Content of issue 06, volume 31, 2018

Topical issue. Siberian Aerosols

1. Volkova K. A., Poberovsky A. V., Timofeev Yu. M., Ionov D. V., Holben B. N., Smirnov A., Slutsker I. Aerosol optical characteristics retrieved from measurements of CIMEL sun photometer (AERONET) near Saint Petersburg. P. 425–431
Bibliographic reference:
Volkova K. A., Poberovsky A. V., Timofeev Yu. M., Ionov D. V., Holben B. N., Smirnov A., Slutsker I. Aerosol optical characteristics retrieved from measurements of CIMEL sun photometer (AERONET) near Saint Petersburg. // Optika Atmosfery i Okeana. 2018. V. 31. No. 06. P. 425–431. DOI: 10.15372/AOO20180601 [in Russian].
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Volkova K.A., Poberovsky A.V., Timofeev Yu.M., Ionov D.V., Holben B.N., Smirnov A. and Slutsker I. Aerosol Optical Characteristics Retrieved from CIMEL Sun Photometer Measurements (AERONET) near St. Petersburg // Atmospheric and Oceanic Optics, 2018, V. 31. No. 06. pp. 635–641.
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2. Khutorova O. G., Khutorov V. E., Teptin G. M. Interannual variability of surface and integral moisture content in the European territory and atmospheric circulation. P. 432–437
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Khutorova O. G., Khutorov V. E., Teptin G. M. Interannual variability of surface and integral moisture content in the European territory and atmospheric circulation. // Optika Atmosfery i Okeana. 2018. V. 31. No. 06. P. 432–437. DOI: 10.15372/AOO20180602 [in Russian].
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Khutorova O.G., Khutorov V.E. and Teptin G.M. Interannual Variability of Surface and Integrated Water Vapor and Atmospheric Circulation in Europe. // Atmospheric and Oceanic Optics, 2018, V. 31. No. 05. pp. 486–491.
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3. Raputa V. F., Simonenkov D. V., Belan B. D., Yaroslavtseva T. V. A numerical research of processes of transfer and transformation of gas and aerosol impurities in plumes of emissions of the Norilsk industrial region. P. 438–442
Bibliographic reference:
Raputa V. F., Simonenkov D. V., Belan B. D., Yaroslavtseva T. V. A numerical research of processes of transfer and transformation of gas and aerosol impurities in plumes of emissions of the Norilsk industrial region. // Optika Atmosfery i Okeana. 2018. V. 31. No. 06. P. 438–442. DOI: 10.15372/AOO20180603 [in Russian].
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Raputa V.F., Simonenkov D.V., Belan B.D. and Yaroslavtseva T.V. Numerical Study of Gas and Aerosol Impurity Transfer and Transformation Processes in the Plume of the Norilsk Industrial Region. // Atmospheric and Oceanic Optics, 2018, V. 31. No. 05. pp. 466–470.
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4. Antokhina O. Yu., Аntokhin P. N., Devyatova E. V., Martynova Yu. V., Mordvinov V. I. The main precipitation modes over Mongolia and southern part of Eastern Siberia in July. P. 443–450
Bibliographic reference:
Antokhina O. Yu., Аntokhin P. N., Devyatova E. V., Martynova Yu. V., Mordvinov V. I. The main precipitation modes over Mongolia and southern part of Eastern Siberia in July. // Optika Atmosfery i Okeana. 2018. V. 31. No. 06. P. 443–450. DOI: 10.15372/AOO20180604 [in Russian].
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5. Pustovalov K. N., Nagorsky P. M. The comparative analysis of electrical quantities of a surface layer during passage of cumulonimbus clouds in the warm and cold seasons. P. 451–455
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Pustovalov K. N., Nagorsky P. M. The comparative analysis of electrical quantities of a surface layer during passage of cumulonimbus clouds in the warm and cold seasons. // Optika Atmosfery i Okeana. 2018. V. 31. No. 06. P. 451–455. DOI: 10.15372/AOO20180605 [in Russian].
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Pustovalov K.N. and Nagorskiy P.M. Comparative Analysis of Electric State of Surface Air Layer during Passage of Cumulonimbus Clouds in Warm and Cold Seasons // Atmospheric and Oceanic Optics, 2018, V. 31. No. 06. pp. 685–689.
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6. Penenko A. V., Mukatova Z. S., Penenko V. V., Gochakov A. V., Аntokhin P. N. Numerical study of direct variational data assimilation algorithm in the urban scenario. P. 456–462
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Penenko A. V., Mukatova Z. S., Penenko V. V., Gochakov A. V., Аntokhin P. N. Numerical study of direct variational data assimilation algorithm in the urban scenario. // Optika Atmosfery i Okeana. 2018. V. 31. No. 06. P. 456–462. DOI: 10.15372/AOO20180606 [in Russian].
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Penenko A.V., Mukatova Zh.S., Penenko V.V., Gochakov A.V. and Antokhin P.N. Numerical Investigation of the Direct Variational Algorithm of Data Assimilation in the Urban Scenario // Atmospheric and Oceanic Optics, 2018, V. 31. No. 06. pp. 678–684.
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7. Krylova A. I., Antipova E. A. Numerical simulation of the hydraulic regime of the Lena River delta. P. 463–467
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Krylova A. I., Antipova E. A. Numerical simulation of the hydraulic regime of the Lena River delta. // Optika Atmosfery i Okeana. 2018. V. 31. No. 06. P. 463–467. DOI: 10.15372/AOO20180607 [in Russian].
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8. Svarovskaya L. I., Аltunina L. K., Yashchenko I. G. Hydrochemical studies of water bodies in the area of oil-producing complexes. P. 468–472
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Svarovskaya L. I., Аltunina L. K., Yashchenko I. G. Hydrochemical studies of water bodies in the area of oil-producing complexes. // Optika Atmosfery i Okeana. 2018. V. 31. No. 06. P. 468–472. DOI: 10.15372/AOO20180608 [in Russian].
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9. Timofeev D. N., Konoshonkin A. V., Kustova N. V. Modified beam-splitting 1 algoritm for solving the problem of light scattering on concave atmospheric ice crystals. P. 473–480
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Timofeev D. N., Konoshonkin A. V., Kustova N. V. Modified beam-splitting 1 algoritm for solving the problem of light scattering on concave atmospheric ice crystals. // Optika Atmosfery i Okeana. 2018. V. 31. No. 06. P. 473–480. DOI: 10.15372/AOO20180609 [in Russian].
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Timofeev D.N., Konoshonkin A.V. and Kustova N.V. Modified Beam-Splitting 1 (MBS-1) Algorithm for Solving the Problem of Light Scattering by Nonconvex Atmospheric Ice Particles // Atmospheric and Oceanic Optics, 2018, V. 31. No. 06. pp. 642–649.
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10. Zakharenko V. S., Daibova E. B. Composition and properties of the surface of aerosol microparticles produced from nonporosity zinc oxide in ambient air. P. 481–484
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Zakharenko V. S., Daibova E. B. Composition and properties of the surface of aerosol microparticles produced from nonporosity zinc oxide in ambient air. // Optika Atmosfery i Okeana. 2018. V. 31. No. 06. P. 481–484. DOI: 10.15372/AOO20180610 [in Russian].
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11. Buntov D. V., Gushchin R. A., Dazenko O. I. Four-channel photoelectric counter of saltating sand particles. P. 485–488
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Buntov D. V., Gushchin R. A., Dazenko O. I. Four-channel photoelectric counter of saltating sand particles. // Optika Atmosfery i Okeana. 2018. V. 31. No. 06. P. 485–488. DOI: 10.15372/AOO20180611 [in Russian].
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Buntov D.V., Gushchin R.A. and Datsenko O.I. Four-Channel Photoelectric Counter of Saltating Sand Particles. // Atmospheric and Oceanic Optics, 2018, V. 31. No. 05. pp. 548–551.
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12. Arkhipov V. A., Zolotorev N. N., Basalaev S. A., Bondarchuk S. S. Dispersion of droplets in the nozzle spray cone. P. 489–491
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Arkhipov V. A., Zolotorev N. N., Basalaev S. A., Bondarchuk S. S. Dispersion of droplets in the nozzle spray cone. // Optika Atmosfery i Okeana. 2018. V. 31. No. 06. P. 489–491. DOI: 10.15372/AOO20180612 [in Russian].
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13. Belan B. D., Buchelnikov V. S., Lysova V. F., Simonenkov D. V., Talovskaya A. V., Tentyukov M. P., Yazikov E. G. Estimation of the influence of meteorological and orographic conditions on the aerosol contamination of snow cover in south of Tomsk region. P. 492–500
Bibliographic reference:
Belan B. D., Buchelnikov V. S., Lysova V. F., Simonenkov D. V., Talovskaya A. V., Tentyukov M. P., Yazikov E. G. Estimation of the influence of meteorological and orographic conditions on the aerosol contamination of snow cover in south of Tomsk region. // Optika Atmosfery i Okeana. 2018. V. 31. No. 06. P. 492–500. DOI: 10.15372/AOO20180613 [in Russian].
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Belan B.D., Buchelnikov V.S., Lysova V.F., Simonenkov D.V., Talovskaya A.V., Tentyukov M.P. and Yazikov E. G. Estimation of the Effect of Meteorological and Orographic Conditions on Aerosol Contamination of the Snow Cover in the South of Tomsk Region // Atmospheric and Oceanic Optics, 2018, V. 31. No. 06. pp. 656–664.
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14. Stepkina M. Yu., Kudryashova O. B., Аntonnikova A. A., Muravlev E. V. Experimental study of the evolution of fine particles by methods of aerosol cloud generation. P. 501–504
Bibliographic reference:
Stepkina M. Yu., Kudryashova O. B., Аntonnikova A. A., Muravlev E. V. Experimental study of the evolution of fine particles by methods of aerosol cloud generation. // Optika Atmosfery i Okeana. 2018. V. 31. No. 06. P. 501–504. DOI: 10.15372/AOO20180614 [in Russian].
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