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Козлов Виктор Геннадьевич
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[TYPE] => HTML [TEXT] => ) [PROPERTY_TYPE] => S [ROW_COUNT] => 1 [COL_COUNT] => 30 [LIST_TYPE] => L [MULTIPLE] => N [XML_ID] => [FILE_TYPE] => [MULTIPLE_CNT] => 5 [TMP_ID] => [LINK_IBLOCK_ID] => 0 [WITH_DESCRIPTION] => N [SEARCHABLE] => N [FILTRABLE] => N [IS_REQUIRED] => N [VERSION] => 1 [USER_TYPE] => HTML [USER_TYPE_SETTINGS] => Array ( [height] => 200 ) [HINT] => [PROPERTY_VALUE_ID] => 44848 [VALUE] => Array ( [TEXT] => Старший научный сотрудник Лаборатории вибрационной гидромеханики [TYPE] => HTML ) [DESCRIPTION] => [VALUE_ENUM] => [VALUE_XML_ID] => [VALUE_SORT] => [~VALUE] => Array ( [TEXT] => Старший научный сотрудник Лаборатории вибрационной гидромеханики [TYPE] => HTML ) [~DESCRIPTION] => [~NAME] => Другие должности, занимаемые в университете [~DEFAULT_VALUE] => Array ( [TYPE] => HTML [TEXT] => ) [DISPLAY_VALUE] => Старший научный сотрудник Лаборатории вибрационной гидромеханики ) [PROJECTS] => Array ( [ID] => 135 [TIMESTAMP_X] => 2021-07-08 15:04:03 [IBLOCK_ID] => 1 [NAME] => Исследовательские проекты [ACTIVE] => Y [SORT] => 500 [CODE] => PROJECTS [DEFAULT_VALUE] => Array ( [TEXT] => [TYPE] => HTML ) [PROPERTY_TYPE] => S [ROW_COUNT] => 1 [COL_COUNT] => 30 [LIST_TYPE] => L [MULTIPLE] => N [XML_ID] => [FILE_TYPE] => [MULTIPLE_CNT] => 5 [TMP_ID] => [LINK_IBLOCK_ID] => 0 [WITH_DESCRIPTION] => N [SEARCHABLE] => N [FILTRABLE] => N [IS_REQUIRED] => N [VERSION] => 1 [USER_TYPE] => HTML [USER_TYPE_SETTINGS] => Array ( [height] => 200 ) [HINT] => [PROPERTY_VALUE_ID] => 44854 [VALUE] => Array ( [TEXT] => <p> 1.    РНФ-23-11-00242 «Развитие вибрационных методов управления массопереносом в гидродинамических системах с границей раздела», руководитель, 2023-2025 гг. </p> <p> 2.    Госзадание Министерства просвещения РФ №1023012300003-1-2.3.1 «Фундаментальные основы вибрационного управления тепло-массопереносом», руководитель, 2024-2025 гг. </p> <p> 3.    РНФ-18-71-10053 «Разработка фундаментальных основ вибрационных методов управления неоднородными гидродинамическими системами», исполнитель, 2018-2023 гг. </p> РФФИ 20-41-596011 р_НОЦ_Пермский край «Развитие фундаментальных основ осцилляционной динамики многофазных систем с границей раздела в щелевых зазорах и пористых средах», руководитель, 2021-2023 гг. [TYPE] => HTML ) [DESCRIPTION] => [VALUE_ENUM] => [VALUE_XML_ID] => [VALUE_SORT] => [~VALUE] => Array ( [TEXT] =>

1.    РНФ-23-11-00242 «Развитие вибрационных методов управления массопереносом в гидродинамических системах с границей раздела», руководитель, 2023-2025 гг.

2.    Госзадание Министерства просвещения РФ №1023012300003-1-2.3.1 «Фундаментальные основы вибрационного управления тепло-массопереносом», руководитель, 2024-2025 гг.

3.    РНФ-18-71-10053 «Разработка фундаментальных основ вибрационных методов управления неоднородными гидродинамическими системами», исполнитель, 2018-2023 гг.

РФФИ 20-41-596011 р_НОЦ_Пермский край «Развитие фундаментальных основ осцилляционной динамики многофазных систем с границей раздела в щелевых зазорах и пористых средах», руководитель, 2021-2023 гг. [TYPE] => HTML ) [~DESCRIPTION] => [~NAME] => Исследовательские проекты [~DEFAULT_VALUE] => Array ( [TEXT] => [TYPE] => HTML ) [DISPLAY_VALUE] =>

1.    РНФ-23-11-00242 «Развитие вибрационных методов управления массопереносом в гидродинамических системах с границей раздела», руководитель, 2023-2025 гг.

2.    Госзадание Министерства просвещения РФ №1023012300003-1-2.3.1 «Фундаментальные основы вибрационного управления тепло-массопереносом», руководитель, 2024-2025 гг.

3.    РНФ-18-71-10053 «Разработка фундаментальных основ вибрационных методов управления неоднородными гидродинамическими системами», исполнитель, 2018-2023 гг.

РФФИ 20-41-596011 р_НОЦ_Пермский край «Развитие фундаментальных основ осцилляционной динамики многофазных систем с границей раздела в щелевых зазорах и пористых средах», руководитель, 2021-2023 гг. ) [KAFEDRA] => Array ( [ID] => 124 [TIMESTAMP_X] => 2023-10-17 14:46:39 [IBLOCK_ID] => 1 [NAME] => Кафедра [ACTIVE] => Y [SORT] => 500 [CODE] => KAFEDRA [DEFAULT_VALUE] => [PROPERTY_TYPE] => E [ROW_COUNT] => 1 [COL_COUNT] => 30 [LIST_TYPE] => L [MULTIPLE] => Y [XML_ID] => [FILE_TYPE] => [MULTIPLE_CNT] => 5 [TMP_ID] => [LINK_IBLOCK_ID] => 8 [WITH_DESCRIPTION] => N [SEARCHABLE] => N [FILTRABLE] => N [IS_REQUIRED] => N [VERSION] => 1 [USER_TYPE] => [USER_TYPE_SETTINGS] => a:0:{} [HINT] => [PROPERTY_VALUE_ID] => Array ( [0] => 9733 ) [VALUE] => Array ( [0] => 44 ) [DESCRIPTION] => Array ( [0] => ) [VALUE_ENUM] => [VALUE_XML_ID] => [VALUE_SORT] => [~VALUE] => Array ( [0] => 44 ) [~DESCRIPTION] => Array ( [0] => ) [~NAME] => Кафедра [~DEFAULT_VALUE] => [LINK_ELEMENT_VALUE] => Array ( [44] => Array ( [ID] => 44 [~ID] => 44 [IBLOCK_ID] => 8 [~IBLOCK_ID] => 8 [NAME] => Кафедра физики и технологии [~NAME] => Кафедра физики и технологии [DETAIL_PAGE_URL] => /about_the_university/structure/44/ [~DETAIL_PAGE_URL] => /about_the_university/structure/44/ [PREVIEW_PICTURE] => [~PREVIEW_PICTURE] => [DETAIL_PICTURE] => [~DETAIL_PICTURE] => [SORT] => 500 [~SORT] => 500 [LANG_DIR] => / [~LANG_DIR] => / [CODE] => [~CODE] => [EXTERNAL_ID] => departments_217 [~EXTERNAL_ID] => departments_217 [IBLOCK_SECTION_ID] => [~IBLOCK_SECTION_ID] => [IBLOCK_TYPE_ID] => departments [~IBLOCK_TYPE_ID] => departments [IBLOCK_CODE] => bitrix_edusite_departments_s1 [~IBLOCK_CODE] => bitrix_edusite_departments_s1 [IBLOCK_EXTERNAL_ID] => bitrix_edusite_departments_s1 [~IBLOCK_EXTERNAL_ID] => bitrix_edusite_departments_s1 [LID] => s1 [~LID] => s1 ) ) [DISPLAY_VALUE] => Кафедра физики и технологии ) [AWARDS] => Array ( [ID] => 130 [TIMESTAMP_X] => 2023-10-17 14:46:39 [IBLOCK_ID] => 1 [NAME] => Награды и заслуги [ACTIVE] => Y [SORT] => 500 [CODE] => AWARDS [DEFAULT_VALUE] => Array ( [TYPE] => HTML [TEXT] => ) [PROPERTY_TYPE] => S [ROW_COUNT] => 1 [COL_COUNT] => 30 [LIST_TYPE] => L [MULTIPLE] => N [XML_ID] => [FILE_TYPE] => [MULTIPLE_CNT] => 5 [TMP_ID] => [LINK_IBLOCK_ID] => 0 [WITH_DESCRIPTION] => N [SEARCHABLE] => N [FILTRABLE] => N [IS_REQUIRED] => N [VERSION] => 1 [USER_TYPE] => HTML [USER_TYPE_SETTINGS] => Array ( [height] => 200 ) [HINT] => [PROPERTY_VALUE_ID] => 9735 [VALUE] => Array ( [TEXT] => Победитель конкурса «Профессор года ПГГПУ» (2019). Лауреат премии Пермского края в области науки за лучшую работу в области физико-математических наук (2016, 2023). [TYPE] => HTML ) [DESCRIPTION] => [VALUE_ENUM] => [VALUE_XML_ID] => [VALUE_SORT] => [~VALUE] => Array ( [TEXT] => Победитель конкурса «Профессор года ПГГПУ» (2019). Лауреат премии Пермского края в области науки за лучшую работу в области физико-математических наук (2016, 2023). [TYPE] => HTML ) [~DESCRIPTION] => [~NAME] => Награды и заслуги [~DEFAULT_VALUE] => Array ( [TYPE] => HTML [TEXT] => ) [DISPLAY_VALUE] => Победитель конкурса «Профессор года ПГГПУ» (2019). Лауреат премии Пермского края в области науки за лучшую работу в области физико-математических наук (2016, 2023). ) [INTEREST] => Array ( [ID] => 126 [TIMESTAMP_X] => 2023-10-17 14:46:39 [IBLOCK_ID] => 1 [NAME] => Научные интересы [ACTIVE] => Y [SORT] => 500 [CODE] => INTEREST [DEFAULT_VALUE] => Array ( [TYPE] => HTML [TEXT] => ) [PROPERTY_TYPE] => S [ROW_COUNT] => 1 [COL_COUNT] => 30 [LIST_TYPE] => L [MULTIPLE] => N [XML_ID] => [FILE_TYPE] => [MULTIPLE_CNT] => 5 [TMP_ID] => [LINK_IBLOCK_ID] => 0 [WITH_DESCRIPTION] => N [SEARCHABLE] => N [FILTRABLE] => N [IS_REQUIRED] => N [VERSION] => 1 [USER_TYPE] => HTML [USER_TYPE_SETTINGS] => Array ( [height] => 200 ) [HINT] => [PROPERTY_VALUE_ID] => 44847 [VALUE] => Array ( [TEXT] => Вибрационная гидромеханика [TYPE] => HTML ) [DESCRIPTION] => [VALUE_ENUM] => [VALUE_XML_ID] => [VALUE_SORT] => [~VALUE] => Array ( [TEXT] => Вибрационная гидромеханика [TYPE] => HTML ) [~DESCRIPTION] => [~NAME] => Научные интересы [~DEFAULT_VALUE] => Array ( [TYPE] => HTML [TEXT] => ) [DISPLAY_VALUE] => Вибрационная гидромеханика ) [Publications] => Array ( [ID] => 16 [TIMESTAMP_X] => 2021-07-08 11:23:54 [IBLOCK_ID] => 1 [NAME] => Публикации [ACTIVE] => Y [SORT] => 500 [CODE] => Publications [DEFAULT_VALUE] => Array ( [TEXT] => [TYPE] => HTML ) [PROPERTY_TYPE] => S [ROW_COUNT] => 2 [COL_COUNT] => 50 [LIST_TYPE] => L [MULTIPLE] => N [XML_ID] => 164 [FILE_TYPE] => [MULTIPLE_CNT] => 1 [TMP_ID] => [LINK_IBLOCK_ID] => 0 [WITH_DESCRIPTION] => N [SEARCHABLE] => N [FILTRABLE] => N [IS_REQUIRED] => N [VERSION] => 1 [USER_TYPE] => HTML [USER_TYPE_SETTINGS] => Array ( [height] => 200 ) [HINT] => [PROPERTY_VALUE_ID] => 9731 [VALUE] => Array ( [TEXT] => <p> 1.    Vjatkin A.A., Kozlov V.G., Sabirov R.R. Convection of a heat-generating fluid in a rotating cylindrical cavity subject to transverse vibrations // International Journal of Thermal Sciences, 2019. Vol. 137 P. 560–570. </p> <p> 2.    Kozlov V.G., Vjatkin A.A., Sabirov R.R., Myznikov V.M. Methods of experimental study of thermal convection in cavity subject to rotation and vibration // MethodsX, 6 (2019) P. 2420–2428 </p> <p> 3.    Kozlov V.G., Rysin K.Y., Vjatkin A.A. Vibroconvective stability of liquid in horizontal plane layer subject to circular translational vibrations // Microgravity Sci. Technol. 2019. 31, P. 759–765. </p> <p> 4.    Vjatkin, A., Siraev, R. &amp; Kozlov, V. Theoretical and Experimental Study of Thermal Convection in Rotating Horizontal Annulus. // Microgravity Sci. Technol. 2020. Vol. 32, P. 1133–1145. </p> <p> 5.    Kozlov V.G., Rysin K.Y., Vjatkin A.A. Thermal Vibrational Convection in a Rotating Plane Layer // Microgravity Sci. Technol. 2022. Vol. 34, 62 (2022) </p> <p> 6.    Vlasova O., Karpunin I., Latyshev D., Kozlov V. Steady flows of a fluid oscillating in an axisymmetric channel of variable cross-section, versus the dimensionless frequency // Microgravity Science and Technology. – 2020. – Vol. 32, pp. 363–368 </p> <p> 7.    Kozlov V., Vlasova O. Oscillatory dynamics of immiscible liquids with high viscosity contrast in a rectangular Hele–Shaw channel // Physics of Fluids. – 2022. – Т. 34. – No. 3. – P. 032121. </p> <p> 8.    Vlasova O. A., Kozlov V. G. Experimental Study of the Solid Motion in the Vicinity of the Wall in an Oscillating Cavity // Microgravity Science and Technology. – 2023. – Т. 35. – No. 4. – P. 38. </p> <p> 9.    Kozlov V., Vlasova O., Dyakova V. Oscillatory excitation of Faraday waves on the interface of immiscible fluids in a slotted channel // Physics of Fluids. – 2024. – Vol. 36. – No.10. </p> <p> 10.        Kozlov V., Karpunin I., Kozlov N. Finger instability of oscillating liquid–liquid interface in radial Hele-Shaw cell // Physics of Fluids. – 2020. – Vol. 32. – №. 10. </p> <p> 11.        Карпунин И. Э., Козлов В. Г. Осцилляционная динамика границы раздела жидкостей в радиальной ячейке Хеле–Шоу // Прикладная механика и техническая физика. – 2023. – Т. 64. – №. 3. – С. 62-73. </p> <p> 12.        Kozlov V., Subbotin S., Karpunin I. Supercritical Dynamics of an Oscillating Interface of Immiscible Liquids in Axisymmetric Hele-Shaw Cells // Fluids. – 2023. – Vol. 8. – №. 7. – P. 204. </p> <p> 13.        Subbotin, S., Karpunin, I., Kurysheva, D., Kozlov, V. Effect of the density ratio on the oscillatory Saffman–Taylor instability in vertical conical Hele–Shaw cell // Physics of Fluids. – 2023. – Vol. 35. – №. 9. </p> <p> 14.        V. Kozlov, D. Polezhaev. Enhanced mass transfer in air oscillating in a channel with periodically varying radius // Int. J. Heat Mass Transfer. 2021. Vol. 167. P. 120818 </p> <p> 15.        D. Polezhaev, V. Kozlov, A. Viviani. Measure method of effective diffusion in gas oscillating in channels of variable radius or porous medium // MethodsX. 2021. Vol. 8. P. 101552 </p> <p> 16.        Subbotin S., Shmakova N., Kozlov V., Ermanyuk E. Nonlinear regimes of inertial wave attractors generated by a precessing lid: zonal flows and Rossby waves // Phys. Fluids 2023. V. 35 (7). P. 074110. </p> <p> 17.        Subbotin S., Shmakova N., Ermanyuk E., Kozlov V. Stewartson layer instability and triadic resonances in rotating sphere with oscillating inner core // Phys. Fluids 2022 V. 34 (6). 064103 </p> <p> 18.        Subbotin S.V., Kozlov V.G. Effect of differential rotation of oscillating inner core on steady flow instability in a rotating sphere // Microgravity Sci. Technol. 2020. V. 32 (5). P. 825–836. </p> <p> 19.        Kozlov V, Petukhova M, Kozlov N. Dynamics of liquids with high viscosity contrast in unevenly rotating Hele-Shaw cell // Phil. Trans. R. Soc. A, 2023, 20220082. </p> [TYPE] => HTML ) [DESCRIPTION] => [VALUE_ENUM] => [VALUE_XML_ID] => [VALUE_SORT] => [~VALUE] => Array ( [TEXT] =>

1.    Vjatkin A.A., Kozlov V.G., Sabirov R.R. Convection of a heat-generating fluid in a rotating cylindrical cavity subject to transverse vibrations // International Journal of Thermal Sciences, 2019. Vol. 137 P. 560–570.

2.    Kozlov V.G., Vjatkin A.A., Sabirov R.R., Myznikov V.M. Methods of experimental study of thermal convection in cavity subject to rotation and vibration // MethodsX, 6 (2019) P. 2420–2428

3.    Kozlov V.G., Rysin K.Y., Vjatkin A.A. Vibroconvective stability of liquid in horizontal plane layer subject to circular translational vibrations // Microgravity Sci. Technol. 2019. 31, P. 759–765.

4.    Vjatkin, A., Siraev, R. & Kozlov, V. Theoretical and Experimental Study of Thermal Convection in Rotating Horizontal Annulus. // Microgravity Sci. Technol. 2020. Vol. 32, P. 1133–1145.

5.    Kozlov V.G., Rysin K.Y., Vjatkin A.A. Thermal Vibrational Convection in a Rotating Plane Layer // Microgravity Sci. Technol. 2022. Vol. 34, 62 (2022)

6.    Vlasova O., Karpunin I., Latyshev D., Kozlov V. Steady flows of a fluid oscillating in an axisymmetric channel of variable cross-section, versus the dimensionless frequency // Microgravity Science and Technology. – 2020. – Vol. 32, pp. 363–368

7.    Kozlov V., Vlasova O. Oscillatory dynamics of immiscible liquids with high viscosity contrast in a rectangular Hele–Shaw channel // Physics of Fluids. – 2022. – Т. 34. – No. 3. – P. 032121.

8.    Vlasova O. A., Kozlov V. G. Experimental Study of the Solid Motion in the Vicinity of the Wall in an Oscillating Cavity // Microgravity Science and Technology. – 2023. – Т. 35. – No. 4. – P. 38.

9.    Kozlov V., Vlasova O., Dyakova V. Oscillatory excitation of Faraday waves on the interface of immiscible fluids in a slotted channel // Physics of Fluids. – 2024. – Vol. 36. – No.10.

10.        Kozlov V., Karpunin I., Kozlov N. Finger instability of oscillating liquid–liquid interface in radial Hele-Shaw cell // Physics of Fluids. – 2020. – Vol. 32. – №. 10.

11.        Карпунин И. Э., Козлов В. Г. Осцилляционная динамика границы раздела жидкостей в радиальной ячейке Хеле–Шоу // Прикладная механика и техническая физика. – 2023. – Т. 64. – №. 3. – С. 62-73.

12.        Kozlov V., Subbotin S., Karpunin I. Supercritical Dynamics of an Oscillating Interface of Immiscible Liquids in Axisymmetric Hele-Shaw Cells // Fluids. – 2023. – Vol. 8. – №. 7. – P. 204.

13.        Subbotin, S., Karpunin, I., Kurysheva, D., Kozlov, V. Effect of the density ratio on the oscillatory Saffman–Taylor instability in vertical conical Hele–Shaw cell // Physics of Fluids. – 2023. – Vol. 35. – №. 9.

14.        V. Kozlov, D. Polezhaev. Enhanced mass transfer in air oscillating in a channel with periodically varying radius // Int. J. Heat Mass Transfer. 2021. Vol. 167. P. 120818

15.        D. Polezhaev, V. Kozlov, A. Viviani. Measure method of effective diffusion in gas oscillating in channels of variable radius or porous medium // MethodsX. 2021. Vol. 8. P. 101552

16.        Subbotin S., Shmakova N., Kozlov V., Ermanyuk E. Nonlinear regimes of inertial wave attractors generated by a precessing lid: zonal flows and Rossby waves // Phys. Fluids 2023. V. 35 (7). P. 074110.

17.        Subbotin S., Shmakova N., Ermanyuk E., Kozlov V. Stewartson layer instability and triadic resonances in rotating sphere with oscillating inner core // Phys. Fluids 2022 V. 34 (6). 064103

18.        Subbotin S.V., Kozlov V.G. Effect of differential rotation of oscillating inner core on steady flow instability in a rotating sphere // Microgravity Sci. Technol. 2020. V. 32 (5). P. 825–836.

19.        Kozlov V, Petukhova M, Kozlov N. Dynamics of liquids with high viscosity contrast in unevenly rotating Hele-Shaw cell // Phil. Trans. R. Soc. A, 2023, 20220082.

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1.    Vjatkin A.A., Kozlov V.G., Sabirov R.R. Convection of a heat-generating fluid in a rotating cylindrical cavity subject to transverse vibrations // International Journal of Thermal Sciences, 2019. Vol. 137 P. 560–570.

2.    Kozlov V.G., Vjatkin A.A., Sabirov R.R., Myznikov V.M. Methods of experimental study of thermal convection in cavity subject to rotation and vibration // MethodsX, 6 (2019) P. 2420–2428

3.    Kozlov V.G., Rysin K.Y., Vjatkin A.A. Vibroconvective stability of liquid in horizontal plane layer subject to circular translational vibrations // Microgravity Sci. Technol. 2019. 31, P. 759–765.

4.    Vjatkin, A., Siraev, R. & Kozlov, V. Theoretical and Experimental Study of Thermal Convection in Rotating Horizontal Annulus. // Microgravity Sci. Technol. 2020. Vol. 32, P. 1133–1145.

5.    Kozlov V.G., Rysin K.Y., Vjatkin A.A. Thermal Vibrational Convection in a Rotating Plane Layer // Microgravity Sci. Technol. 2022. Vol. 34, 62 (2022)

6.    Vlasova O., Karpunin I., Latyshev D., Kozlov V. Steady flows of a fluid oscillating in an axisymmetric channel of variable cross-section, versus the dimensionless frequency // Microgravity Science and Technology. – 2020. – Vol. 32, pp. 363–368

7.    Kozlov V., Vlasova O. Oscillatory dynamics of immiscible liquids with high viscosity contrast in a rectangular Hele–Shaw channel // Physics of Fluids. – 2022. – Т. 34. – No. 3. – P. 032121.

8.    Vlasova O. A., Kozlov V. G. Experimental Study of the Solid Motion in the Vicinity of the Wall in an Oscillating Cavity // Microgravity Science and Technology. – 2023. – Т. 35. – No. 4. – P. 38.

9.    Kozlov V., Vlasova O., Dyakova V. Oscillatory excitation of Faraday waves on the interface of immiscible fluids in a slotted channel // Physics of Fluids. – 2024. – Vol. 36. – No.10.

10.        Kozlov V., Karpunin I., Kozlov N. Finger instability of oscillating liquid–liquid interface in radial Hele-Shaw cell // Physics of Fluids. – 2020. – Vol. 32. – №. 10.

11.        Карпунин И. Э., Козлов В. Г. Осцилляционная динамика границы раздела жидкостей в радиальной ячейке Хеле–Шоу // Прикладная механика и техническая физика. – 2023. – Т. 64. – №. 3. – С. 62-73.

12.        Kozlov V., Subbotin S., Karpunin I. Supercritical Dynamics of an Oscillating Interface of Immiscible Liquids in Axisymmetric Hele-Shaw Cells // Fluids. – 2023. – Vol. 8. – №. 7. – P. 204.

13.        Subbotin, S., Karpunin, I., Kurysheva, D., Kozlov, V. Effect of the density ratio on the oscillatory Saffman–Taylor instability in vertical conical Hele–Shaw cell // Physics of Fluids. – 2023. – Vol. 35. – №. 9.

14.        V. Kozlov, D. Polezhaev. Enhanced mass transfer in air oscillating in a channel with periodically varying radius // Int. J. Heat Mass Transfer. 2021. Vol. 167. P. 120818

15.        D. Polezhaev, V. Kozlov, A. Viviani. Measure method of effective diffusion in gas oscillating in channels of variable radius or porous medium // MethodsX. 2021. Vol. 8. P. 101552

16.        Subbotin S., Shmakova N., Kozlov V., Ermanyuk E. Nonlinear regimes of inertial wave attractors generated by a precessing lid: zonal flows and Rossby waves // Phys. Fluids 2023. V. 35 (7). P. 074110.

17.        Subbotin S., Shmakova N., Ermanyuk E., Kozlov V. Stewartson layer instability and triadic resonances in rotating sphere with oscillating inner core // Phys. Fluids 2022 V. 34 (6). 064103

18.        Subbotin S.V., Kozlov V.G. Effect of differential rotation of oscillating inner core on steady flow instability in a rotating sphere // Microgravity Sci. Technol. 2020. V. 32 (5). P. 825–836.

19.        Kozlov V, Petukhova M, Kozlov N. Dynamics of liquids with high viscosity contrast in unevenly rotating Hele-Shaw cell // Phil. Trans. R. Soc. A, 2023, 20220082.

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Должность
Профессор кафедры физики и технологии
Телефон
8 (342) 215-19-47 (доб. 472)
E-mail
kozlov@pspu.ru
Адрес работы
ул. Пушкина, 42, каб. А-213
Курсы и дисциплины
Современные главы механики, Конструирование экспериментальных установок, Механика сплошных сред, Оптика, Молекулярная физика и термодинамика
Учёная степень
доктор физико-математических наук
Учёное звание
профессор
Базовое образование
Пермский государственный университет, специальность "Физика"
Дополнительное образование/дополнительные сведения
1997, Пермский государственный университет, защита диссертации на соискание ученой степени доктора физико-математических наук Повышение квалификации 2019, "Электронная информационная образовательная система ВУЗа", ПГГПУ, 36 часов
Другие должности, занимаемые в университете
Старший научный сотрудник Лаборатории вибрационной гидромеханики
Исследовательские проекты

1.    РНФ-23-11-00242 «Развитие вибрационных методов управления массопереносом в гидродинамических системах с границей раздела», руководитель, 2023-2025 гг.

2.    Госзадание Министерства просвещения РФ №1023012300003-1-2.3.1 «Фундаментальные основы вибрационного управления тепло-массопереносом», руководитель, 2024-2025 гг.

3.    РНФ-18-71-10053 «Разработка фундаментальных основ вибрационных методов управления неоднородными гидродинамическими системами», исполнитель, 2018-2023 гг.

РФФИ 20-41-596011 р_НОЦ_Пермский край «Развитие фундаментальных основ осцилляционной динамики многофазных систем с границей раздела в щелевых зазорах и пористых средах», руководитель, 2021-2023 гг.
Кафедра
Кафедра физики и технологии
Награды и заслуги
Победитель конкурса «Профессор года ПГГПУ» (2019). Лауреат премии Пермского края в области науки за лучшую работу в области физико-математических наук (2016, 2023).
Научные интересы
Вибрационная гидромеханика
Публикации

1.    Vjatkin A.A., Kozlov V.G., Sabirov R.R. Convection of a heat-generating fluid in a rotating cylindrical cavity subject to transverse vibrations // International Journal of Thermal Sciences, 2019. Vol. 137 P. 560–570.

2.    Kozlov V.G., Vjatkin A.A., Sabirov R.R., Myznikov V.M. Methods of experimental study of thermal convection in cavity subject to rotation and vibration // MethodsX, 6 (2019) P. 2420–2428

3.    Kozlov V.G., Rysin K.Y., Vjatkin A.A. Vibroconvective stability of liquid in horizontal plane layer subject to circular translational vibrations // Microgravity Sci. Technol. 2019. 31, P. 759–765.

4.    Vjatkin, A., Siraev, R. & Kozlov, V. Theoretical and Experimental Study of Thermal Convection in Rotating Horizontal Annulus. // Microgravity Sci. Technol. 2020. Vol. 32, P. 1133–1145.

5.    Kozlov V.G., Rysin K.Y., Vjatkin A.A. Thermal Vibrational Convection in a Rotating Plane Layer // Microgravity Sci. Technol. 2022. Vol. 34, 62 (2022)

6.    Vlasova O., Karpunin I., Latyshev D., Kozlov V. Steady flows of a fluid oscillating in an axisymmetric channel of variable cross-section, versus the dimensionless frequency // Microgravity Science and Technology. – 2020. – Vol. 32, pp. 363–368

7.    Kozlov V., Vlasova O. Oscillatory dynamics of immiscible liquids with high viscosity contrast in a rectangular Hele–Shaw channel // Physics of Fluids. – 2022. – Т. 34. – No. 3. – P. 032121.

8.    Vlasova O. A., Kozlov V. G. Experimental Study of the Solid Motion in the Vicinity of the Wall in an Oscillating Cavity // Microgravity Science and Technology. – 2023. – Т. 35. – No. 4. – P. 38.

9.    Kozlov V., Vlasova O., Dyakova V. Oscillatory excitation of Faraday waves on the interface of immiscible fluids in a slotted channel // Physics of Fluids. – 2024. – Vol. 36. – No.10.

10.        Kozlov V., Karpunin I., Kozlov N. Finger instability of oscillating liquid–liquid interface in radial Hele-Shaw cell // Physics of Fluids. – 2020. – Vol. 32. – №. 10.

11.        Карпунин И. Э., Козлов В. Г. Осцилляционная динамика границы раздела жидкостей в радиальной ячейке Хеле–Шоу // Прикладная механика и техническая физика. – 2023. – Т. 64. – №. 3. – С. 62-73.

12.        Kozlov V., Subbotin S., Karpunin I. Supercritical Dynamics of an Oscillating Interface of Immiscible Liquids in Axisymmetric Hele-Shaw Cells // Fluids. – 2023. – Vol. 8. – №. 7. – P. 204.

13.        Subbotin, S., Karpunin, I., Kurysheva, D., Kozlov, V. Effect of the density ratio on the oscillatory Saffman–Taylor instability in vertical conical Hele–Shaw cell // Physics of Fluids. – 2023. – Vol. 35. – №. 9.

14.        V. Kozlov, D. Polezhaev. Enhanced mass transfer in air oscillating in a channel with periodically varying radius // Int. J. Heat Mass Transfer. 2021. Vol. 167. P. 120818

15.        D. Polezhaev, V. Kozlov, A. Viviani. Measure method of effective diffusion in gas oscillating in channels of variable radius or porous medium // MethodsX. 2021. Vol. 8. P. 101552

16.        Subbotin S., Shmakova N., Kozlov V., Ermanyuk E. Nonlinear regimes of inertial wave attractors generated by a precessing lid: zonal flows and Rossby waves // Phys. Fluids 2023. V. 35 (7). P. 074110.

17.        Subbotin S., Shmakova N., Ermanyuk E., Kozlov V. Stewartson layer instability and triadic resonances in rotating sphere with oscillating inner core // Phys. Fluids 2022 V. 34 (6). 064103

18.        Subbotin S.V., Kozlov V.G. Effect of differential rotation of oscillating inner core on steady flow instability in a rotating sphere // Microgravity Sci. Technol. 2020. V. 32 (5). P. 825–836.

19.        Kozlov V, Petukhova M, Kozlov N. Dynamics of liquids with high viscosity contrast in unevenly rotating Hele-Shaw cell // Phil. Trans. R. Soc. A, 2023, 20220082.

Факультет
Физический факультет (ФизФ)
Членство в профессиональных сообществах регионального, всероссийского или международного масштаба
Член научного общества "ELGRA" (European Low Gravity Association)