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 <front>
  <journal-meta>
   <journal-id journal-id-type="publisher-id">Russian Journal of Earth Sciences</journal-id>
   <journal-title-group>
    <journal-title xml:lang="en">Russian Journal of Earth Sciences</journal-title>
    <trans-title-group xml:lang="ru">
     <trans-title>Russian Journal of Earth Sciences</trans-title>
    </trans-title-group>
   </journal-title-group>
   <issn publication-format="online">1681-1208</issn>
  </journal-meta>
  <article-meta>
   <article-id pub-id-type="publisher-id">72242</article-id>
   <article-id pub-id-type="doi">10.2205/2023ES02SI10</article-id>
   <article-categories>
    <subj-group subj-group-type="toc-heading" xml:lang="ru">
     <subject>СПЕЦВЫПУСК: &quot;ФУНДАМЕНТАЛЬНЫЕ И ПРИКЛАДНЫЕ АСПЕКТЫ ГЕОЛОГИИ, ГЕОФИЗИКИ И ГЕОЭКОЛОГИИ&quot;</subject>
    </subj-group>
    <subj-group subj-group-type="toc-heading" xml:lang="en">
     <subject>SPECIAL ISSUE: &quot;FUNDAMENTAL AND APPLIED ASPECTS OF GEOLOGY, GEOPHYSICS AND GEOECOLOGY&quot;</subject>
    </subj-group>
    <subj-group>
     <subject>СПЕЦВЫПУСК: &quot;ФУНДАМЕНТАЛЬНЫЕ И ПРИКЛАДНЫЕ АСПЕКТЫ ГЕОЛОГИИ, ГЕОФИЗИКИ И ГЕОЭКОЛОГИИ&quot;</subject>
    </subj-group>
   </article-categories>
   <title-group>
    <article-title xml:lang="en">Properties of Short-Period Internal Waves in the Kara Gates Strait Revealed from Spaceborne SAR Data</article-title>
    <trans-title-group xml:lang="ru">
     <trans-title>Properties of Short-Period Internal Waves in the Kara Gates Strait Revealed from Spaceborne SAR Data</trans-title>
    </trans-title-group>
   </title-group>
   <contrib-group content-type="authors">
    <contrib contrib-type="author">
     <contrib-id contrib-id-type="orcid">https://orcid.org/0000-0002-4650-0479</contrib-id>
     <name-alternatives>
      <name xml:lang="ru">
       <surname>Копышов</surname>
       <given-names>Илья Олегович</given-names>
      </name>
      <name xml:lang="en">
       <surname>Kopyshov</surname>
       <given-names>Ilya Olegovich</given-names>
      </name>
     </name-alternatives>
     <email>kopyshov.io@phystech.edu</email>
     <xref ref-type="aff" rid="aff-1"/>
     <xref ref-type="aff" rid="aff-2"/>
    </contrib>
    <contrib contrib-type="author">
     <contrib-id contrib-id-type="orcid">https://orcid.org/0000-0001-6378-8956</contrib-id>
     <name-alternatives>
      <name xml:lang="ru">
       <surname>Козлов</surname>
       <given-names>Игорь Евгеньевич</given-names>
      </name>
      <name xml:lang="en">
       <surname>Kozlov</surname>
       <given-names>Igor Evgenevich</given-names>
      </name>
     </name-alternatives>
     <xref ref-type="aff" rid="aff-2"/>
    </contrib>
    <contrib contrib-type="author">
     <contrib-id contrib-id-type="orcid">https://orcid.org/0009-0005-6399-1168</contrib-id>
     <name-alternatives>
      <name xml:lang="ru">
       <surname>Шириборова</surname>
       <given-names>А. И.</given-names>
      </name>
      <name xml:lang="en">
       <surname>Shiryborova</surname>
       <given-names>A. I.</given-names>
      </name>
     </name-alternatives>
     <xref ref-type="aff" rid="aff-3"/>
     <xref ref-type="aff" rid="aff-4"/>
    </contrib>
    <contrib contrib-type="author">
     <contrib-id contrib-id-type="orcid">https://orcid.org/0000-0002-7700-4398</contrib-id>
     <name-alternatives>
      <name xml:lang="ru">
       <surname>Мысленков</surname>
       <given-names>Станислав Александрович</given-names>
      </name>
      <name xml:lang="en">
       <surname>Myslenkov</surname>
       <given-names>Stanislav Aleksandrovich</given-names>
      </name>
     </name-alternatives>
     <email>stasocean@gmail.com</email>
     <xref ref-type="aff" rid="aff-3"/>
     <xref ref-type="aff" rid="aff-5"/>
     <xref ref-type="aff" rid="aff-6"/>
     <xref ref-type="aff" rid="aff-7"/>
    </contrib>
   </contrib-group>
   <aff-alternatives id="aff-1">
    <aff>
     <institution xml:lang="ru">Московский физико-технический институт (государственный университет)</institution>
    </aff>
    <aff>
     <institution xml:lang="en">Moscow Institute of Physics and Technology (State University)</institution>
    </aff>
   </aff-alternatives>
   <aff-alternatives id="aff-2">
    <aff>
     <institution xml:lang="ru">Морской гидрофизический институт Российской академии наук</institution>
    </aff>
    <aff>
     <institution xml:lang="en">Russian Academy of Sciences Sea Hydrophysical Institute</institution>
    </aff>
   </aff-alternatives>
   <aff-alternatives id="aff-3">
    <aff>
     <institution xml:lang="ru">Московский государственный университет имени М.В.Ломоносова</institution>
    </aff>
    <aff>
     <institution xml:lang="en">Lomonosov Moscow State University</institution>
    </aff>
   </aff-alternatives>
   <aff-alternatives id="aff-4">
    <aff>
     <institution xml:lang="ru">Институт океанологии им. П.П. Ширшова РАН</institution>
    </aff>
    <aff>
     <institution xml:lang="en">P.P.Shirshov Institute of Oceanology of the Russian Academy of Science</institution>
    </aff>
   </aff-alternatives>
   <aff-alternatives id="aff-5">
    <aff>
     <institution xml:lang="ru">Московский Государственный университет им. М.В.Ломоносова</institution>
     <city>Москва</city>
     <country>Россия</country>
    </aff>
    <aff>
     <institution xml:lang="en">Lomonosov Moscow State University</institution>
     <city>Moscow</city>
     <country>Russian Federation</country>
    </aff>
   </aff-alternatives>
   <aff-alternatives id="aff-6">
    <aff>
     <institution xml:lang="ru">Институт океанологии им. П.П. Ширшова Российской академии наук</institution>
     <city>Москва</city>
     <country>Россия</country>
    </aff>
    <aff>
     <institution xml:lang="en">P.P. Shirshov Institute of Oceanology of the Russian Academy of Sciences</institution>
     <city>Moscow</city>
     <country>Russian Federation</country>
    </aff>
   </aff-alternatives>
   <aff-alternatives id="aff-7">
    <aff>
     <institution xml:lang="ru">Гидрометцентр России</institution>
     <country>Россия</country>
    </aff>
    <aff>
     <institution xml:lang="en">Hydrometeorological Research Centre of the Russian Federation</institution>
     <country>Russian Federation</country>
    </aff>
   </aff-alternatives>
   <pub-date publication-format="print" date-type="pub" iso-8601-date="2023-12-15T00:00:00+03:00">
    <day>15</day>
    <month>12</month>
    <year>2023</year>
   </pub-date>
   <pub-date publication-format="electronic" date-type="pub" iso-8601-date="2023-12-15T00:00:00+03:00">
    <day>15</day>
    <month>12</month>
    <year>2023</year>
   </pub-date>
   <volume>23</volume>
   <issue>5</issue>
   <fpage>1</fpage>
   <lpage>11</lpage>
   <history>
    <date date-type="received" iso-8601-date="2023-10-20T00:00:00+03:00">
     <day>20</day>
     <month>10</month>
     <year>2023</year>
    </date>
    <date date-type="accepted" iso-8601-date="2023-11-27T00:00:00+03:00">
     <day>27</day>
     <month>11</month>
     <year>2023</year>
    </date>
   </history>
   <self-uri xlink:href="https://rjes.ru/en/nauka/article/72242/view">https://rjes.ru/en/nauka/article/72242/view</self-uri>
   <abstract xml:lang="ru">
    <p>This paper presents the results of identification of surface manifestations (SM) of short-period internal waves (SIW) in Sentinel-1 A/B synthetic aperture radar (SAR) images of the Kara Gates Strait in August–September 2021. 44 SM of SIW trains were detected in 47 SAR images. Statistics of occurrence, propagation direction and spatial characteristics of SIWs in the study area are given. During two months, satellite observations cover almost all phases of spring-neap tidal cycle. The use of a detailed topography of the study area made it possible to identify certain regions with a more frequent presence of the SIW leading crests with a particular focus made on the shallow (&lt; 100 m) part of the strait. Each identified region is then described in terms of water depth, dimensionless slope, amplitudes of tidal current velocity and properties of SIWs. The obtained results were then compared with the results of previous studies.</p>
   </abstract>
   <trans-abstract xml:lang="en">
    <p>This paper presents the results of identification of surface manifestations (SM) of short-period internal waves (SIW) in Sentinel-1 A/B synthetic aperture radar (SAR) images of the Kara Gates Strait in August–September 2021. 44 SM of SIW trains were detected in 47 SAR images. Statistics of occurrence, propagation direction and spatial characteristics of SIWs in the study area are given. During two months, satellite observations cover almost all phases of spring-neap tidal cycle. The use of a detailed topography of the study area made it possible to identify certain regions with a more frequent presence of the SIW leading crests with a particular focus made on the shallow (&lt; 100 m) part of the strait. Each identified region is then described in terms of water depth, dimensionless slope, amplitudes of tidal current velocity and properties of SIWs. The obtained results were then compared with the results of previous studies.</p>
   </trans-abstract>
   <kwd-group xml:lang="en">
    <kwd>short-period internal waves</kwd>
    <kwd>SAR imaging of sea surface</kwd>
    <kwd>barotropic tide</kwd>
    <kwd>spring-neap cycle</kwd>
    <kwd>Kara Gates Strait</kwd>
    <kwd>Arctic Ocean</kwd>
   </kwd-group>
   <funding-group>
    <funding-statement xml:lang="en">The study was carried out within the framework of the state task No. FNNN2021-0010. Sentinel-1A/B satellite data were obtained from the Copernicus Marine Open Access Hub (https://scihub.copernicus.eu). Wind speed data of ASCAT METOPA/B/C scatterometers were obtained from the National Environmental Satellite, Data, and Information Service (NESDIS) Satellite Application and Research Center from (https: //manati.star.nesdis.noaa.gov). The part of the study related to the calculation of tidal conditions was funded by the state task FMWE-2021-0015.</funding-statement>
   </funding-group>
  </article-meta>
 </front>
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 <back>
  <ref-list>
   <ref id="B1">
    <label>1.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Boegman, L., and M. Stastna (2019), Sediment Resuspension and Transport by Internal Solitary Waves, Annual Review of Fluid Mechanics, 51(1), 129-154, https://doi.org/10.1146/annurev-fluid-122316-045049.</mixed-citation>
     <mixed-citation xml:lang="en">Boegman, L., and M. Stastna (2019), Sediment Resuspension and Transport by Internal Solitary Waves, Annual Review of Fluid Mechanics, 51(1), 129-154, https://doi.org/10.1146/annurev-fluid-122316-045049.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B2">
    <label>2.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Carr, M., P. Sutherland, A. Haase, K.-U. Evers, I. Fer, A. Jensen, H. Kalisch, J. Berntsen, E. Părău, Ø. Thiem, and P. A. Davies (2019), Laboratory Experiments on Internal Solitary Waves in Ice-Covered Waters, Geophysical Research Letters, 46(21), 12,230-12,238, https://doi.org/10.1029/2019GL084710.</mixed-citation>
     <mixed-citation xml:lang="en">Carr, M., P. Sutherland, A. Haase, K.-U. Evers, I. Fer, A. Jensen, H. Kalisch, J. Berntsen, E. Părău, Ø. Thiem, and P. A. Davies (2019), Laboratory Experiments on Internal Solitary Waves in Ice-Covered Waters, Geophysical Research Letters, 46(21), 12,230-12,238, https://doi.org/10.1029/2019GL084710.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B3">
    <label>3.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Czipott, P. V., M. D. Levine, C. A. Paulson, D. Menemenlis, D. M. Farmer, and R. G. Williams (1991), Ice Flexure Forced by Internal Wave Packets in the Arctic Ocean, Science, 254(5033), 832-835, https://doi.org/10.1126/science.254.5033.832.</mixed-citation>
     <mixed-citation xml:lang="en">Czipott, P. V., M. D. Levine, C. A. Paulson, D. Menemenlis, D. M. Farmer, and R. G. Williams (1991), Ice Flexure Forced by Internal Wave Packets in the Arctic Ocean, Science, 254(5033), 832-835, https://doi.org/10.1126/science.254.5033.832.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B4">
    <label>4.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">da Silva, J. C. B., and K. R. Helfrich (2008), Synthetic Aperture Radar observations of resonantly generated internal solitary waves at Race Point Channel (Cape Cod), Journal of Geophysical Research: Oceans, 113(C11), https://doi.org/10.1029/2008JC005004.</mixed-citation>
     <mixed-citation xml:lang="en">da Silva, J. C. B., and K. R. Helfrich (2008), Synthetic Aperture Radar observations of resonantly generated internal solitary waves at Race Point Channel (Cape Cod), Journal of Geophysical Research: Oceans, 113(C11), https://doi.org/10.1029/2008JC005004.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B5">
    <label>5.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">D’Asaro, E. A. (2022), How do Internal Waves Create Turbulence and Mixing in the Ocean?, ESS Open Archive, https://doi.org/10.1002/essoar.10511843.1, (Preprint).</mixed-citation>
     <mixed-citation xml:lang="en">D’Asaro, E. A. (2022), How do Internal Waves Create Turbulence and Mixing in the Ocean?, ESS Open Archive, https://doi.org/10.1002/essoar.10511843.1, (Preprint).</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B6">
    <label>6.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Dubina, V. A., and L. M. Mitnik (2007), Internal waves in the Sea of Japan: spatial-temporal distribution and characteristics according to satellite remote sensing data, Issledovanie Zemli iz Kosmosa, 3, 37-46 (in Russian).</mixed-citation>
     <mixed-citation xml:lang="en">Dubina, V. A., and L. M. Mitnik (2007), Internal waves in the Sea of Japan: spatial-temporal distribution and characteristics according to satellite remote sensing data, Issledovanie Zemli iz Kosmosa, 3, 37-46 (in Russian).</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B7">
    <label>7.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Edge, W. C., N. L. Jones, M. D. Rayson, and G. N. Ivey (2021), Calibrated Suspended Sediment Observations Beneath Large Amplitude Non-Linear Internal Waves, Journal of Geophysical Research: Oceans, 126(12), https://doi.org/10.1029/2021jc017538.</mixed-citation>
     <mixed-citation xml:lang="en">Edge, W. C., N. L. Jones, M. D. Rayson, and G. N. Ivey (2021), Calibrated Suspended Sediment Observations Beneath Large Amplitude Non-Linear Internal Waves, Journal of Geophysical Research: Oceans, 126(12), https://doi.org/10.1029/2021jc017538.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B8">
    <label>8.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Erofeeva, S., and G. Egbert (2020), Arc5km2018: Arctic Ocean Inverse Tide Model on a 5 kilometer grid, 2018, https://doi.org/10.18739/A21R6N14K.</mixed-citation>
     <mixed-citation xml:lang="en">Erofeeva, S., and G. Egbert (2020), Arc5km2018: Arctic Ocean Inverse Tide Model on a 5 kilometer grid, 2018, https://doi.org/10.18739/A21R6N14K.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B9">
    <label>9.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Fer, I., Z. Koenig, I. E. Kozlov, M. Ostrowski, T. P. Rippeth, L. Padman, A. Bosse, and E. Kolås (2020), Tidally Forced Lee Waves Drive Turbulent Mixing Along the Arctic Ocean Margins, Geophysical Research Letters, 47(16), https://doi.org/10.1029/2020gl088083.</mixed-citation>
     <mixed-citation xml:lang="en">Fer, I., Z. Koenig, I. E. Kozlov, M. Ostrowski, T. P. Rippeth, L. Padman, A. Bosse, and E. Kolås (2020), Tidally Forced Lee Waves Drive Turbulent Mixing Along the Arctic Ocean Margins, Geophysical Research Letters, 47(16), https://doi.org/10.1029/2020gl088083.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B10">
    <label>10.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Garwood, J., R. Musgrave, and A. Lucas (2020), Life in Internal Waves, Oceanography, 33(3), 38-49, https://doi.org/10.5670/oceanog.2020.313.</mixed-citation>
     <mixed-citation xml:lang="en">Garwood, J., R. Musgrave, and A. Lucas (2020), Life in Internal Waves, Oceanography, 33(3), 38-49, https://doi.org/10.5670/oceanog.2020.313.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B11">
    <label>11.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Jackson, C., J. da Silva, and G. Jeans (2012), The Generation of Nonlinear Internal Waves, Oceanography, 25(2), 108-123, https://doi.org/10.5670/oceanog.2012.46.</mixed-citation>
     <mixed-citation xml:lang="en">Jackson, C., J. da Silva, and G. Jeans (2012), The Generation of Nonlinear Internal Waves, Oceanography, 25(2), 108-123, https://doi.org/10.5670/oceanog.2012.46.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B12">
    <label>12.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Jackson, C. R. (2004), An atlas of internal solitary-like waves and their properties, 2nd ed., Global Ocean Associates, Alexandria. Jakobsson, M., L. Mayer, B. Coakley, J. A. Dowdeswell, S. Forbes, B. Fridman, H. Hodnesdal, R. Noormets, R. Pedersen, M. Rebesco, H. W. Schenke, Y. Zarayskaya, D. Accettella, A. Armstrong, R. M. Anderson, P. Bienhoff, A. Camerlenghi, I. Church, M. Edwards, J. V. Gardner, J. K. Hall, B. Hell, O. Hestvik, Y. Kristoffersen, C. Marcussen, R. Mohammad, D. Mosher, S. V. Nghiem, M. T. Pedrosa, P. G. Travaglini, and P. Weatherall (2012), The International Bathymetric Chart of the Arctic Ocean (IBCAO) Version 3.0, Geophysical Research Letters, 39(12), https://doi.org/10.1029/2012GL052219.</mixed-citation>
     <mixed-citation xml:lang="en">Jackson, C. R. (2004), An atlas of internal solitary-like waves and their properties, 2nd ed., Global Ocean Associates, Alexandria. Jakobsson, M., L. Mayer, B. Coakley, J. A. Dowdeswell, S. Forbes, B. Fridman, H. Hodnesdal, R. Noormets, R. Pedersen, M. Rebesco, H. W. Schenke, Y. Zarayskaya, D. Accettella, A. Armstrong, R. M. Anderson, P. Bienhoff, A. Camerlenghi, I. Church, M. Edwards, J. V. Gardner, J. K. Hall, B. Hell, O. Hestvik, Y. Kristoffersen, C. Marcussen, R. Mohammad, D. Mosher, S. V. Nghiem, M. T. Pedrosa, P. G. Travaglini, and P. Weatherall (2012), The International Bathymetric Chart of the Arctic Ocean (IBCAO) Version 3.0, Geophysical Research Letters, 39(12), https://doi.org/10.1029/2012GL052219.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B13">
    <label>13.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Kagan, B. A., and A. A. Timofeev (2015), Spatial variability in the drag coefficient and its role in tidal dynamics and energetics, a case study: The surface M 2 tide in the subsystem of the Barents and Kara Seas, Izvestiya, Atmospheric and Oceanic Physics, 51(1), 98-111, https://doi.org/10.1134/s0001433814060103.</mixed-citation>
     <mixed-citation xml:lang="en">Kagan, B. A., and A. A. Timofeev (2015), Spatial variability in the drag coefficient and its role in tidal dynamics and energetics, a case study: The surface M 2 tide in the subsystem of the Barents and Kara Seas, Izvestiya, Atmospheric and Oceanic Physics, 51(1), 98-111, https://doi.org/10.1134/s0001433814060103.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B14">
    <label>14.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Kagan, B. A., E. V. Sofina, and A. A. Timofeev (2018), Critical Latitude in Tidal Dynamics Using the Kara Sea as an Example, Izvestiya, Atmospheric and Oceanic Physics, 54(2), 206-212, https://doi.org/10.1134/s000143381802010x.</mixed-citation>
     <mixed-citation xml:lang="en">Kagan, B. A., E. V. Sofina, and A. A. Timofeev (2018), Critical Latitude in Tidal Dynamics Using the Kara Sea as an Example, Izvestiya, Atmospheric and Oceanic Physics, 54(2), 206-212, https://doi.org/10.1134/s000143381802010x.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B15">
    <label>15.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Konyaev, K. V. (2000), Internal tide at the critical latitude, Izvestiya. Atmospheric and Oceanic Physics, 36(3), 363-375 (in Russian).</mixed-citation>
     <mixed-citation xml:lang="en">Konyaev, K. V. (2000), Internal tide at the critical latitude, Izvestiya. Atmospheric and Oceanic Physics, 36(3), 363-375 (in Russian).</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B16">
    <label>16.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Kopyshov, I. O., I. E. Kozlov, V. R. Zhuk, A. V. Artamonova, K. P. Silvestrova, O. S. Mekhova, A. I. Korzhenovskaya, D. I. Frey, A. G. Jamalova, P. V. Gaisky, A. A. Osadchiev, and N. B. Stepanova (2021), Study of high-amplitude internal waves in The Kara Gate Straitin August 2021, in X International conference «Marine Research and Education» MARESEDU-2021, vol. 1, pp. 238-241, PoliPRESS, Tver (in Russian).</mixed-citation>
     <mixed-citation xml:lang="en">Kopyshov, I. O., I. E. Kozlov, V. R. Zhuk, A. V. Artamonova, K. P. Silvestrova, O. S. Mekhova, A. I. Korzhenovskaya, D. I. Frey, A. G. Jamalova, P. V. Gaisky, A. A. Osadchiev, and N. B. Stepanova (2021), Study of high-amplitude internal waves in The Kara Gate Straitin August 2021, in X International conference «Marine Research and Education» MARESEDU-2021, vol. 1, pp. 238-241, PoliPRESS, Tver (in Russian).</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B17">
    <label>17.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Kozlov, I., V. Kudryavtsev, E. Zubkova, O. Atadzhanova, A. Zimin, D. Romanenkov, A. Myasoedov, and B. Chapron (2015a), SAR observations of internal waves in the Russian Arctic seas, in 2015 IEEE International Geoscience and Remote Sensing Symposium (IGARSS), IEEE, https://doi.org/10.1109/IGARSS.2015.7325923.</mixed-citation>
     <mixed-citation xml:lang="en">Kozlov, I., V. Kudryavtsev, E. Zubkova, O. Atadzhanova, A. Zimin, D. Romanenkov, A. Myasoedov, and B. Chapron (2015a), SAR observations of internal waves in the Russian Arctic seas, in 2015 IEEE International Geoscience and Remote Sensing Symposium (IGARSS), IEEE, https://doi.org/10.1109/IGARSS.2015.7325923.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B18">
    <label>18.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Kozlov, I. E., and A. V. Kuzmin (2022), New regions of short-period internal wave generation in the Laptev Sea revealed from Sentinel-1 data, Sovremennye problemy distantsionnogo zondirovaniya Zemli iz kosmosa, 19(4), 280-290, https://doi.org/10.21046/2070-7401-2022-19-4-280-290.</mixed-citation>
     <mixed-citation xml:lang="en">Kozlov, I. E., and A. V. Kuzmin (2022), New regions of short-period internal wave generation in the Laptev Sea revealed from Sentinel-1 data, Sovremennye problemy distantsionnogo zondirovaniya Zemli iz kosmosa, 19(4), 280-290, https://doi.org/10.21046/2070-7401-2022-19-4-280-290.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B19">
    <label>19.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Kozlov, I. E., V. N. Kudryavtsev, E. V. Zubkova, A. V. Zimin, and B. Chapron (2015b), Characteristics of short-period internal waves in the Kara Sea inferred from satellite SAR data, Izvestiya, Atmospheric and Oceanic Physics, 51(9), 1073-1087, https://doi.org/10.1134/s0001433815090121.</mixed-citation>
     <mixed-citation xml:lang="en">Kozlov, I. E., V. N. Kudryavtsev, E. V. Zubkova, A. V. Zimin, and B. Chapron (2015b), Characteristics of short-period internal waves in the Kara Sea inferred from satellite SAR data, Izvestiya, Atmospheric and Oceanic Physics, 51(9), 1073-1087, https://doi.org/10.1134/s0001433815090121.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B20">
    <label>20.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Kudryavtsev, V., I. Kozlov, B. Chapron, and J. A. Johannessen (2014), Quad-polarization SAR features of ocean currents, Journal of Geophysical Research: Oceans, 119(9), 6046-6065, https://doi.org/10.1002/2014jc010173.</mixed-citation>
     <mixed-citation xml:lang="en">Kudryavtsev, V., I. Kozlov, B. Chapron, and J. A. Johannessen (2014), Quad-polarization SAR features of ocean currents, Journal of Geophysical Research: Oceans, 119(9), 6046-6065, https://doi.org/10.1002/2014jc010173.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B21">
    <label>21.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Lavrova, O. Y., M. I. Mityagina, and K. D. Sabinin (2009), Manifestation of internal waves on the sea surface in the northeastern part of the Black Sea, Issledovanie Zemli iz Kosmosa, (6), 49-55 (in Russian).</mixed-citation>
     <mixed-citation xml:lang="en">Lavrova, O. Y., M. I. Mityagina, and K. D. Sabinin (2009), Manifestation of internal waves on the sea surface in the northeastern part of the Black Sea, Issledovanie Zemli iz Kosmosa, (6), 49-55 (in Russian).</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B22">
    <label>22.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Lavrova, O. Y., M. I. Mityagina, and K. D. Sabinin (2011), Study of internal wave generation and propagation features in non-tidal seas based on satellite synthetic aperture radar data, Doklady Earth Sciences, 436(3), 165-169 (in Russian).</mixed-citation>
     <mixed-citation xml:lang="en">Lavrova, O. Y., M. I. Mityagina, and K. D. Sabinin (2011), Study of internal wave generation and propagation features in non-tidal seas based on satellite synthetic aperture radar data, Doklady Earth Sciences, 436(3), 165-169 (in Russian).</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B23">
    <label>23.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Li, Q., H. Wu, H. Yang, and Z. Zhang (2019), A numerical simulation of the generation and evolution of nonlinear internal waves across the Kara Strait, Acta Oceanologica Sinica, 38(5), 1-9, https://doi.org/10.1007/s13131-019-1437-z.</mixed-citation>
     <mixed-citation xml:lang="en">Li, Q., H. Wu, H. Yang, and Z. Zhang (2019), A numerical simulation of the generation and evolution of nonlinear internal waves across the Kara Strait, Acta Oceanologica Sinica, 38(5), 1-9, https://doi.org/10.1007/s13131-019-1437-z.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B24">
    <label>24.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Maxworthy, T. (1979), A note on the internal solitary waves produced by tidal flow over a three-dimensional ridge, Journal of Geophysical Research: Oceans, 84(C1), 338-346, https://doi.org/10.1029/jc084ic01p00338.</mixed-citation>
     <mixed-citation xml:lang="en">Maxworthy, T. (1979), A note on the internal solitary waves produced by tidal flow over a three-dimensional ridge, Journal of Geophysical Research: Oceans, 84(C1), 338-346, https://doi.org/10.1029/jc084ic01p00338.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B25">
    <label>25.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">McClimans, T. A., D. R. Johnson, M. Krosshavn, S. E. King, J. Carroll, and Ø. Grenness (2000), Transport processes in the Kara Sea, Journal of Geophysical Research: Oceans, 105(C6), 14,121-14,139, https://doi.org/10.1029/1999jc000012.</mixed-citation>
     <mixed-citation xml:lang="en">McClimans, T. A., D. R. Johnson, M. Krosshavn, S. E. King, J. Carroll, and Ø. Grenness (2000), Transport processes in the Kara Sea, Journal of Geophysical Research: Oceans, 105(C6), 14,121-14,139, https://doi.org/10.1029/1999jc000012.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B26">
    <label>26.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Morozov, E., and D. Frey (2023), Strait of Kara Gates: A Region of Strong Internal Tides in the Arctic Seas, Russian Journal of Earth Sciences, 23(3), 1-7, https://doi.org/10.2205/2023es000860.</mixed-citation>
     <mixed-citation xml:lang="en">Morozov, E., and D. Frey (2023), Strait of Kara Gates: A Region of Strong Internal Tides in the Arctic Seas, Russian Journal of Earth Sciences, 23(3), 1-7, https://doi.org/10.2205/2023es000860.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B27">
    <label>27.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Morozov, E. G., and V. T. Paka (2010), Internal waves in a high-latitude region, Oceanology, 50(5), 668-674, https://doi.org/10.1134/s0001437010050048.</mixed-citation>
     <mixed-citation xml:lang="en">Morozov, E. G., and V. T. Paka (2010), Internal waves in a high-latitude region, Oceanology, 50(5), 668-674, https://doi.org/10.1134/s0001437010050048.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B28">
    <label>28.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Morozov, E. G., and S. V. Pisarev (2002), Internal tides at the Arctic latitudes (numerical experiments), Oceanology, 42(2), 165-173.</mixed-citation>
     <mixed-citation xml:lang="en">Morozov, E. G., and S. V. Pisarev (2002), Internal tides at the Arctic latitudes (numerical experiments), Oceanology, 42(2), 165-173.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B29">
    <label>29.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Morozov, E. G., and S. V. Pisarev (2004), Internal waves and polynya formation in the Laptev Sea, Doklady Earth Sciences, 397(3), 1-4 (in Russian).</mixed-citation>
     <mixed-citation xml:lang="en">Morozov, E. G., and S. V. Pisarev (2004), Internal waves and polynya formation in the Laptev Sea, Doklady Earth Sciences, 397(3), 1-4 (in Russian).</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B30">
    <label>30.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Morozov, E. G., S. V. Pisarev, and S. Y. Erofeeva (2002), Internal tidal waves in the Arctic seas of Russia, in Surface and internal waves in Arctic seas. Part II. Internal waves in the Arctic seas of Russia, pp. 214-234, Gidrometeoizdat, Saint Petersburg (in Russian).</mixed-citation>
     <mixed-citation xml:lang="en">Morozov, E. G., S. V. Pisarev, and S. Y. Erofeeva (2002), Internal tidal waves in the Arctic seas of Russia, in Surface and internal waves in Arctic seas. Part II. Internal waves in the Arctic seas of Russia, pp. 214-234, Gidrometeoizdat, Saint Petersburg (in Russian).</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B31">
    <label>31.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Morozov, E. G., V. G. Neiman, and A. D. Shcherbinin (2003), Internal tide in the Kara Strait, Doklady Earth Sciences, 393(9), 1312-1314. Morozov, E. G., V. T. Paka, and V. V. Bakhanov (2008), Strong internal tides in the Kara Gates Strait, Geophysical Research Letters, 35(16), https://doi.org/10.1029/2008GL033804.</mixed-citation>
     <mixed-citation xml:lang="en">Morozov, E. G., V. G. Neiman, and A. D. Shcherbinin (2003), Internal tide in the Kara Strait, Doklady Earth Sciences, 393(9), 1312-1314. Morozov, E. G., V. T. Paka, and V. V. Bakhanov (2008), Strong internal tides in the Kara Gates Strait, Geophysical Research Letters, 35(16), https://doi.org/10.1029/2008GL033804.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B32">
    <label>32.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Morozov, E. G., I. E. Kozlov, S. A. Shchuka, and D. I. Frey (2017), Internal tide in the Kara Gates Strait, Oceanology, 57(1), 8-18, https://doi.org/10.1134/s0001437017010106.</mixed-citation>
     <mixed-citation xml:lang="en">Morozov, E. G., I. E. Kozlov, S. A. Shchuka, and D. I. Frey (2017), Internal tide in the Kara Gates Strait, Oceanology, 57(1), 8-18, https://doi.org/10.1134/s0001437017010106.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B33">
    <label>33.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Moum, J. N., D. M. Farmer, W. D. Smyth, L. Armi, and S. Vagle (2003), Structure and Generation of Turbulence at Interfaces Strained by Internal Solitary Waves Propagating Shoreward over the Continental Shelf, Journal of Physical Oceanography, 33(10), 2093-2112, https://doi.org/10.1175/1520-0485(2003)0332.0.co;2.</mixed-citation>
     <mixed-citation xml:lang="en">Moum, J. N., D. M. Farmer, W. D. Smyth, L. Armi, and S. Vagle (2003), Structure and Generation of Turbulence at Interfaces Strained by Internal Solitary Waves Propagating Shoreward over the Continental Shelf, Journal of Physical Oceanography, 33(10), 2093-2112, https://doi.org/10.1175/1520-0485(2003)0332.0.co;2.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B34">
    <label>34.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Moum, J. N., J. M. Klymak, J. D. Nash, A. Perlin, and W. D. Smyth (2007), Energy Transport by Nonlinear Internal Waves, Journal of Physical Oceanography, 37(7), 1968-1988, https://doi.org/10.1175/jpo3094.1.</mixed-citation>
     <mixed-citation xml:lang="en">Moum, J. N., J. M. Klymak, J. D. Nash, A. Perlin, and W. D. Smyth (2007), Energy Transport by Nonlinear Internal Waves, Journal of Physical Oceanography, 37(7), 1968-1988, https://doi.org/10.1175/jpo3094.1.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B35">
    <label>35.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Myslenkov, S., V. Platonov, A. Kislov, K. Silvestrova, and I. Medvedev (2021a), Thirty-Nine-Year Wave Hindcast, Storm Activity, and Probability Analysis of Storm Waves in the Kara Sea, Russia, Water, 13(5), 648, https://doi.org/10.3390/w13050648.</mixed-citation>
     <mixed-citation xml:lang="en">Myslenkov, S., V. Platonov, A. Kislov, K. Silvestrova, and I. Medvedev (2021a), Thirty-Nine-Year Wave Hindcast, Storm Activity, and Probability Analysis of Storm Waves in the Kara Sea, Russia, Water, 13(5), 648, https://doi.org/10.3390/w13050648.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B36">
    <label>36.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Myslenkov, S. A., V. S. Platonov, K. P. Silvestrova, and S. A. Dobrolyubov (2021b), Increase in Storm Activity in the Kara Sea from 1979 to 2019: Numerical Simulation Data, Doklady Earth Sciences, 498(2), 502-508, https://doi.org/10.1134/s1028334x2106012x.</mixed-citation>
     <mixed-citation xml:lang="en">Myslenkov, S. A., V. S. Platonov, K. P. Silvestrova, and S. A. Dobrolyubov (2021b), Increase in Storm Activity in the Kara Sea from 1979 to 2019: Numerical Simulation Data, Doklady Earth Sciences, 498(2), 502-508, https://doi.org/10.1134/s1028334x2106012x.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B37">
    <label>37.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Phillips, O. M. (1980), The Dynamics of the Upper Ocean (Cambridge Monographs on Mechanics), 344 pp., Cambridge University Press. Pineda, J. (1991), Predictable Upwelling and the Shoreward Transport of Planktonic Larvae by Internal Tidal Bores, Science, 253(5019), 548-549, https://doi.org/10.1126/science.253.5019.548.</mixed-citation>
     <mixed-citation xml:lang="en">Phillips, O. M. (1980), The Dynamics of the Upper Ocean (Cambridge Monographs on Mechanics), 344 pp., Cambridge University Press. Pineda, J. (1991), Predictable Upwelling and the Shoreward Transport of Planktonic Larvae by Internal Tidal Bores, Science, 253(5019), 548-549, https://doi.org/10.1126/science.253.5019.548.</mixed-citation>
    </citation-alternatives>
   </ref>
   <ref id="B38">
    <label>38.</label>
    <citation-alternatives>
     <mixed-citation xml:lang="ru">Sabinin, K. D., A. N. Serebryanyi, and A. A. Nazarov (2004), Intensive internal waves in the World Ocean, Oceanology, 44(6), 753-758 (in Russian).</mixed-citation>
     <mixed-citation xml:lang="en">Sabinin, K. D., A. N. Serebryanyi, and A. A. Nazarov (2004), Intensive internal waves in the World Ocean, Oceanology, 44(6), 753-758 (in Russian).</mixed-citation>
    </citation-alternatives>
   </ref>
  </ref-list>
 </back>
</article>
