Search Results - "Shikhov, A. N."

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  1. 1

    Forecasting mesoscale convective systems in the Urals using the WRF model and remote sensing data by Kalinin, N. A., Shikhov, A. N., Bykov, A. V.

    Published in Russian meteorology and hydrology (2017)
    “…The results are presented ofmodeling the formation and evolution ofmesoscale convective systems (MCS) accompanied by severe weather events over the territory…”
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    Journal Article
  2. 2

    Simulation of snow accumulation and melt in the Votkinsk Reservoir catchment using the WRF-ARW model by Kalinin, N. A., Shikhov, A. N., Sviyazov, E. M.

    Published in Russian meteorology and hydrology (01-11-2015)
    “…Proposed is the method of computation of snow accumulation using the prognostic fields of precipitation based on the WRF-ARW mesoscale numerical model of the…”
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  3. 3

    Satellite-Based Mapping of the Negative Impact of Gold Mining Enterprises on the Natural Environment of the Cryolithozone (Using the Example of Magadan Oblast) by Ilyushina, P. G., Shikhov, A. N., Makarieva, O. M.

    Published in Izvestiya. Atmospheric and oceanic physics (01-12-2023)
    “…Gold mining at ore and alluvial deposits substantially negatively impacts the natural environment, in particular, by land degradation and the contamination of…”
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  4. 4

    Spatial and Temporal Distribution of Windthrows in the Forest Zone of Western Siberia in 2001–2020 by Shikhov, A. N., Chernokulsky, A. V., Azhigov, I. O.

    Published in Cosmic research (01-12-2022)
    “…The spatial and temporal distribution of windthrows in the forest zone of Western Siberia for the period 2001–2020 is considered. Windthrow data are obtained…”
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  5. 5

    Object-Oriented Estimation of the Short-Term Forecast of Convective Hazardous Weather Events in Perm Krai by the WRF Model by Kalinin, N. A., Bykov, A. V., Shikhov, A. N.

    Published in Atmospheric and oceanic optics (01-08-2022)
    “…Estimating the accuracy of forecasts of convective hazardous weather events according to the WRF model by an example of Perm krai and adjacent regions in the…”
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  6. 6

    Estimating the accuracy of the very heavy snowfall forecast in the Urals by the WRF model by Kalinin, N. A., Vetrov, A. L., Pishchal’nikova, E. V., Sviyazov, E. M., Shikhov, A. N.

    Published in Russian meteorology and hydrology (01-03-2016)
    “…The results of the forecast of two heavy snowfalls registered on October 18 and 23, 2014 in the Urals using the WRF model are presented. The application of the…”
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  7. 7

    Estimation of Convective Atmospheric Instability during Squalls, Tornadoes, and Large Hail Events from Satellite Observations and ERA5 Reanalysis Data by Shikhov, A. N., Chernokulsky, A. V., Sprygin, A. A., Yarinich, Yu. I.

    Published in Atmospheric and oceanic optics (01-12-2022)
    “…We consider the applicability of satellite data to the estimation of atmospheric instability and precipitable water for the cases of severe convective events…”
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  8. 8

    Long-Term Dynamics of the Huge Anmangynda Aufeis in the North-East of Russia (1962–2021) by Zemlianskova, A. A., Alekseev, V. R., Shikhov, A. N., Ostashov, A. A., Nesterova, N. V., Makarieva, O. M.

    Published in Water resources (01-12-2023)
    “…This article presents materials on the long-term and seasonal variability of the morphometric characteristics of huge aufeis (taryn) in the Anmangynda River…”
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  9. 9

    Identification of Logged and Windthrow Areas from Sentinel-2 Satellite Images Using the U-Net Convolutional Neural Network and Factors Affecting Its Accuracy by Kanev, A. I., Tarasov, A. V., Shikhov, A. N., Podoprigorova, N. S., Safonov, F. A.

    Published in Cosmic research (01-12-2023)
    “…The results of detection (segmentation) of forest disturbances (logged and windthrow areas) based on Sentinel-2 satellite images with convolutional neural…”
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  10. 10

    Giant Taryn Aufeis in the Northeast of Russia by Alekseev, V. R., Makarieva, O. M., Shikhov, A. N., Nesterova, N. V., Zemlyanskova, A. A., Ostashov, A. A.

    Published in Geography and natural resources (01-09-2023)
    “…This article describes the compilation procedure and contents of the Atlas of giant taryn aufeis, a specific form of glaciation in the northeastern part of the…”
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  11. 11

    Tornadoes in the Russian Regions by Chernokulsky, A. V., Kurgansky, M. V., Mokhov, I. I., Shikhov, A. N., Azhigov, I. O., Selezneva, E. V., Zakharchenko, D. I., Antonescu, B., Kuhne, T.

    Published in Russian meteorology and hydrology (01-01-2021)
    “…New data are presented on tornadoes over land in Russia for the period of 1900–2018 based on various sources. In total, information on 1763 tornadoes was…”
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  12. 12

    Atmospheric Severe Convective Events in Russia: Changes Observed from Different Data by Chernokulsky, A. V., Eliseev, A. V., Kozlov, F. A., Korshunova, N. N., Kurgansky, M. V., Mokhov, I. I., Semenov, V. A., Shvets’, N. V., Shikhov, A. N., Yarinich, Yu. I.

    Published in Russian meteorology and hydrology (01-05-2022)
    “…Changes in the frequency and intensity of atmospheric severe convective events, including heavy rainfall, thunderstorm, hailstorm, squall, and tornado, in the…”
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  13. 13

    Estimation of Snow Water Equivalent in Semiarid Zone from Data of Global Numerical Models ICON and GFS/NCEP (Case Study of the Selenga River Basin) by Shikhov, A. N., Chernykh, V. N., Aurzhanaev, A. A., Pyankov, S. V., Abdullin, R. K.

    Published in Lëd i sneg (01-09-2023)
    “…The possibility to use the global numerical (NWP) models ICON and GFS/NCEP for We consider the applicability of ICON and GFS/NCEP global numerical atmospheric…”
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  14. 14

    Long-Term Dynamics of the Huge Anmangynda Aufeis in the North-East of Russia (1962–2021) by Zemlianskova, A. A., Alekseev, V. R., Shikhov, A. N., Ostashov, A. A., Nesterova, N. V., Makarieva, O. M.

    Published in Lëd i sneg (01-01-2023)
    “…The huge Anmangynda aufeis is located in the valley of the river of the same name in the Magadan region in North-East of Russia. This is the only in the world…”
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  15. 15

    Environments of Formation of Severe Squalls and Tornadoes Causing Large-scale Windthrows in the Forest Zone of European Russia and the Ural by Kalinin, N. A., Shikhov, A. N., Chernokulsky, A. V., Kostarev, S. V., Bykov, A. V.

    Published in Russian meteorology and hydrology (01-01-2021)
    “…The environments of 53 severe squalls and tornadoes that caused large-scale windthrows in the forest zone of European Russia and the Ural in 1989–2019 are…”
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  16. 16

    Estimation of Aufeis Resources in the Indigirka River Basin by Makarieva, O. M., Nesterova, N. V., Alekseev, V. R., Shikhov, A. N., Zemlyanskova, A. A., Ostashov, A. A.

    Published in Russian meteorology and hydrology (01-03-2022)
    “…On the basis of corrected Landsat data for 2013–2017, a modern assessment of aufeis in the Indigirka River basin and its partial catchments with an area of…”
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  17. 17

    Formation Conditions and Short-Term Forecast of Convective Hazardous Weather Events in the Ural Region in the Warm Period of 2020 by Kalinin, N. A., Shikhov, A. N., Bykov, A. V., Pomortseva, A. A., Abdullin, R. K., Azhigov, I. O.

    Published in Atmospheric and oceanic optics (01-05-2021)
    “…Formation conditions are considered and short-term forecast accuracy is estimated for six convective hazardous weather events or their clusters (outbreaks)…”
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  18. 18

    Simulation of snow accumulation and melting in the Kama river basin using data from global prognostic models by Pyankov, S. V., Shikhov, A. N., Mikhaylyukova, P. G.

    Published in Lëd i sneg (01-12-2019)
    “…Currently, the improvement of numerical models of weather forecasting allows using them for hydrological problems, including calculations of snow water…”
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  19. 19

    Squalls and Tornadoes over the European Territory of Russia on May 15, 2021: Diagnosis and Modeling by Chernokulsky, A. V., Shikhov, A. N., Azhigov, I. O., Eroshkina, N. A., Korenev, D. P., Bykov, A. V., Kalinin, N. A., Kurgansky, M. V., Pavlyukov, Yu. B., Sprygin, A. A., Yarinich, Yu. I.

    Published in Russian meteorology and hydrology (2022)
    “…Peculiarities were studied of formation of severe convective events, including a long-lived squall and several tornadoes observed over the European territory…”
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  20. 20

    Mapping Modern Climate Change in the Selenga River Basin by Garmaev, E. Zh, P’yankov, S. V., Shikhov, A. N., Ayurzhanaev, A. A., Sodnomov, B. V., Abdullin, R. K., Tsydypov, B. Z., Andreev, S. G., Chernykh, V. N.

    Published in Russian meteorology and hydrology (01-02-2022)
    “…The climate change in the Selenga River basin observed over the period from 1961 to 2018 is considered. The WorldClim dataset and the GHCN-Daily global weather…”
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