TOMDITOV-BELTOV MINTAQASIDA FLYUID-O‘TKAZUVCHI ZONALARNI AJRATISHNING GEOELEKTRIK VA GEOMAGNIT MEZONLARI
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Maqolada Tomditov - Beltov tog‘-kon mintaqasida qobiq flyuid-ma’danlashuv tizimlarini aniqlashda geoelektrik va geomagnit
ma’lumotlardan foydalanishning ilmiy-metodik asoslari tizimlashtiriladi. Geoelektrik anomaliyalar flyuidga to‘yingan darzlangan
muhit, sulfidlanish yoki grafitlanish bilan bog‘liq bo‘lishi mumkinligi, biroq gil minerallari, mineral suvlar va litologik omillar
ham past solishtirma elektr qarshilikni yuzaga keltirishi mumkinligi hisobga olinadi. Geomagnit anomaliyalar esa magnetitli jinslar
va intruziv tanalarni, shuningdek gidrotermal o‘zgarish natijasida magnit minerallarining hosil bo‘lishi yoki parchalanishini
bilvosita aks ettirishi mumkin.
1. McCuaig T.C., Beresford S., Hronsky J.M.A. Translating the mineral systems approach into an effective exploration targeting system. Ore
Geology Reviews, 2010, 38(3), 128–138.
2. Groves D.I., Goldfarb R.J., Gebre-Mariam M., Hagemann S.G., Robert F. Orogenic gold deposits: A proposed classification in the context
of their crustal distribution and relationship to other gold deposit types. Ore Geology Reviews, 1998, 13, 7–27.
3. Groves D.I., Santosh M., Goldfarb R.J., Zhang L. Structural geometry of orogenic gold deposits: Implications for exploration of world-class
and giant deposits. Geoscience Frontiers, 2018, 9(4), 1163–1177.
4. Groves D.I., Santosh M., Zhang L. A scale-integrated exploration model for orogenic gold deposits based on a mineral system approach.
Geoscience Frontiers, 2020, 11(3), 719–738.
5. Goldfarb R.J., Groves D.I. Orogenic gold: Common or evolving fluid and metal sources through time. Lithos, 2015, 233, 2–26.
6. Yardley B.W.D., Cleverley J.S. The role of metamorphic fluids in the formation of ore deposits. Geological Society, London, Special
Publications, 2015, 393, 117–134.
7. Pokrovski G.S., Akinfiev N.N., Borisova A.Y., Zotov A.V., Kouzmanov K. Sulfur radical species form gold deposits on Earth. Proceedings
of the National Academy of Sciences, 2015, 112, 13484–13489.
8. Prokofiev V.Y., Naumov V.B. Physicochemical Parameters and Geochemical Features of Ore-Forming Fluids for Orogenic Gold Deposits
Throughout Geological Time. Minerals, 2020, 10(1), 50.
9. Jin S., Sheng Y., Liu C., Wei W., Ye G., Jing J., Zhang L., Dong H., Yin Y., Xie C. A Review of Relationship between the Metallogenic
System of Metallic Mineral Deposits and Lithospheric Electrical Structure: Insight from Magnetotelluric Imaging. Minerals, 2024, 14(6),
541.
10. Clark D.A. Magnetic effects of hydrothermal alteration in porphyry copper and iron-oxide copper–gold systems: A review. Tectonophysics,
2014, 624–625, 46–65.
11. Drew L.J., Berger B.R., Kurbanov N.K. Geology and structural evolution of the Muruntau gold deposit, Kyzylkum Desert, Uzbekistan. Ore
Geology Reviews, 1996, 11(4), 175–196
12. Kempe U., Graupner T., Seltmann R., de Boorder H., Dolgopolova A., Zeylmans van Emmichoven M. The Muruntau gold deposit
(Uzbekistan) – A unique ancient hydrothermal system in the southern Tien Shan. Geoscience Frontiers, 2016, 7(3), 495–528.
13. Mukhin P., Mirkamalov R., Seltmann R. Structure of the Muruntau gold ore region in the Kyzyl-Kum desert (Central Asia). International
Journal of Earth Sciences, 2023, 112, 659–683.
14. Goipov A.B., Akhmadov Sh.I., Yusupov V.R. Characteristics of geophysical fields and geophysical signs of mineralization in the Bukantau
Mountains in the Southern Tien-Shan. ANAS Transactions, Earth Sciences, 2024, 2, 77–91.
15. Goipov A.B., Ashurov A.U., Atabaev D.Kh. Interpretation of airborne electromagnetic survey data in gold ore prospecting and geodynamic
zoning of the Bukantau Mountains (Southern Tien Shan). Geophysical Research, 2025, 26(1), 79–97.
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