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The response of fluid-saturated reservoirs to lunisolar tides: Part 1. Background parameters of tidal components in ground displacements and groundwater level

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Abstract

The first part of this work is dedicated to the response of different-age structures to lunisolar tides, which can be considered as a sounding signal for monitoring the state of fluid-saturated reservoirs. The complex approach to processing the data obtained at the testing sites of the Institute of Geosphere Dynamics of the Russian Academy of Sciences, Institute of Geophysics of the National Academy of Sciences of Ukraine, and KIEV station of the IRIS seismic network is applied for recognizing the tides against the hydrogeological, barometric, and seismic series. The comparative analysis of the experimental and theoretical values of the diurnal and semidiurnal tidal components in the time series of ground displacements is carried out. The tidal variations in the groundwater level are compared with the tidal components revealed in the ground displacement of the different-age structure of the Moscow Basin and Ukrainian Shield, which are parts of the East European artesian region. The differences in the tidal responses of the groundwater level and ground displacement probably suggest that the state of the massif is affected by certain additional factors associated, e.g., with the passage of earthquake-induced seismic waves and the changes in the hydrogeodynamic environment.

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Correspondence to E. M. Gorbunova.

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Original Russian Text © A.N. Besedina, E.A. Vinogradov, E.M. Gorbunova, N.V. Kabychenko, I.S. Svintsov, P.I. Pigulevskiy, V.K. Svistun, S.V. Shcherbina, 2015, published in Fizika Zemli, 2015, No. 1, pp. 73–82.

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Besedina, A.N., Vinogradov, E.A., Gorbunova, E.M. et al. The response of fluid-saturated reservoirs to lunisolar tides: Part 1. Background parameters of tidal components in ground displacements and groundwater level. Izv., Phys. Solid Earth 51, 70–79 (2015). https://doi.org/10.1134/S1069351315010036

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  • DOI: https://doi.org/10.1134/S1069351315010036

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