Труды сотрудников ИВМ СО РАН

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Найдено документов в текущей БД: 33

    Numerical analysis of pollutant transport in upper turbulent layers of seas and oceans
/ N. V. Dmitriev, E. A. Dvurechenskaya // Meteorologiya i Gidrologiya. - 1994. - Is. 12. - P53-62 . - ISSN 0130-2906

Кл.слова (ненормированные):
Computer simulation -- Flow of fluids -- Fluid dynamics -- Hydrodynamics -- Mathematical models -- Numerical analysis -- Oceanography -- Seawater -- Thermodynamics -- Turbulence -- Pollutant transfer -- Water pollution

Аннотация: Two mathematical models of admixture dispersion in a surface turbulent layer of the pool are considered. All hydrodynamic characteristics required for the models are determined using a thermodynamic model of the horizontally homogeneous upper turbulent layer of the ocean. Numerical experiments have been performed to estimate the influence of stratification on the admixture diffusion. The advantages and drawbacks of the models are discussed. The importance of consideration of the influence of stratification on admixture diffusion is shown.

Scopus

Держатели документа:
Vychislitel'nyj Tsentr SO RAN, Krasnoyarsk, Russian Federation
ИВМ СО РАН

Доп.точки доступа:
Dmitriev, N.V.; Dvurechenskaya, E.A.

    Biotic indices and metrics in assessment of the water quality of small rivers on the territory of Ergaki Nature Park (South of Krasnoyarsk Krai)
[Text] / A. V. Andrianova // Contemp. Probl. Ecol. - 2015. - Vol. 8, Is. 3. - P358-367, DOI 10.1134/S1995425515030038. - Cited References:28. - The work was financially and technically supported by Special Design and Technological Bureau Nauka, Siberian Branch, Russian Academy of Sciences, within the framework of integrated research included in the program for supporting the permanent establishments of the Siberian Branch institutes of the Russian Academy of Sciences. . - ISSN 1995-4255. - ISSN 1995-4263
РУБ Ecology

Аннотация: This article presents the dominant species and groups and the spatial distribution and structural indices of benthic communities in small mountain streams located on the territory of the Ergaki Nature Park (in the south of Krasnoyarsk krai). A comparative analysis of bioindicators and metrics, a part of which is used by the European Water Framework Directive to determine water quality, was carried out. It was established that the EPT, BMWP, and IBGN indices have the highest sensitivity, which allows one to recommend their use as standard indices for assessing water quality in the small mountain rivers of the given region. By ranking the obtained biotic indices and metrics with respect to background values, the gradations of water quality were determined and the integral index was introduced.

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Scopus

Держатели документа:
Russian Acad Sci, Siberian Branch, Inst Computat Modeling, Krasnoyarsk 660036, Russia.

Доп.точки доступа:
Andrianova, A.V.; Андрианова, Анна Владимировна; Special Design and Technological Bureau Nauka, Siberian Branch, Russian Academy of Sciences

    Fluorescent and optical properties of sunflower leaves grown under oil pollution
/ E. N. Zavorueva, V. V. Zavoruev, R. T. Emelyanov // Proceedings of SPIE - The International Society for Optical Engineering : SPIE, 2016. - Vol. 10035: 22nd International Symposium on Atmospheric and Ocean Optics: Atmospheric Physics (30 June 2016 through 3 July 2016, ) Conference code: 125266, DOI 10.1117/12.2249737 . -
Аннотация: Sunflower plants were grown in the laboratory under continuous light on the ground, the sand and the liquid medium. Fluorescence parameters were measured using PAM fluorimeter (Walz, Germany) and optical spectrophotometric sensor CCM-200 plus, Opti-Sciences, USA). The change of parameters of Fo, Fm, Fv/Fm, ETR and CCI in leaves after addition of oil at a concentration of 6 g/kg is investigated. It is shown that the parameters CCI and ETR (electron transport rates) are most sensitive to oil pollution. The value of the CCI in sunflower leaves increased (compared to control) after the addition of oil in the soil and decreased after the addition of oil in sand and liquid culture medium. © 2016 SPIE.

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Держатели документа:
Siberian Federal University, 79 Svobodny pr., Krasnoyarsk, Russian Federation
Institute of Computational Modeling, SB, RAS, Akademgorodok, Krasnoyarsk, Russian Federation

Доп.точки доступа:
Zavorueva, E. N.; Zavoruev, V. V.; Emelyanov, R. T.

    GIS-aided modelling of two Siberian reservation sites
/ M. Erunova, M. Sadovsky // (26 April 2017 through 28 April 2017 : Springer Verlag, 2017. - Vol. 10208 LNCS. - P617-628, DOI 10.1007/978-3-319-56148-6_55 . -
Аннотация: Reserved territories seem to be the best reference sites of wildnature, where the long-term observations are carried out. Simulation model of spatially distributed processes of contamination of such reservation is developed, and the dynamics of some pollutants is studied. An issue of the generalized evaluation of an ecological system status is discussed. © Springer International Publishing AG 2017.

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Держатели документа:
SFU, Krasnoyarsk, Russian Federation
Institute of Computational Modelling of SB RAS, Akademgorodok, Krasnoyarsk, Russian Federation
Krasnoyarsk State Agrarian University, Mira prosp., 90, Krasnoyarsk, Russian Federation

Доп.точки доступа:
Erunova, M.; Sadovsky, M.

    Web technologies for the geoinformation system of rapid assessment of atmospheric pollution and climatic conditions in krasnoyarsk
/ O. E. Yakubaylik, A. A. Kadochnikov, A. V. Tokarev // CEUR Workshop Proceedings : CEUR-WS, 2017. - Vol. 2033: 2017 All-Russian Conference "Spatial Data Processing for Monitoring of Natural and Anthropogenic Processes, SDM 2017 (29 August 2017 through 31 August 2017, ) Conference code: 132851. - С. 44-48 . -
Аннотация: The functionality, architectural features, the user interface of the geoinformation web-system of environmental monitoring of Krasnoyarsk is discussed. This system is created in service-oriented architecture. Data collection from the automated stations to monitor the state of atmospheric air has been implemented. An original device to measure the level of contamination of the atmosphere by fine dust PM2.5 has developed. Assessment of the level of air pollution is based on the quality index AQI atmosphere.

Scopus

Держатели документа:
Federal Research Center Krasnoyarsk Science Center of Siberian Branch of Russian Academy of Sciences, Institute of Computational Modelling SB RAS, Krasnoyarsk, Russian Federation
Siberian Federal University, Krasnoyarsk, Russian Federation

Доп.точки доступа:
Yakubaylik, O. E.; Kadochnikov, A. A.; Tokarev, A. V.

    The concentration of PM10 in the atmospheric surface layer of Krasnoyarsk in the period of unfavorable meteorological conditions
/ V. V. Zavoruev, E. N. Zavorueva // Proceedings of SPIE - The International Society for Optical Engineering : SPIE, 2017. - Vol. 10466: 23rd International Symposium on Atmospheric and Ocean Optics: Atmospheric Physics (3 July 2017 through 7 July 2017, ) Conference code: 134942, DOI 10.1117/12.2288754 . -
Аннотация: The periods of unfavorable meteorological conditions (UMC) do not coincide with the periods of contamination of suspended particles PM10. There are cases when during the regime of the UMS is not happening the pollution of the atmosphere by aerosol particles. At UMC the pollution of suspended particles in different parts of the city differs as the concentration of the aerosol and the duration of the negative impact on people's health. © 2017 SPIE.

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Держатели документа:
Institute of Computational Modeling, SB, RAS, Akademgorodok, Krasnoyarsk, Russian Federation
Siberian Federal University, 79 Svobodny pr., Krasnoyarsk, Russian Federation

Доп.точки доступа:
Zavoruev, V. V.; Zavorueva, E. N.

    Web technologies for rapid assessment of pollution of the atmosphere of the industrial city
/ N. Shaparev [et al.] // IOP Conference Series: Materials Science and Engineering : Institute of Physics Publishing, 2018. - Vol. 363: 2nd International Conference on Cognitive Robotics (22 November 2017 through 25 November 2017, ) Conference code: 136885, Is. 1, DOI 10.1088/1757-899X/363/1/012034 . -
Аннотация: The functionality, architectural features, the user interface of the geoinformation web-system of environmental monitoring of Krasnoyarsk is discussed. This system is created in service-oriented architecture. Data collection from the automated stations to monitor the state of atmospheric air has been implemented. An original device to measure the level of contamination of the atmosphere by fine dust PM2.5 has developed. Assessment of the level of air pollution is based on the quality index AQI atmosphere. © Published under licence by IOP Publishing Ltd.

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Держатели документа:
Institute of Computational Modeling SB RAS, Krasnoyarsk, Russian Federation
National Research Tomsk State University, Tomsk, Russian Federation
Siberian Federal University, Krasnoyarsk, Russian Federation

Доп.точки доступа:
Shaparev, N.; Tokarev, A.; Yakubailik, O.; Soldatov, A.

    WEB Geographic Information System and the Hardware and Software Ensuring Rapid Assessment of Air Pollution
/ O. E. Yakubailik, A. A. Kadochnikov, A. V. Tokarev // Optoelectron. Instrum. Data Proc. - 2018. - Vol. 54, Is. 3. - P243-249, DOI 10.3103/S8756699018030056. - Cited References:12 . - ISSN 8756-6990. - ISSN 1934-7944
РУБ Physics, Multidisciplinary

Кл.слова (ненормированные):
web GIS -- web services -- environmental monitoring -- AQI -- atmospheric -- pollution -- suspended particles -- fine dust -- spatial data -- geoportal -- Arduino -- aerosol

Аннотация: This paper touches upon the experience of research and development of hardware and software for air pollution monitoring of industrial cities, carried out at the Institute of Computational Modeling of the Siberian Branch of the Russian Academy of Sciences. Functional possibilities, architectural features, and user interface of the distributed web geographic information system of ecological monitoring of the city of Krasnoyarsk, which is being developed in service-oriented architecture, are discussed. Data are collected from automated posts for observing the state of atmospheric air and services of aggregation and representation of information in the form of interactive graphs and thematic maps in the web interface. An original device is developed for measuring the pollution level of the atmosphere with fine dust (PM2.5), the data from which is fed in real time to the system via a cellular network. A system is formed for integral assessment of the pollution level of the atmosphere based on Air Quality Index (AQI) calculations.

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Держатели документа:
Russian Acad Sci, Siberian Branch, Inst Computat Modeling, Akademgorodok 50,Bldg 44, Krasnoyarsk 660036, Russia.
Siberian Fed Univ, Pr Svobodnyi 79, Krasnoyarsk 660041, Russia.

Доп.точки доступа:
Yakubailik, O. E.; Kadochnikov, A. A.; Tokarev, A. V.; Yakubailik, Oleg
519.6 + 004.4
Г 35

    Геоинформационная веб-система и приборно-измерительное обеспечение оперативной оценки загрязнения атмосферы
: статья / Олег Эдуардович Якубайлик, Алексей Анатольевич Кадочников, Алексей Владимирович Токарев // Автометрия. - 2018. - Т. 54, № 3. - С. 39-46, DOI 10.15372/AUT20180305 . - ISSN 0320-7102
   Перевод заглавия: Geoinformational web system and instrumental measurement of operational estimation of atmospheric pollution
УДК

Аннотация: Рассматривается опыт исследований и разработок программных и аппаратных средств для мониторинга загрязнения атмосферы промышленного города, выполненных в Институте вычислительного моделирования СО РАН. Обсуждаются функциональные возможности, архитектурные особенности, пользовательский интерфейс распределённой геоинформационной веб-системы экологического мониторинга г. Красноярска, которая создаётся в сервис-ориентированной архитектуре. Реализованы сбор данных с автоматизированных постов наблюдений за состоянием атмосферного воздуха, сервисы агрегации и представления информации в виде интерактивных графиков и тематических карт в веб-интерфейсе. Разработан оригинальный прибор для измерения уровня загрязнения атмосферы мелкодисперсной пылью (PM2.5), данные с которого в реальном времени поступают в систему через сотовую сеть. Сформирована система интегральной оценки уровня загрязнения атмосферы, основанная на вычислениях индекса качества атмосферы (AQI).
This paper touches upon the experience of research and development of software and hardware for monitoring atmospheric pollution of industrial cities, carried out at the Institute of Computational Modeling of the Siberian Branch of the Russian Academy of Sciences. Functional possibilities, architectural features, and user interface of the distributed geoinformation web-system of ecological monitoring of the city of Krasnoyarsk, which is being developed in service-oriented architecture, are discussed. Data are collected from automated posts for observing the state of atmospheric air and services of aggregation and representation of information in the form of interactive graphs and thematic maps in the web interface. An original device is developed for measuring the pollution level of the atmosphere with fine dust (PM2.5), the data from which is fed in real time to the system via a cellular network. A system is formed for integral assessment of the pollution level of the atmosphere based on Atmospheric Quality Index (AQI) calculations.

РИНЦ

Держатели документа:
Институт вычислительного моделирования СО РАН
Сибирский федеральный университет

Доп.точки доступа:
Якубайлик, Олег Эдуардович; Yakubailik O.E.; Кадочников, Алексей Анатольевич; Kadochnikov A.A.; Токарев, Алексей Владимирович; Tokarev A.V.

    Environmental risk zones mapping using satellite monitoring data
/ A. Zotin [et al.] // Procedia Computer Science : Elsevier B.V., 2018. - Vol. 126: 22nd International Conference on Knowledge-Based and Intelligent Information and Engineering Systems, KES 2018 (3 September 2018 through 5 September 2018, ) Conference code: 141492. - P1597-1605, DOI 10.1016/j.procS.2018.08.133 . -
Аннотация: The study is devoted to the mapping of areas of environmental risk. Risk assessment is based on a satellite monitoring data and an evaluation of the impact of air pollution on the vegetation cover of urban areaS. Ecological risk zones mapping is shown on the example of Norilsk industrial zone impact on vegetation cover. There is a brief description of the existing System of satellite monitoring data of sulfur dioxide emission for the Norilsk industrial zone. Our approach for risk assessment mapping uses elastic grid method for generating elastic net and visualising spatial satellite data from OMI and OMPS databaseS. The results of calculations based on the methodology of mapping zones of environmental risk are presented. © 2018 The Author(s).

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Держатели документа:
Reshetnev Siberian State University of Science and Technology, 31 Krasnoyarsky rabochy av., Krasnoyarsk, 660037, Russian Federation
Siberian Federal University, 79 Svobodny st., Krasnoyarsk, 660041, Russian Federation
Institute of Computational Modeling of the Siberian Branch, Russian Academy of Sciences, 50/44 Akademgorodok, Krasnoyarsk, 660036, Russian Federation

Доп.точки доступа:
Zotin, A.; Zuev, D.; Kashkin, V.; Kurako, M.; Simonov, K.
912.4
М 77

    Мониторинг температуры земной поверхности территории Красноярска и окрестностей на основе спутниковых данных LANDSAT-8
[Текст] : статья / А. К. Матузко, О. Э. Якубайлик // Успехи современного естествознания. - 2018. - № 7. - С. 177-182 . - ISSN 1681-7494
   Перевод заглавия: MONITORING OF LAND SURFACE TEMPERATURE IN KRASNOYARSK AND ITS SUBURBAN AREA BASED ON LANDSAT-8 SATELLITE DATA
УДК

Аннотация: Настоящая работа посвящена анализу температурных аномалий в городе Красноярске и его окрестностях («городские острова тепла»), которые оценивались по спутниковым данным Landsat-8 теплового инфракрасного диапазона и наземным данным с автоматизированных постов наблюдения за атмосферой. Актуальность исследования обусловлена крайне неблагоприятной экологической обстановкой в городе, сложностью оценки метеорологических характеристик территории из-за значительной неравномерности рельефа, температурным режимом разрезающей город пополам реки Енисей, который обусловлен расположенной в 40 км от города Красноярской ГЭС. Задача состояла в выявлении характерных температурных неоднородностей в городе, их пространственного местоположения и количественной оценке. Всего было рассмотрено 10 безоблачных сцен Landsat-8 на территорию Красноярска и окрестностей, в бесснежный период с 2013 по 2016 гг. Вычисления проводились на основе данных радиометра TIRS (10-й канал – ИК-диапазон 10,3–11,3 мкм). Данные каналов видимого диапазона 4-3-2 (красный-зеленый-синий), регистрируемые радиометром OLI Landsat-8, использовались для классификации изображений, определения типа подстилающей поверхности. Была выполнена обработка спутниковых данных, в том числе – классификация изображения, определение коэффициентов эмиссии для различных участков городской территории, вычисление температуры поверхности. Также был проведен сравнительный анализ полученных данных с измерениями на метеостанциях. Было обнаружено, что температура, измеренная разными способами, имеет сопоставимые значения. По результатам исследования были сформированы сезонные тепловые аномалии городской территории для трех сезонов – лета, весны и осени. Было выделено несколько сезонных тепловых аномальных зон разного типа – природные возвышенности, территории около нескольких крупных торгово-развлекательных центров, промышленные зоны ряда предприятий, участки теплового загрязнения сточными водами.
The subject of the analysis in this paper were temperature anomalies in the city of Krasnoyarsk and its surroundings («Urban Heat Islands»), which were estimated from satellite data Landsat-8 thermal infrared and ground data from automated observation posts for the atmosphere. The relevance of the study is due to the extremely unfavorable environmental situation in the city. The task was to identify characteristic temperature inhomogeneities in the city, their spatial location and quantitative assessment. In total, 10 cloudless Landsat-8 scenes were examined on the territory of Krasnoyarsk and its environs during the snowless period from 2013 to 2016. The calculations were based on the data of the TIRS radiometer (10th channel – IR range of 10.3-11.3 µm). The data of the channels of the visible range 4-3-2 (red-green-blue), registered by the OLI Landsat-8 radiometer, were used to classify the images, to determine the type of underlying surface. Satellite data processing was performed. Also, a comparative analysis of the data obtained with measurements at weather stations was carried out. It was found that the temperature measured in different ways has comparable values. According to the results of the study were formed seasonal thermal anomalies of the urban area. Several seasonal thermal anomalous zones of different types such as natural elevations, territories of about several large shopping and entertainment centers, industrial zones of a number of enterprises, sites of thermal pollution by sewage were singled out.

РИНЦ

Держатели документа:
Институт вычислительного моделирования СО РАН

Доп.точки доступа:
Матузко, А.К.; Matuzko A.K.; Якубайлик, О.Э.; Yakubaylik O.E.

    Satellite monitoring of atmospheric sulphur dioxide pollution in polar latitudes
/ V. B. Kashkin [et al.] // IOP Conference Series: Earth and Environmental Science : Institute of Physics Publishing, 2018. - Vol. 193: 5th All-Russian Conference with International Participation on Polar Mechanics 2018 (9 October 2018 through 11 October 2018, ) Conference code: 141746, Is. 1, DOI 10.1088/1755-1315/193/1/012029 . -
Аннотация: The study is devoted to the mapping of areas of environmental risk. Risk assessment is based on a satellite monitoring data and an evaluation of the impact of air pollution on the vegetation cover of urban areas. Ecological risk zones mapping is shown on the example of Norilsk industrial zone impact on vegetation cover. There is a brief description of the existing system of satellite monitoring data of sulphur dioxide emission for the Norilsk industrial zone. Our approach for risk assessment mapping uses elastic grid method for generating elastic net and visualizing spatial satellite data from OMI and OMPS databases. The results of calculations based on the methodology of mapping zones of environmental risk are presented. © Published under licence by IOP Publishing Ltd.

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Держатели документа:
Siberian Federal University, 79 Svobodny pr., Krasnoyarsk, 660041, Russian Federation
Institute of Computational Modeling, SB RAS, 50/44 Akademgorodok, Krasnoyarsk, 660036, Russian Federation

Доп.точки доступа:
Kashkin, V. B.; Zuev, D. V.; Kurako, M. A.; Romanov, A. A.; Rubleva, T. V.; Simonov, K. V.
528.8
З-22

    Залгоритмическое и информационное обеспечение системы контроля выбросов диоксида серы техногенных объектов на основе спутникового мониторинга
[Текст] : статья / Дмитрий Владимирович Зуев, Валентин Борисович Кашкин, Константин Васильевич Симонов // Информатизация и связь. - 2018. - № 5. - С. 85-92 . - ISSN 2078-8320
   Перевод заглавия: Algorithmic and information support of the system of control of emissions of sulfur dioxide of technology objects based on satellite monitoring
УДК

Аннотация: Исследование посвящено разработке спутникового метода мониторинга выбросов диоксида серы для техногенных объектов северных территорий Красноярского края. Разработаны практические рекомендации по применению спутникового метода мониторинга выбросов диоксида серы на примере Норильской промышленной зоны. Произведена оценка состояния атмосферного воздуха для изучаемой территории за последние годы.
The study is devoted to the development of a satellite method for monitoring emissions of sulfur dioxide for man-made objects in the northern territories of the Krasnoyarsk region. Practical recommendations have been developed for the application of the satellite method for monitoring sulfur dioxide emissions using the example of the Norilsk industrial zone. An assessment of the state of atmospheric air for the study area in recent years.

РИНЦ

Держатели документа:
Институт вычислительного моделирования СО РАН
Сибирский федеральный университет

Доп.точки доступа:
Зуев, Дмитрий Владимирович; Zuev Dmitry Vladimirovich; Кашкин, Валентин Борисович; Kashkin Valentin Borisovich; Симонов, Константин Васильевич; Simonov Konstantin Vasilyevich

    Development of computational technologies and software for assessment of air pollution in Krasnoyarsk
/ O. E. Yakubailik, A. A. Kadochnikov, A. V. Tokarev // IOP Conference Series: Earth and Environmental Science : Institute of Physics Publishing, 2018. - Vol. 211: International Conference and Early Career Scientists School on Environmental Observations, Modeling and Information Systems, ENVIROMIS 2018 (5 July 2018 through 11 July 2018, ) Conference code: 143586, Is. 1, DOI 10.1088/1755-1315/211/1/012080 . -
Аннотация: Experience of research and development of hardware and software for air pollution monitoring of industrial cities carried out at the Institute of Computational Modeling of the Siberian Branch of the Russian Academy of Sciences is presented. The functional possibilities, architectural features, and user interface of a distributed web geographic information system of ecological monitoring of the city of Krasnoyarsk, which is being developed in a service-oriented architecture, are discussed. Data from automated posts for observing the atmospheric air are collected. The services developed for data aggregation and information web presentation in the form of interactive graphs and thematic maps are discussed. An original device has been developed for measuring fine dust (PM2.5) pollution in the atmosphere to feed the data in real time to the system via a cellular network. A system for integral assessment of pollution in the atmosphere based on Air Quality Index (AQI) calculations has been created. © Published under licence by IOP Publishing Ltd.

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Держатели документа:
Institute of Computational Modelling of the Siberian Branch of the Russian Academy of Science, Akademgorodok 50/44, Krasnoyarsk, 660036, Russian Federation
Siberian Federal University, Svobodny pr. 79, Krasnoyarsk, 660041, Russian Federation

Доп.точки доступа:
Yakubailik, O. E.; Kadochnikov, A. A.; Tokarev, A. V.
519.6+004.4
П 75

    Приборно-измерительное обеспечение для оценки загрязнения атмосферы мелкодисперсной пылью на базе БПЛА
[Текст] : статья / А. В. Токарев // Решетневские чтения. - 2018. - Т. 1, № 22. - С. 376-378 . - ISSN 1990-7702
   Перевод заглавия: Drone based device FOR EVALUATION OF Fine Particulate Air Pollution
УДК

Аннотация: Рассматривается разработка прибора для оценки уровня загрязнения атмосферы мелкодисперсной пылью (PM) на базе квадрокоптера DJI Phantom 3, что позволяет выполнять измерения на разных высотах и в труднодоступных местах.
This article describes developing of drone-based device for measuring the pollution level of the atmosphere with fine dust (PM). The unit allows performing measurements at different heights and in hard-to-reach places.

РИНЦ

Держатели документа:
Институт вычислительного моделирования СО РАН, ФИЦ КНЦ СО РАН

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Токарев, А.В.; Tokarev A.V.

    Информационно-вычислительное обеспечение оценки загрязнения атмосферного воздуха в Красноярске
[Текст] : доклад, тезисы доклада / О. Э. Якубайлик, А. А. Кадочников, А. В. Токарев // = Международная конференция и школа молодых ученых по измерениям, моделированию и информационным системам для изучения окружающей среды: ENVIROMIS-2018 / International Conference and Early Career Scientists School on Environmental Observations, Modeling and Information Systems: ENVIROMIS-2018 (2018 ; 05.06 - 11.07 ; Томск) : Томский центр научно-технической информации . - ISBN 978-5-89702-441-4
   Перевод заглавия: Computational technologies and software for assessment of air pollution in Krasnoyarsk


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Институт вычислительного моделирования СО РАН, ФИЦ КНЦ СО РАН
Сибирский федеральный университет

Доп.точки доступа:
Якубайлик, О.Э.; Yakubailik O.E.; Кадочников, А.А.; Kadochnikov A.A.; Токарев, А.В.; Tokarev A.V.; International Conference and Early Career Scientists School on Environmental Observations, Modeling and Information Systems: ENVIROMIS-2018(2018 ; 05.06 - 11.07 ; Томск)
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    The daily variation of the concentration of suspended particles in the surface layer of the atmosphere of the village Berezovka (Krasnoyarsk region)
/ E. N. Zavorueva, V. V. Zavoruev, Y. L. Lipovka ; ed.: G. G. Matvienko, O. A. Romanovskii // 24TH INTERNATIONAL SYMPOSIUM ON ATMOSPHERIC AND OCEAN OPTICS: : SPIE-INT SOC OPTICAL ENGINEERING, 2018. - Vol. 10833: 24th International Symposium on Atmospheric and Ocean Optics - (JUL 02-05, 2018, Tomsk, RUSSIA). - Ст. UNSP 108336K. - (Proceedings of SPIE), DOI 10.1117/12.2505157. - Cited References:7 . -
РУБ Oceanography + Remote Sensing + Optics

Кл.слова (ненормированные):
PM2,5 -- PM10 -- the daily variation -- the village of Berezovka -- autonomous -- sources of heat supply

Аннотация: PM10 concentrations in the surface layer of the atmosphere of Berezovka are 2-3 times higher in winter than in summer. The daily variation of suspended particle concentrations is characterized by two maxima and two minima. It is more pronounced in January and February than in June and July. Winter maxima are mainly due to the time intervals of 9-11 and 19-21 hours, and summer-on 9-11 and 22-23 h. Minima are due to 4-5 and 15-17 h in winter, and in summer-4-6 and 14-18 h. The daily variation of PM2.5 is similar to the daily variation of PM10 in winter. The difference is that the concentration of PM2,5 increases to values that are significantly higher in the evening than in the afternoon. Air pollution is associated with coal heating of individual houses in the village and the daily variation of the concentration of PM is determined by the heating regime of dwellings.

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Siberian Fed Univ, 79 Svobodny Pr, Krasnoyarsk 660041, Russia.
RAS, SB, Inst Computat Modeling, Krasnoyarsk 660036, Russia.

Доп.точки доступа:
Zavorueva, E. N.; Zavoruev, V. V.; Lipovka, Yu. L.; Matvienko, G.G. \ed.\; Romanovskii, O.A. \ed.\

    Feed base and potential fish productivity of the Yenisey basin (upstream and midstream)
/ A. V. Andriаnоvа [и др.] // Vestn. Tomsk. Gos. Univ. Biol. - 2019. - Vol. 2019, Is. 45. - С. 142-163, DOI 10.17223/19988591/45/8 . - ISSN 1998-8591
   Перевод заглавия: Кормовая база и потенциал рыбопродуктивности бассейна Енисея (верхнее и среднее течение)

Кл.слова (ненормированные):
Acipenser ruthenus -- Artificial reproduction -- Brachymystax lenok -- Coregonus lavaretus -- Ichthyofauna -- Thymallus arcticus -- Zoobenthos

Аннотация: The Yenisey basin had been famous for its fish richness for a long time, and the core of the fishery had been such valuable species as salmon, whitefish and sturgeon. However, the construction of the Angara-Yenisey cascade of hydroelectric power stations, domestic and industrial waste pollution, and intensive consumer catching played a huge role in changing fish habitats and the structure of ichtyocoenosis. The complex anthropogenic load eventually led to a reduction in stocks and a decrease in the natural reproduction of valuable and highly valued fish species. To preserve and restore natural populations of valuable fish species, it is necessary to increase the efficiency of reproduction, both natural and artificial. On the other hand, successful implementation of aquaculture plants is impossible without assessing fish stocks, their demographic status, habitat conditions and capacious information about the feed base. The aim of this research was to reveal the current development level of ichthyofauna and feed base in the Yenisey basin, and, on this basis, to assess the potential fish productivity and the maximum allowable volumes of introduction of juvenile fish as objects of artificial reproduction. In 2015, we carried out zoobenthos and ichthyofauna studies in the Yenisey and the rivers of its basin (Abakan, Mana, Kan, Agul, Kungus) (See Table 1). In the Yenisey, the material was collected from 5 stations in the upper reaches (the Republics of Tyva and Khakassia) and 10 stations in the middle reaches (from the dam of the Krasnoyarsk HPS to the mouth of the Angara River); in the tributaries of the Yenisey there were from 4 (Kungus River) to 10 (Mana River) stations. In the collection and processing of ichthyological and hydrobiological material, we used generally accepted methods. Zoobenthos samples were taken in watercourse ripals; fishing was confined to the sites of hydrobiological sampling. We assessed potential fish productivity based on the reserve of benthic feeding organisms’ production. The total biomass of forage organisms (zoobenthos) was calculated taking into account the area of the water body. The maximum allowable amount of immigration of juveniles (larvae) of artificial reproduction objects, which can be released into a water body, was determined based on the reserve of production of food organisms, as well as taking into account the yield to the fishery (the commercial stock replenishment factor) and the average mass of fish producers. In total, we carried out 54 control catches with fixed nets and 30 catches with drift nets. Ichtyocenoses were described according to Gadinov and Dolgikh (2008) and Zadelenov et al. (2004). This research presents the results of studying 175 zoobenthos samples and approximately 600 fish samples selected for a comprehensive biological analysis. In the benthic fauna of the investigated watercourses, lithoreophilic organisms predominated, they populated stony soils on a fast current. The basis of biomass in the upper reaches of the Yenisey and in its tributaries was mayflies, stoneflies and caddis flies; within the republic of Khakassia and in the middle reaches of the Yenisey, amphipods and chironomids took the lead (See Fig. 1). The Yenisei was characterized by a low biomass in the upper reaches (4.2 g/m 2 ) and the maximum biomass in the area from the Mainskaya dam to the city of Abakan (19.5 g/m 2 ), where Baikal-born amphipods develop in bulk. High values were found in the Mana and Kan Rivers (12.3 and 10.8 g/m 2 , correspondingly) with caddisflies’ domination. In the Abakan, Agul and Kungus Rivers, the biomass did not exceed 8 g/m 2 , on average, the main contribution was made by stoneflies (See Fig. 2). Grayling, dace and perch dominated in the studied areas in ichthyocenoses of the Yenisey; the tributaries of the Yenisey belong to the salmon-like type, the basis of the ichthyofauna was taimen, lenok and grayling (See Fig. 3). Since there are no obligate plankton eaters in the ichthyofauna of the investigated rivers, the potential fish productivity was calculated on the basis of the reserve of zoobenthos production. The upper reaches of the Yenisey and tributaries of the Abakan and Agul Rivers are characterized by the lowest potential fish productivity (less than 20 kg/ha) (See Table 2). In the Yenisey from the Mainskaya HPS to Abakan (Republic of Khakassia), the potential fish productivity reaches the maximum (96 kg/ha) due to the abundance of higher aquatic vegetation in the ripal of the river, which is densely populated by amphipods. However, food objects in macrophyte thickets are difficult to access for mass consumption by adult fish, so we did not take into account the fish productivity of the shallow-water zone when calculating the receiving capacity in this area. The total maximum permissible volume of introduction of grown-up juvenile fish (mainly taimen, lenok, grayling) into the studied watercourses for the purposes of artificial reproduction can reach 140 million pieces (See Table 3). The greatest receiving capacity (53 million pieces) is possessed by the Yenisey (on the area from the dam of the Krasnoyarsk HPS to the Angara River), the lowest by the Agul River and its tributary Kungus (5.4 and 2.3 million pieces, correspondingly). The received values of the permissible volumes of juvenile infestation of the studied watercourses give an idea that the fishery potential of the studied watercourses is very high. Nevertheless, to restore the population of fish valuable for the region through artificial reproduction, it is necessary to develop a whole range of measures, including the protection of aquatic biological resources and the rational organization of the fishery. © 2019 Tomsk State University. All rights reserved.

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Держатели документа:
Environmental Monitoring Technologies Department, Institute of Computational Modeling, Siberian Branch of the Russian Academy of Sciences, 50 Akademgorodok, Krasnoyarsk, 660036, Russian Federation
Krasnoyarsk Branch of VNIRO (Scientific Research Institute of Ecology of Fishery Reservoirs), 33 Parizhskoi Kommuny Str., Krasnoyarsk, 660097, Russian Federation

Доп.точки доступа:
Andriаnоvа, A. V.; Derbineva, E. V.; Gadinov, A. N.; Krivolutskiy, D. А.; Melnikov, I. I.

    Computation of Mean-Field Equilibria with Correlated Stochastic Processes
/ V. Shaydurov, S. Zhang, V. Kornienko // (11 June 2018 through 16 June 2018 : Springer Verlag, 2019. - Vol. 11386 LNCS. - P468-475, DOI 10.1007/978-3-030-11539-5_54 . -
Аннотация: The numerical algorithm is presented for solving differential problem formulated as the Mean-Field Game (MFG) with the coupled system of two parabolic partial differential equations: the Fokker-Plank-Kolmogorov equation and the Hamilton-Jacobi-Bellman one. The case is considered with correlation of the considered stochastic processes. The description focuses on the discrete semi-Lagrangian approximation of these equations and on the application of the MFG theory directly at discrete level. The constructed algorithm is implemented to the problem of carbon dioxide pollution as an illustration. © 2019, Springer Nature Switzerland AG.

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Держатели документа:
Tianjin University of Finance and Economics, 25# Zhujiang Road, Hexi District, Tianjin, 300222, China
Institute of Computational Modeling of SB RAS, 50/44# Akademgorodok, Krasnoyarsk, 660036, Russian Federation
Siberian Federal University, 79# Svobodnyi Prospect, Krasnoyarsk, 660041, Russian Federation

Доп.точки доступа:
Shaydurov, V.; Zhang, S.; Kornienko, V.

    Prototype of city environmental monitoring system based on geoportal technologies
/ A. A. Kadochnikov [et al.] // IOP Conference Series: Materials Science and Engineering : Institute of Physics Publishing, 2019. - Vol. 537: International Workshop on Advanced Technologies in Material Science, Mechanical and Automation Engineering - MIP: Engineering-2019 (4 April 2019 through 6 April 2019, ) Conference code: 149243, Is. 6, DOI 10.1088/1757-899X/537/6/062052 . -
Аннотация: The development of a real-time environmental monitoring system based on the integration of data from various sources is considered. To create this system, a geoportal technology platform is used to collect, process and present data from various observations. During the implementation of the development, the data transmission from a number of sources with information on air pollution and meteorological data was configured. The system operates in pilot operation mode in Krasnoyarsk. The generated spatial database contains the specified information on all available measurement points for the last few years. Geoportal map services and web applications provide interactive visualization of data in the form of tables, graphs and thematic maps in standard web browser. Source data can also be loaded for analysis in spreadsheet software such as Microsoft Excel or displayed in GIS packages through standard Open Geospatial Consortium map services. © 2019 IOP Publishing Ltd. All rights reserved.

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Держатели документа:
Federal Research Center Krasnoyarsk Science Center, SB RAS, Krasnoyarsk, Russian Federation
Institute of Computational Modeling, SB RAS, Krasnoyarsk, Russian Federation
Siberian Federal University, Krasnoyarsk, Russian Federation

Доп.точки доступа:
Kadochnikov, A. A.; Tokarev, A. V.; Zavoruev, V. V.; Yakubailik, O. E.