1887

Abstract

Summary

Nowadays the increase in accumulation of mining waste, is one of the most urgent problems for the mining sector. One of the important issues for engineering geology is their typification and classification as there is still no one generally accepted classification, which brings some uncertainties in soils study. This paper presents an analysis of the nowadays available classifications of artificial soils and concludes analysis of important factors that should be taken into account when typing artificial soils for making decisions in the field of engineering geology.

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/content/papers/10.3997/2214-4609.202051139
2020-09-14
2024-04-25
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References

  1. АфонинА.П., ДудлерИ.В., ЗиангировР.С., ЛычкоЮ.М., ОгородниковаЕ.Н., СпиридоновД.В., ЧернякЭ.Р., ДроздовД.С.
    [1990] Классификация техногенных грунтов. Инженерная геология, 1, 115–121.
    [Google Scholar]
  2. АбелевЮ.М., КрутовВ.И.
    [1962] Возведение зданий и сооружений на насыпных грунтах. Госстройиздат, Москва.
    [Google Scholar]
  3. ГОСТ 25100-2011
    ГОСТ 25100-2011. [2013] Грунты. Классификация (с Поправками). Стандартинформ, Москва.
    [Google Scholar]
  4. Минприроды России
    Минприроды России [2019] Государственный доклад «О состоянии и об охране окружающей среды Российской Федерации в 2018 году». «Кадастр», Москва.
    [Google Scholar]
  5. КотловФ.В.
    [1978] Изменение геологической среды под влиянием деятельности человека, Недра, Москва.
    [Google Scholar]
  6. ЛычкоЮ.М.
    [1983] Инженерно-геологическая характеристика некоторых типов техногенных грунтов. Инженерная геология, 1.
    [Google Scholar]
  7. ОгородниковаЕ.Н., НиколаеваС.К.
    [2014] Классификация техногенных грунтов. Сергеевские чтения. Развитие научных идей академика Е.М. Сергеева на современном этапе, 16. РУДН, Москва. С. 194–198
    [Google Scholar]
  8. ОсиповВ.И.
    [1979] Природа прочностных и деформационных свойств глинистых пород. Изд. МГУ, Москва.
    [Google Scholar]
  9. ПашкевичМ.А.
    [1999] Эколого-экономическая оценка риска воздействия техногенных массивов на окружающую среду. Горный информационно- аналитический бюллетень, 91–93.
    [Google Scholar]
  10. [2001] Негативное воздействие техногенных массивов на природную среду. Горный информационно-аналитический бюллетень, 154–156.
    [Google Scholar]
  11. СергеевЕ. М., ГолодковскаяГ. А., ЗиангировР. С.
    [1983] Грунтоведение. Изд-во МГУ, Москва.
    [Google Scholar]
  12. ХазановМ.И.
    [1975] Искусственные грунты, их образование и свойства. Наука, Москва.
    [Google Scholar]
  13. IavidE.I., KondakovaV.N., PolyakovV.I. and AbakumovE.V.
    [2018] Diversity and main properties of soils of the Gronfjord area (Svalbard archipelago). Czech Polar Reports8: 43–59.
    [Google Scholar]
  14. PomortsevO A, PomortsevaA A, TrofimtsevYu I
    [2019] Cyclic Organization of Geological Environment: Permafrost Zone of Yakutia IOP Conf. Series: Earth and Environmental Science272 (2019) 022059 doi:10.1088/1755‑1315/272/2/022059.
    https://doi.org/10.1088/1755-1315/272/2/022059 [Google Scholar]
  15. AbelevYU.M., KrutovV.I.
    [1962] Vozvedenie zdanij i sooruzhenij na nasypnyh gruntah (in Russian). Gosstrojizdat, Moscow.
    [Google Scholar]
  16. AfoninA.P., DudlerI.V., ZiangirovR.S., LychkoYu.M., OgorodnikovaE.N., SpiridonovD.V., ChernyakE. R., DrozdovD.S.
    [1990] Klassifikaciya tekhnogennyh gruntov (in Russian)Inzhenernaya geologiya, 1, 115–121.
    [Google Scholar]
  17. GOST 25100-2011
    GOST 25100-2011. [2013] Grunty. Klassifikatsiya (s Popravkami) (in Russian). Standartinform, Moskva.
    [Google Scholar]
  18. Minprirody Rossii
    Minprirody Rossii [2019] Gosudarstvennyj doklad «O sostoyanii i ob ohrane okruzhayushchej sredy Rossijskoj Federacii v 2018 godu». «Kadastr», Moscow.
    [Google Scholar]
  19. HazanovM.I.
    [1975] Iskusstvennye grunty, ih obrazovanie i svojstva (in Russian). Nauka, Moscow.
    [Google Scholar]
  20. KotlovF.V.
    [1978] Izmenenie geologicheskoj sredy pod vliyaniem deyatel’nosti cheloveka (in Russian). Nedra, Moscow.
    [Google Scholar]
  21. LychkoYU.M.
    [1983] Inzhenerno-geologicheskaya harakteristika nekotoryh tipov tekhnogennyh gruntov (in Russian). Inzhenernaya geologiya, 1.
    [Google Scholar]
  22. OgorodnikovaE.N., NikolaevaS.K.
    [2014] Klassifikaciya tekhnogennyh gruntov (in Russian). Sergeevskie chteniya. Razvitie nauchnyh idej akademika E.M. Sergeeva na sovremennom etape, 16, 194–198.
    [Google Scholar]
  23. OsipovV.I.
    [1979] Priroda prochnostnyh i deformacionnyh svojstv glinistyh porod (in Russian). Izd. MGU, Moscow.
    [Google Scholar]
  24. PashkevichM.A.
    [1999] Ekologo-ekonomicheskaya ocenka riska vozdejstviya tekhnogennyh massivov na okruzhayushchuyu sredu (in Russian). Gornyj informacionno-analiticheskij byulleten’, 91–93.
    [Google Scholar]
  25. [2001] Negativnoe vozdejstvie tekhnogennyh massivov na pri-rodnuyu sredu (in Russian). Gornyj informacionno-analiticheskij byulleten’, 154–156.
    [Google Scholar]
  26. SergeevE. M., GolodkovskayaG. A., ZiangirovR. S.
    [1983] Gruntovedenie (in Russian). Izdvo MGU, Moscow.
    [Google Scholar]
  27. IavidE.I., KondakovaV.N., PolyakovV.I. and AbakumovE.V.
    [2018] Diversity and main properties of soils of the Gronfjord area (Svalbard archipelago). Czech Polar Reports8: 43–59.
    [Google Scholar]
  28. PomortsevO A, PomortsevaA A, TrofimtsevYu I
    [2019] Cyclic Organization of Geological Environment: Permafrost Zone of Yakutia IOP Conf. Series: Earth and Environmental Science272 (2019) 022059 doi:10.1088/1755‑1315/272/2/022059.
    https://doi.org/10.1088/1755-1315/272/2/022059 [Google Scholar]
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