Preview

LITHOSPHERE (Russia)

Advanced search

Morphology of trap sills near kimberlites

https://doi.org/10.24930/1681-9004-2023-23-4-579-588

Abstract

Research subject. Trap sills of the Daldin-Alakit diamond-bearing region of western Yakutia. Aim. To establish the reason for the influence of sedimentary rocks containing kimberlite diatremes on the introduction of basite magma that forms trap sills and the possibility of using the morphology of sills as a search signs for kimberlites. Materials and methods. Sections of trap sills near kimberlites, their structure, petrographic and petrochemical composition of dolerites performing sills were studied. Results. During the formation of kimberlite diatremes, accompanied by pulsating explosions shifting to the top, a significant compaction of the sedimentary rocks containing kimberlites occurs, associated with thermoelastic stress fields. This process leads to the formation of zones near kimberlites, which are difficult to penetrate for relatively viscous, protocrystalline-enriched basite magmas. When such magmas are introduced, the latter before kimberlites form torus-shaped shafts with a sharply increasing power in intrusions. Sometimes magma, flowing around kimberlites, creates “trappless windows”, occasionally splitting into low-power “tongues”. Quite frequently, before kimberlites, sills crumple, acquiring a wave-like shape. Conclusion. All the listed morphological features of traps arise during the introduction of magma, thus providing an indirect method of searching for kimberlites, particularly during the areal drilling of territories covered by continuous trap fields conducted by ALROSA in Western Yakutia.

About the Authors

M. D. Tomshin
Institute of Diamond and Precious Metals Geology, SB RAS
Russian Federation

Mikhail D. Tomshin.

39 Lenin av., Yakutsk 677000, Sakha Republic



S. S. Gogoleva
Institute of Diamond and Precious Metals Geology, SB RAS
Russian Federation

Sargylana S. Gogoleva.

39 Lenin av., Yakutsk 677000, Sakha Republic



References

1. Gornshtein D.K., Mokshantsev K.B., Petrov A.F. (1976) Faults of the eastern part of the Siberian platform. Fault tectonics of the YAASSR territory. Yakutsk, YaFAN Publishing House, 10-63. (In Russ.)

2. Konstantinov K.M., Mishenin S.G., Tomshin M.D., Kornilova V.P., Koval'chuk O.E. (2014) Petromagnetic inhomo-geneities of Permo-Triassic traps of the Daldino-Alakit diamond-bearing region (Western Yakutia). Lithosphere Russia, (2), 17-98. (In Russ.)

3. Kopylova A.G., Tomshin M.D. (2011) Geochemistry of traps in the eastern part of the Tunguska syneclise. Otech. Geologiya, (5), 80-88. (In Russ.)

4. Korobkov I.G., Evstratov L.A., Mil'shtein E.D. (2013) Basite volcano structures of diamond-bearing areas of the eastern side of the Tunguska syneclise. Tomsk, 270 p. (In Russ.)

5. Kostrovitskii S.I. (1976) Physical conditions, hydraulics and kinetics of filling kimberlite pipes. Novosibirsk, Nauka Publ., 96 p. (In Russ.)

6. Kostrovitskii S.I., Spetsius Z.V., Yakovlev D.A., Fon-der-Flaass G.S., Suvorova L.I., Bogush I.N. (2015) Atlas of primary diamond deposits of the Yakut kimberlite province. Mirny, MGT Publ., 480 p.

7. Kryuchkov L.I., Nikulin V.I., Krasinets S.S., Lelyukh M.I., Lyubimenko V.F., Somov S.V., Fon-der-Flaass G.S. (1991) Localization conditions and structural features of the kimberlite body in the Aikhal district. Geol. Geofiz., (5), 61-69. (In Russ.)

8. Kurszlaukis S., Lorenz V. (2000) Volcanology of the kimberlitic Gibeon Volcanic Field, southern Namibia. Communs Geol. Surv. Namibia, 12, 403-409.

9. Kutolin V.A. (1972) Problems of petrochemistry and petrology of basites. Novosibirsk, Nauka Publ., 208. (In Russ.)

10. Makarov A.S. (1986) Differentiated traps of P2-T1 age in the Alakit-Markha kimberlite field. Dokl. AN SSSR, 290(4), 940-944. (In Russ.)

11. Milashev V.A. (1984) Explosion tubes. Leningrad, Nedra Publ., 268 p. (In Russ.)

12. Mpho Ndebele. (2020) Internal geology and emplacement processes of Kimberlites, Case Study from the Tsabong Kimberlite Field, Botswana. Geosciences, master's level (120 credits), 66 p.

13. Nekrasov I.Ya., Gorbachev N.S. (1978) On the possible mechanism of kimberlite formation. Dokl. AN SSSR, 240(1), 181-184. (In Russ.)

14. Nikishov K.N. (1984) Petrological-mineralogical model of the kimberlite process. Moscow, Nauka Publ., 213. (In Russ.)

15. Nikolaev V.A., Dolivo-Dobrovol'skii V.V. (1961) Fundamentals of the theory of magmatism and metamorphism processes. Moscow, Gosgeoltehizdat Publ., 338 p. (In Russ.)

16. Nikulin V.I., Lelyukh M.I., Fon-der-Flaass G.S. (2001) Diamond Prognostics. Irkutsk, 317 p. (In Russ.)

17. Oleinikov B.V., Savvinov V.T., Pogudina M.A. (1973) The main types of trap intrusions of the Middle Paleozoic and Upper Paleozoic-Lower Mesozoic trap formations of the junction zone of the Tunguska and Vilyui syneclises. Geo logy and geochemistry of the basites of the eastern part of the Siberian platform. Moscow, 4-75. (In Russ.)

18. Tomshin M.D., Kopylova A.G., Tyan O.A. (2005) Petro-chemical diversity of traps in the eastern periphery of the Tunguska syneclise. Geol. Geofiz., 46(1), 72-82. (In Russ.)

19. Tomshin M.D., Lelyukh M.I., Mishenin S.G., Suntsova S.P., Kopylova A.G., Ubinin S.G. (2001) Scheme of development of trap magmatism of the eastern side of the Tunguska syneclise. Otech. Geologiya, (5), 19-24. (In Russ.)

20. Tomshin M.D., Vasil'eva A.E., Kopylova A.G. (2021) Traps of Siberia - duration of magmatic events. Petrology and geodynamics of geological processes. Irkutsk, 161-164. (In Russ.)

21. Zhabin A.G., Surina N.P. (1970) Petrology of dykes, sills and explosion tubes of the Maymech-Kotuy province. Moscow, Nauka Publ., 204. (In Russ.)


Review

For citations:


Tomshin M.D., Gogoleva S.S. Morphology of trap sills near kimberlites. LITHOSPHERE (Russia). 2023;23(4):579-588. (In Russ.) https://doi.org/10.24930/1681-9004-2023-23-4-579-588

Views: 421


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1681-9004 (Print)
ISSN 2500-302X (Online)