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Найдено документов в текущей БД: 6

    Solar System magnetospheres
[Text] / M. Blanc, R. Kallenbach, N. V. Erkaev // Space Sci. Rev. - 2005. - Vol. 116: Workshop on Comparative Study of the Outer Planets before the Exploration of Saturn (JAN 12-14, 2004, Bern, SWITZERLAND), Is. 01.02.2013. - P227-298, DOI 10.1007/s11214-005-1958-y. - Cited References: 202 . - ISSN 0038-6308
РУБ Astronomy & Astrophysics

Аннотация: This article proposes a short review of our present knowledge of solar system magnetospheres, with the purpose of placing the study of Saturn's inagnetosphere in the context of a comparative approach. We describe the diversity of solar system magnetospheres and the underlying causes of this diversity: nature and magnetization state of the planetary obstacle, presence or not of a dense atmosphere, rotation state of the planet, existence of a system of satellites, rings and neutral gas populations in orbit around the planet. We follow the "russian doll" hierarchy of solar system magnetospheres to briefly describe the different objects of this family: the heliosphere, which is the Sun's magnetosphere; the "elementary" magnetospheres of the inner planets, Earth and Mercury; the "complex" magnetospheres of the giant planets, dominated by planetary rotation and the presence of interacting objects within their magnetospheric cavities, some of which, like Ganymede, to or Titan, produce small intrinsic or induced magnetospheres inside the large one. We finally describe the main original features of Saturn's magnetosphere as we see them after the Voyager fly-bys and before the arrival of Cassini at Saturn, and list some of the key questions which Cassini will have to address during its four-year orbital tour.


Доп.точки доступа:
Blanc, M.; Kallenbach, R.; Erkaev, N.V.; Еркаев, Николай Васильевич

    Water resources of the Krasnoyarsk Krai in sustainable water management indices
[Text] / N. Shaparev, N. Astafiev // Int. J. Sustain. Dev. World Ecol. - 2008. - Vol. 15, Is. 6. - P574-583, DOI 10.3843/SusDev.15.6:9. - Cited References: 23. - The work was carried out with financial support from the RFBR-KRFS project (No. 07-05-96802) and a grant from the Russian Federation President for leading scientific schools (SS3428.2006.9). . - ISSN 1350-4509
РУБ Ecology

Кл.слова (ненормированные):
Sustainable water management -- sustainable development indices -- water resources -- Yenisei River basin

Аннотация: A system of sustainable water management is suggested. This includes natural water production; acceptable sanitary-epidemiological water state; conservation and maintenance of biological water diversity; development of socioeconomic functions of water management; and instruments for water policy to conserve sustainable management of water consumption and protect consumers from injurious water effects. The developed system was applied to analyse the situation in the Yenisei River basin (Russia). Analysis in the basin showed that it is currently unsustainable: the share of purified water has not increased; water cost per unit production is high; the quality of water in the Yenisei River is still characterised as 'polluted'; some people in the basin drink water containing injurious substances; and both purification facilities and water supply systems are in an unsatisfactory state. Hence, the financing of hydrological work is currently inadequate.


Доп.точки доступа:
Astafiev, N.; Шапарев, Николай Якимович

    Spatial distribution of chlorophyll concentration seasonal dynamics types in the ocean based on the autocorrelation analysis of SeaWiFS data
[Text] / A. Shevyrnogov, G. Vysotskaya // Adv. Space Res. - 2006. - Vol. 38, Is. 10. - P. 2176-2181, DOI 10.1016/j.asr.2006.03.034. - Cited References: 26 . - ISSN 0273-1177
РУБ Astronomy & Astrophysics + Geosciences, Multidisciplinary + Meteorology & Atmospheric Sciences

Аннотация: Seasonal dynamics of phytopigment concentrations in the ocean is one of the key factors indicating the types and intensity of hydrobiological exchange processes in the ocean surface layer. Thanks to the efficient operation of the SeaWiFS equipment for the last 7 years we have managed to carry out statistical analysis of image time series, which is necessary for estimation of reliability of investigations of oscillatory hydrobiological processes on a global scale. Using the autocorrelation method, we revealed a pronounced heterogeneity of the types of seasonal dynamics in the ocean. Statistically significant seasonal dynamics of phytopigment concentrations exists only at 19% of the area of the Global Ocean. On 51% of the area seasonal dynamics is disturbed essentially so, that becomes statistically insignificant and is absent at 30%. The most interesting feature of the pattern obtained was the diversity of the seasonal dynamics of chlorophyll concentration under similar climatic conditions. Another interesting feature of such data presentation is that two types of seasonal dynamics - yearly and half-yearly - were defined. The detected zonality will provide the basis for more efficient development and application of ecological modeling, taking into account real-life hydrobiological and hydrological conditions. (C) 2006 Published by Elsevier Ltd on behalf of COSPAR.

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Доп.точки доступа:
Shevyrnogov, A.; Vysotskaya, G.; Высоцкая, Галина Степановна
519.63+539.313
А 64

    Анализ конечно-элементных оценок напряженного состояния силовых конструкций с концентраторами напряжений
[Текст] : статья / С. В. Доронин, А. Н. Рогалев, Е. М. Рейзмунт // Современные технологии. Системный анализ. Моделирование. - 2015. - № 2. - С. 26-31 . - ISSN 1813-9108
   Перевод заглавия: ANALYSIS OF THE FINITE ELEMENT ESTIMATIONS OF STRESS STATE OF LOAD-BEARING STRUCTURES WITH STRESS CONCENTRATORS
УДК

Аннотация: Концентрация напряжения в элементах силовых конструкций является одним из основных факторов их прочности, живучести, техногенной безопасности. Несмотря на значительные успехи в области исследования природы и влияния концентрации напряжений на конструкционную прочность, накопленные аналитические, численные, экспериментальные данные не могут охватить все многообразие конструктивных форм и условий нагружения конструкций. Наиболее распространенным в настоящее время является численный подход к анализу концентрации напряжений, реализуемый чаще всего с использованием коммерческих пакетов конечно-элементного анализа. В этом случае принципиальное значение имеет удовлетворение требованиям точности и достоверности результатов моделирования. Опыт численного исследования напряженного состояния в области концентраторов напряжений свидетельствует о многочисленных случаях нарушения этих требований, возникающих вследствие проблем со сходимостью и устойчивостью численных решений. В настоящей работе рассматриваются конечно-элементные решения ряда элементов конструкций с концентраторами напряжений, не удовлетворяющие требованиям сходимости, и анализируются возможные причины возникающих ошибок.
Stress concentration in load-bearing structures elements is one of the main factors of their strength, survivability, safety. In spite of considerable advances of investigations for nature of stress concentration and its influence on structural strength accumulated analytic, numerical, experimental data can’t cover all diversity of structural forms and loading conditions. The numerical approach for analysing stress concentration with the help of commercial finite-element software is the most widely-spread at present. In this case meeting requirements of accuracy and reliability of simulation data is of fundamental importance. The experience of numerical investigation for stress state of structural elements with stress concentrators demonstrates numerous cases of violation of these requirements due to difficulties with convergence and stability of numerical solutions. In this paper finite-element solutions for stress concentrators which are not meeting requirements of convergence are discussed and possible reasons of errors are analysed.

РИНЦ

Держатели документа:
Институт вычислительного моделирования СО РАН
СКТБ «Наука» КНЦ СО РАН

Доп.точки доступа:
Рогалев, Алексей Николаевич; Rogalev A.N.; Рейзмунт, Елена Михайловна; Reizmunt E.M.

    Lost strings in genomes: What sense do they make?
/ M. Sadovsky [et al.] // (26 April 2017 through 28 April 2017 : Springer Verlag, 2017. - Vol. 10209 LNCS. - P20-29, DOI 10.1007/978-3-319-56154-7_3 . -

Кл.слова (ненормированные):
Combinatorics -- Composition -- Diversity -- Evolution -- Order -- Selection -- Bioinformatics -- Biology -- Biomedical engineering -- Chemical analysis -- Combinatorics -- Diversity -- Evolution -- Order -- Selection -- Genes

Аннотация: We studied the sets of avoided strings to be observed over a family of genomes. It was found that the length of the minimal avoided string rarely exceeds 9 nucleotides, with neither respect to a phylogeny of a genome under consideration. The lists of the avoided strings observed over the sets of (related) genomes have been analyzed. Very low correlation between the phylogeny, and the set of those strings has been found. © Springer International Publishing AG 2017.

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Держатели документа:
Institute of Computational Modelling of SB RAS, Akademgorodok, Krasnoyarsk, Russian Federation
Johannes Gutenberg-Universitat Mainz, Mainz, Germany
Institute of Space and Information Technologies, Siberian Federal University, Kirenskogo Str., 26, Krasnoyarsk, Russian Federation
Institute of Molecular Biology, Mainz, Germany

Доп.точки доступа:
Sadovsky, M.; Fontaine, J. -F.; Andrade-Navarro, M. A.; Yakubailik, Y.; Rudenko, N.

    Временная динамика структурных и функциональных характеристик енисейского фитопланктона в нижнем бьефе Красноярской ГЭС
[Текст] : научное издание / Юлия Андреевна Пономарева, Полина Владимировна Постникова // Вестник Томского государственного университета. Биология. - 2017. - № 38. - С. 167-182, DOI 10.17223/19988591/38/10 . - ISSN 1998-8591
   Перевод заглавия: Temporal dynamics of structural and functional characteristics of the Yenisei river phytoplankton downstream of the Krasnoyarsk hydroelectric power station
Аннотация: Представлены результаты изучения формирования фитопланктонного сообщества и флуоресцентных характеристик вод в условиях сброса высоконапорной Красноярской ГЭС. Сезонные и межгодовые изменения фитопланктона оценивали на основе численности и биомассы клеток фитопланктона, а также концентрации хлорофилла а. Выявлены закономерности сезонных сукцессий и межгодовых вариаций структурно-функциональных характеристик фитопланктона. Обнаружено, что основу флористического списка в реке Енисей составляют диатомовые водоросли (66% от общего видового состава), преобладающие в планктоне во все сезоны года. Наибольший вклад в общую численность и биомассу фитопланктона вносят нанофитопланктон (2-20 мкм) и микрофитопланктон (20-64 мкм). В комплекс доминантов вранневесенний период входили Diatoma vulgare Bory и Hannaea arcus (Ehrb.) Patr., в летний - Aulacoseira islandica (O. Mull.) Sim. и Cyclotella radiosa (Grun.) Lemm., позднелетний - Fragilaria crotonensis Kitt. Вместе с тем на фоне увеличивающегося видового разнообразия и интенсивного развития водорослей в весенне-летний период отмечен спад концентрации хлорофилла а. Установлено, что во все рассматриваемые годы пики численности и биомассы фитопланктона приходятся на июнь за счет колониальных диатомовых водорослей, попадающих в нижний бьеф со стоком из верхнего бьефа.
The Yenisei River is the biggest waterway in Siberia. In the second half of the 20th century, the Yenisei River was overlapped by dams, and it deeply damaged the natural hydrological, hydrochemical and hydrobiological regimes of the river. As a result of constructing the Krasnoyarsk hydroelectric power station, a significant river component - phytoplankton, which occupies the central place in the formation of the aquatic ecosystem - has changed downstream of the river. In the river, phytoplankton is formed from phytoperiphyton and allochthonous algae, including phytoplankton species of upstream reservoirs. Therefore, knowledge of transformation laws of phytoplankton species composition, which occurs during the regulation of the river flow and formation of reservoirs, may contribute to the development of ideas about changing the aquatic communities. The aim of this research was to explore the formation of phytoplankton under the conditions of water discharge in the Krasnoyarsk HPS and to study chlorophyll a concentration. We collected phytoplankton samples at a distance of 34 km below the Krasnoyarsk HPS (55°59'1.8"N, 92°47'13.4"E) in 2008-2014 and analyzed them according standard hydrobiological methods (See Table). In 2012-2014, we measured fluorescent water characteristics along with the study of algae. We took the nomenclature for algae considering taxonomic transformations according to the system adopted by the International algae database (http://www.algaebase.org). A quantitative processing of phytoplankton samples was conducted daily, species composition and biomass of algae was determined weekly. In size, algae cells were differentiated according to Rainey. The degree of complexity of phytoplankton communities was determined calculating the Shannon species diversity index (by biomass). The dominant algae included species making the main contribution into the total phytoplankton biomass. In 20122014, along with the study of algae, we determined chlorophyll а concentration by fluorimetric method, weekly (See Fig. 3). We collected and processed a total of 2453 qualitative and quantitative phytoplankton samples for the period of study; 89 samples to determine chlorophyll а content. Altogether, we found 99 species, kinds and forms of algae from 6 groups in the river phytoplankton. In the Yenisei River, diatoms, which predominate in plankton in all seasons, are characterized by the maximum number of species. There is a certain sequence in the appearance of dominant algae. From late April to late May, Diatoma vulgare Bory and Hannaea arcus (Ehrb.) Patr. were recorded in quantities, in June -Aulacoseira islandica (O. Mull.) Sim., in July - Cyclotella radiosa (Grun.) Lemm., in August - Fragilaria crotonensis Kitt. (See Fig. 1). Upstream of the Krasnoyarsk reservoir A. islandica had a dominant position in nephotic cold layer in June, in July and August - C. radiosa; F. crotonensis was a subdominant. It is known that deep water discharge through the dam (18-40 м) is specific for the Krasnoyarsk reservoir. This causes the flow of algae over the dam. In general, the dynamics of the total number and the total biomass of phytoplankton had the form of unimodal curve within the year (with a peak in June) (See Fig. 2). Nanophytoplankton (2-20 mkm) and microphytoplankton (20-64 mkm) made the biggest contribution to the total biomass of phytoplankton. We recorded peaks of number and biomass of phytoplankton in June in all years in question. We found that the percentage of chlorophyll content per phytoplankton biomass unit had seasonal variations and increased in winter (See Fig. 5). It is known, that the concentration of chlorophyll a depends on dimensional structure of phytoplankton. In spring and summer, the domination of algae cells with bigger volumes in phytoplankton caused a decrease in chlorophyll а concentration.

РИНЦ

Держатели документа:
Институт вычислительного моделирования СО РАН

Доп.точки доступа:
Пономарева, Юлия Андреевна; Ponomareva Yulia A.; Постникова, Полина Владимировна; Postnikova Polina V.