russian Academy of Sciences. 2023. No. 3 (94). Pp. 10-14.
- Koronovsky N.V. Agrakhan-Tbilisi-Levantine left-lateral strike-slip zone – the most important structure of the Caucasus region // Reports of the Russian Academy of Sciences. 1994. Vol. 337, No. 1. Pp. 83-89.
- Zonenshain L.P., Kuzmin M.I., Natapov L.M. Tectonics of lithospheric plates of the USSR territory. Moscow: Nedra, 1990.
- McClusky S., BalassanianS., Barka A. and others; Global positioning system constraints on plate kinematics and dynamics in the eastern Mediterranean and Caucasus. J. Geophys. Res. 2000. V. 243. Pр. 673-682.
- Gordon R.G., Jurdi D.M. Cenozoic global plate motions. J. Geophys. Res. 1986. V. 91, № B12. Pр. 389-406.
- Hempton M.K. Constrains on Arabian plate motion and extensional history of the Red Sea. Textonics. 1987. V. 6. Pp. 687-705.
- Babeshko V.A., Evdokimova O.V., Babeshko O.M. Fractal properties of block elements and a new universal modeling method. Doklady Physics. 2021. Vol. 66. No. 8. Pp. 218-222.
- Blinova T. Generalization of the features of the geodynamically unstable zones and their connection with the deep structure low seismic activity region. 19th International Multidisciplinary Scientifc Geoconference SGEM. 2019. Vol. 19. Pp. 813-820.
- Mammadli T.Ya. Determination of Seismogenic Zones for Analysis of Seismotectonic Activity of Deep Faults: Seismic Hazard Assessment for the Territory of Azerbaijan. Geotectonics. 2022. Vol. 56. No. 2. Pp. 191-199.
- Gavrilov Yu.O. Reflection of seismic paleoevents in the Mesozoic-Cenozoic terrigenous strata of the North Caucasus // Lithology and useful minerals. 2017. No. 1. Pp. 3-24.
- Geological and geophysical studies of the deep structure of the Caucasus: Geology and geophysics of the Caucasus: modern challenges and research methods / Ed. V.B. Zaalishvili. Vladikavkaz: GPI VSC RAS, 2017. 619 p.
- Hydrogeology of the USSR. North Caucasus. Volume IX. Ed. A.V. Sidorenko. Moscow: Nedra, 1968. 488 p.
- Kuzin P.S. Classification of rivers and hydrological zoning of the USSR. Leningrad: Gidrometeoizdat, 1960. 455 p.
- BCAR II-7-81*, Construction in seismic areas, 2007.
- SR 47.13330.2018. Summary of building regulations in seismic areas / Seismic building design code. 2018.
- Ananin I.V. Seismicity of the North Caucasus. M. Science, 1977. 148 p.
- Bune V.I., Gorshkov G.P. Seismic zoning of the territory of the USSR. M.: Nauka, 1980. 308 p.
- Seismic susceptibility of the territory of the USSR / Yu.V. Riznichenko, S.S. Seyduzova, R.S. Pronishin and others; Ans. ed. Yu.V. Riznichenko. M.: Nauka, 1979. 192 p.
- Ulomov V.I., Shumilina L.S. Set of maps of the general seismic zoning of the territory of the Russian Federation - MSZ-97. Scale 1:8000000. Explanatory note and list of cities and settlements located in seismic areas. M.: United Institute of Physics of the Earth, 1999. 57 p.
- General catalog of earthquakes on the territory of Dagestan: macroseismic and instrumental data on earthquakes for the period of the 7th century. BC. until 2005 / Russian Acad. sciences, Geophys. service, Dagestan Phil.; [comp. Oh. A. Asmanov and others]; ans. ed. R.A. Levkovic. Makhachkala: Epokha, 2007. 393 p.
- Scholz C.H. The Mechanics of Earthquakes and Faulting. Cambridge: Cambridge University Press, 2019. 493 p.
- Masi A., Chiauzzi L., Nicodemo G., Manfredi V. Correlations between macroseismic intensity estimations and ground motion measures of seismic events. Bulletin of Earthquake Engineering. 2020. https://doi.org/10.1007/s10518-019-00782-2.
- Tibaldi A., Tsereteli N., Varazanashvili O., Babayev G., Barth A., Mumladze T., Bonali F.L., Russo E., Kadirov F., Yetirmishli G., Kazimova S. Active stress field and fault kinematics of the Greater Caucasus. J. of Asian Earth Sciences. 2020. Vol. 188. Pp. 1-18. https://doi.org/10.1016/j.jseaes.2019.104108.
- Pavlenko O.V. Records of local earthquakes as a basis for correct estimates of seismic impacts (on the example of the route of the second Severomuisk tunnel) // O.Y. Schmidt Institute of Physics of the Earth of the Russian Academy of Sciences, 2020. M., No. 2. Pp. 247-263.
- Aptikaev F.F., Erteleva O.O., Tokmulina G.M. Correlation between the Points of Different Seismic Intensity Scales. Seismic Instruments. 2021. Vol. 57 (1). Pp. 75-87. https://doi.org/10.3103/s0747923921010035.
- Zaalishvili V.B., Rogojin E.A. Assessment of Seismic Hazard of Territory on Basis of Modern Methods of Detailed Zoning and Seismic Microzonation. The Open Construction and Building Technology Journal. 2011. Vol. 5. Pp. 30-40.
- Mamaev S.A., Vaskov I.M., Yusupov A.R., Mamaev A.S. Dangerous geological processes and prospects for their prediction in Dagestan // Proceedings of the Institute of Geology of the Dagestan Scientific Center of the Russian Academy of Sciences. 2018. No. 1 (72). Pp. 69-73.
- Idrisov I.A., Magomedov R.A., Mamaev S.A., Huseynova A.S. Discontinuous faults of the Eastern Caucasus according to the analysis of satellite images // Geological and geophysical studies of the deep structure of the Caucasus: geology and geophysics of the Caucasus: modern challenges and research methods. Materials of the international scientific and practical conference. September 22-24, 2017 Vladikavkaz: GPI VSC RAS, 2017. Pp. 429-434.
- Idrisov I.A., Mamaev S.A., Ibaev Zh.G. Features of the spread and development of large landslides in Dagestan // Proceedings of the Institute of Geology of the Dagestan Scientific Center of the Russian Academy of Sciences. 2013. No. 62. Pp. 96-100.
- Kondratieva N.V., Adzhiev A.H., Bekkiev M.Yu., Gedueva M.M., Perov V.F., Razumov V.V., Seinova I.B., Khuchunaeva L.V. Cadastre of mudflow hazard in the south of the European part of Russia. M., Nalchik, 2015. 148 p.
- Kononova N.K. Atmospheric circulation as a factor of natural disasters in the North Caucasus in the XXI century // Geopolitics and ecogeodynamics of regions. 2012. Vol. 8. No. 1-2. Pp. 72-103.
- Ovsyuchenko A.N., Korzhenkov A.M., Larkov A.S., Rogozhin E.A. Preliminary results of studies of active faults and traces of strong paleozoic earthquakes in the Derbent area // Problems of tectonics of continents and oceans. Materials of the LI Tectonic Meeting. M., 2019. Pp. 92-95.
- Resource and estimate standards 65-87 “Engineering surveys for construction. Seismic microdistricting..., 1987.
- Technical report of Engineering and geological surveys on the object “Construction of an overpass on Sheboldaev Street with access to M-29 Kavkaz” in Derbent, Republic of Dagestan. Makhachkala: Institute of Natural and Technical Systems -Transproject LLC, 2022. 82 p.
- Report on seismic microdistricting of the territory of promising development in Makhachkala. Gosstroy of the RSFSR, Stavropol - Engineering and Construction Survey Trust, 1988.
- Recommendations for geophysical work in engineering surveys for construction. M., Production and Research Institute for Engineering Surveys in Construction, Stroyizdat, 1984, 106 p.










| Name | The value of the parameter |
| Average annual air temperature, °С | 7,0 |
| Absolute maximum air temperature, °С | + 35 |
| Absolute minimum air temperature, | -22 |
| Air temperature of the coldest five-day period with probability of 0.98, °С | -17 |
| Air temperature of the coldest five-day period with probability of 0.92, °С | -14 |
| Average annual precipitation, mm | 621 |
| Average date of formation of stable snow cover | 13.XI |
| Average date of snow cover melting | 09.IV |
| The highest decadal height of the snow cover, cm | 33 |
| Average annual wind speed, m/s | 1,0 |
| Average number of fog days per year | 10 |
| №п/п | Name of chemical substances | Unit of measurement | Sanitary rules and regulations 21.4.1074-01 | Content of components, mg/dm3 | |||
| The Avar Koisu river | The Khzanor river | ||||||
| min. | мах. | min. | мах. | ||||
| 1 | Dry residue | mg/dm3 | 1000 (1500) | 190 | 248 | 214 | 312 |
| 2 | Total hardness | mg-eq/L | 7,0 (10) | 2,5 | 3 | 3,5 | 4,0 |
| 3 | Hydrogen index | pH | 6-9 | 7 | 8,7 | 7,2 | 8,7 |
| 4 | Oil products | mg/dm3 | 0,1 | 0 | 0,07 | 0 | 0,05 |
| 5 | Sulfates (SO4) | -«- | 500,0 | 72 | 120 | 48 | 96 |
| 6 | Chlorides (CI) | -«- | 350,0 | 7 | 14 | 7 | 14 |
| 7 | Nitrites (NO2) | -«- | 3 | 0,004 | 0,05 | 0 | 0,02 |
| 8 | Nitrates (NO3) | -«- | 45 | 0 | 1,0 | 0,1 | 2,1 |
| 9 | Ammonium (NH4) | -«- | 2 | 0,04 | 0,45 | 0,06 | 0,25 |
| 10 | Iron (Fe) | -«- | 0,3 (1,0) | 0,05 | 0,23 | 0,02 | 0,2 |
| № | Name of chemical substances | Unit of measurement |
Sanitary rules and regulations 2.1.4.1074-01 |
Content of components, mg/dm3 |
| The Avar Koisu river | ||||
| 1 | Strontium | mg/dm3 | 7,0 | 2,1 |
| 2 | Silver (Ag) | -«- | 0,05 | 0,006 |
| 3 | Cadmium (Cd) | -«- | 0,001 | <0,001 |
| 4 | Cobalt (Co) | -«- | 0,1 | <0,005 |
| 5 | Nickel (Ni) | -«- | 0,1 | 0,004 |
| 6 | Chromium (Cr) | -«- | 0,05 | <0,005 |
| 7 | Copper (Cu) | -«- | 1,0 | 0,004 |
| 8 | Zinc (Zn) | -«- | 5,0 | 0,054 |
| 9 | Lead (Pb) | -«- | 0,03 | <0,005 |
| 10 | Manganese (Mn) | -«- | 0,1(0,5) | <0,002 |
| 11 | Boron (B) | -«- | 0,5 | 0,05 |
| 12 | Arsenic (As) | -«- | 0,05 | <0,002 |
| 13 | Mercury (Hg) | -«- | 0,0005 | <0,0005 |
| 14 | Selenium (Se) | -«- | 0,01 | <0,001 |
| 15 | Iodine (J) | -«- | - | <0,50 |
| 16 | Bromine (Br) | -«- | 0,2 | <0,20 |
| 17 | Fluoride (F) | -«- | 1,5 | <0,27 |
| 18 | Molybdenum (Mo) | -«- | 0,25 | 0,001 |
| 19 | Beryllium (Be) | -«- | 0,0002 | <0,0002 |
| Location (km +) | Length along the existing highway (m) | Maximum height (m) | Dimensions in plan | Size of the stone material (m) | Type of hazardous process | Note | |
| Beginning | The end | ||||||
| 62+510 | 62+570 | 60 | 150 | 200х60 | up to 3.5 | scree | current |
| 63+160 | 63+258 | 98 | 80 | 150х100 | up to 1,5 | scree, avalanche | -«- |
| 63+630 | 63+665 | 35 | 100 | 300х35 | up to 1,5 | scree | -«- |
| 63+810 | 63+845 | 35 | 280 | – | up to 1,0 | mudflow | -«- |
| 66+340 | 66+360 | 20 | 15 | 140х20 | up to 1,5 | scree, avalanche | -«- |
| 69+290 | 69+430 | 140 | 35 | 140х50 | up to 2,0 | scree | -«- |
| 69+625 | 69+750 | 125 | 20 | 125х65 | up to 2,0 | scree | -«- |
| 71+100 | 71+160 | 60 | 80 | 160х60 | up to 3,5 | scree, avalanche | -«- |
| 72+950 | 73+100 | 150 | 40 | 200х150 | up to 3,0 | scree | -«- |
| 74+100 | 74+155 | 55 | 25 | 60х40 | up to 1,0 | scree | -«- |
| 74+965 | 75+045 | 80 | 15 | 80х40 | up to 4,0 | scree | -«- |
| 75+300 | 75+330 | 30 | 15 | 50х30 | up to 1,5 | scree | -«- |
| 77+780 | 77+880 | 100 | 20 | 100х45 | up to 1,5 | scree, avalanche | -«- |
| 78+400 | 78+450 | 50 | 25 | 50х90 | up to 1,0 | scree | -«- |
| 81+150 | 81+220 | 70 | 30 | 70х100 | – | avalanche | -«- |
| 81+420 | 81+600 | 180 | 30 | 180х300 | up to 1,0 | scree, avalanche | -«- |
| 82+260 | 82+300 | 40 | 25 | 40х50 | up to 1,0 | scree | -«- |
| 82+360 | 82+400 | 40 | 20 | 40х80 | up to 1,0 | scree | -«- |
| 82+800 | 82+850 | 50 | 20 | 50х70 | up to 1,0 | scree | -«- |
| 88+400 | 88+420 | 20 | 30 | – | – | avalanche | -«- |
| 89+025 | 89+130 | 105 | 35 | 105х60 | up to 1,5 | scree | -«- |
| 90+800 | 90+875 | 75 | 40 | 75х60 | up to 1,5 | scree | -«- |
| 91+100 | 91+140 | 40 | 25 | 40х60 | up to 1,0 | scree | -«- |
| 91+300 | 91+340 | 40 | 30 | 40х70 | up to 2,0 | scree, avalanche | -«- |
| 93+200 | 93+220 | 20 | 10 | 20х20 | up to 1,0 | scree | -«- |
| 96+580 | 96+615 | 35 | 10 | 35х50 | up to 1,0 | scree | -«- |
| 97+555 | 97+600 | 45 | 25 | 45х55 | up to 1,0 | scree | -«- |
| 98+390 | 98+410 | 20 | 15 | 20х10 | up to 1,0 | scree | -«- |
| 100+340 | 100+370 | 30 | 20 | 30х120 | up to 2,0 | scree | -«- |
| 100+520 | 100+540 | 20 | 20 | – | up to 1,0 | scree, mudflow | -«- |
| 100+750 | 100+780 | 30 | 10 | 30х40 | up to 1,0 | scree | -«- |
| 100+860 | 100+935 | 75 | 25 | 75х120 | up to 2,0 | scree | -«- |
| 101+500 | 101+550 | 50 | 15 | 50х30 | up to 1,0 | scree | -«- |
| 102+250 | 102+280 | 30 | 20 | 30х50 | up to 1,0 | scree | -«- |
| 104+250 | 104+270 | 30 | 20 | 30х50 | up to 1,0 | scree | -«- |
| 107+700 | 107+730 | 30 | 20 | 30х50 | up to 1,0 | scree | -«- |
| 109+980 | 110+040 | 60 | 10 | 60х10 | up to 1,0 | scree | -«- |
| 110+430 | 110+450 | 20 | 40 | – | – | mudflow | -«- |
| 111+000 | 111+010 | 10 | 15 | 10х25 | up to 1,0 | scree | -«- |
| 113+105 | 113+225 | 120 | 15 | 120х40 | up to 1,5 | scree | -«- |
| 113+240 | 113+260 | 20 | 80 | – | up to 1,0 | scree, mudflow | -«- |
| 113+750 | 113+800 | 50 | 15 | 50х20 | up to 1,0 | scree | -«- |
| 114+200 | 114+400 | 200 | 50 | 200х75 | – | landslide | -«- |
| 116+510 | 116+610 | 100 | 20 | 100х60 | up to 2,0 | scree | -«- |
| 116+750 | 116+770 | 20 | 20 | 20х25 | up to 1,0 | scree | -«- |
| 117+145 | 117+220 | 75 | 35 | 75х90 | up to 1,0 | scree | -«- |
| 117+800 | 117+865 | 65 | 25 | 65х50 | up to 1,5 | scree | -«- |
| 118+100 | 118+340 | 240 | 15 | 240х55 | up to 2,0 | scree | -«- |
| 119+615 | 119+660 | 45 | 20 | 45х25 | up to 2,5 | scree | -«- |
| 119+710 | 119+735 | 25 | 40 | 25х90 | up to 2,0 | scree | -«- |
| 121+430 | 121+450 | 20 | 15 | 20х35 | up to 2,0 | scree | -«- |
| 121+820 | 121+840 | 20 | 10 | 20х40 | up to 1,5 | scree | -«- |
| 122+040 | 122+200 | 160 | 40 | 120х85 | – | landslide | -«- |
| 122+240 | 122+300 | 60 | 15 | 60х75 | up to 2,0 | scree | -«- |
| 122+410 | 122+540 | 130 | 40 | 130х30 | up to 3,5 | scree, avalanche | -«- |
| 122+835 | 122+985 | 150 | 25 | 150х75 | up to 6,0 | scree | -«- |
| 123+630 | 123+720 | 90 | 15 | 90х85 | up to 4,0 | scree | -«- |
| 124+090 | 124+135 | 45 | 10 | 45х60 | up to 5,0 | scree | -«- |
| 124+630 | 124+645 | 15 | 15 | 15х25 | up to 1,5 | scree | -«- |
| 124+690 | 124+700 | 10 | 80 | – | – | mudflow | -«- |
| 125+090 | 125+160 | 70 | 30 | 70х20 | up to 1,5 | scree | -«- |
| 125+415 | 125+430 | 15 | 20 | 15х25 | up to 1,0 | scree | -«- |
| 125+850 | 125+875 | 25 | 20 | 25х40 | up to 1,0 | scree | -«- |
| 127+860 | 127+880 | 20 | 10 | 20х35 | up to 1,0 | scree | -«- |
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