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23篇 您的检索式:作者名="Sheremet"
    题名 作者 年代 出处 被引量
1Hysteresis of a western boundary current leaping across a gap显示文摘Sheremet V 2001Journal of Physical Oceanography2001,31,:1
2Seasonal and interannual variability of the Black Sea surface temperature as revealed from satellite data(1982-2000) 显示文摘Ginzburg A I Kostianoy A G Sheremet N A 2004Journal of Marine Systems2004,52,:1
3Enhancement of extracellular purine nucleoside accumulation by Bacillus strains through genetic modifications of genes involved in nucleoside export显示文摘SHEREMET A S GRONSKIY S V AKHMADYSHIN R A 2010Journal of Industrial Microbiology and Biotechnology2010,38,1:1
4Hysteresis of a Western Boundary Current Leaping across a Gap显示文摘SHEREMET V A 2001J Phys Oceanogr2001,31,:1
5Nitric oxide as a critical factor for perception of UV-B irradia- tion by microtubules in Arabidopsis显示文摘Krasylenko Y A Yemets A I Sheremet Y A 2012Physiologia Plantarumt2012,145,4:1
6Experience in the Use and Comprehensive Maintenance of Converter Re- fractory Linings 显示文摘Sheremet V A Kekukh A V Troshii S V 2006Refractories and Industrial Ceramics2006,47,2:1
7Flavonoids of Stachys inflate显示文摘Komissarenko N F Derkach A I Sheremet I P 1979Chemistry of Natural Compounds1979,14,:1
8Enhancement of extracellular purine nucleoside accumu-lation by Bacillus strains through genetic modifications of genes involved in nucleoside export 显示文摘Sheremet A S Gronskiy S V Akhmadyshin R A 2011Journal of In- dustrial Microbiology and Biotechnology2011,38,1:1
9Three-dimensional conjugate natural convection in a vertical cylinder under heat transfer to the surroundings 显示文摘SHEREMET M A 2011Fluid Dynamics2011,2011,:1
10Hysteresis of a Western Boundary Current Leaping across a Gap显示文摘Sheremet V A 2001Journal of physical oceanography2001,31,5:1
11Wave modelling – The state of the art显示文摘L. Cavaleri J.-H.G.M. Alves F. Ardhuin A. Babanin M. Banner K. Belibassakis M. Benoit M. Donelan J. Groeneweg T.H.C. Herbers P. Hwang P.A.E.M. Janssen T. Janssen I.V. Lavrenov R. Magne J. Monbaliu M. Onorato V. Polnikov D. Resio W.E. Rogers A. Sheremet J. 2007Progress in Oceanography2007,,4:1
12Wave-sediment interaction on a muddy inner shelf during Hurricane Claudette显示文摘Sheremet A Mehta A J B Liu 2005Estuarine Coastal and Shelf Science2005,63,:1
13Reaction of sily-lat- ed aminonitrofurazane with N-magnesium amine-deriva- tives显示文摘APASOV E T SHEREMET'EV A B 1993Ser Khim1993,8,:1
14Wave-mud interactions over the muddy Atchafalaya subaqueous clinoform, Louisiana,United States: Wave-supported sediment transport显示文摘J ARAMILLO S SHEREMET A ALLISON M A 2009Journal of Geophysical Research2009,114,:1
15Hysteresis of a western boundary current leaping across a gap 显示文摘Sheremet V A 2001J Phys Oceanogr2001,31,5:1
16Gap-leaping western boundary current in a circular tank model 显示文摘Sheremet V A Kuehl J 2007J Phys Oceanogr2007,37,6:1
17Global Loss Diversification in the Insurance Sector显示文摘Oleg Sheremet Andre Lucas 2009Insurance: Mathematics and Eco- nomics2009,44,3:1
18The retrospective clinical study of labyrinthine fistula associated with chronic suppurative otitis media and their treatment 显示文摘Garov EV Antonian RG Sheremet AS 2012Vestn Otorinolaringol2012,,5:1
19Weather Induced Quasi-Periodic Motions in Estuaries and Bays:Meteoro-logical Tide显示文摘Influenced by weather, the estuaries and bays often exhibit recurring oscillations in flow and water level similar to astronomical tides. The weather impact however is less regular than tides and more difficult to predict. The spectrum of weather induced motions in estuaries and bays is mostly at the low-frequency end with time scales longer than those of diurnal tides. The repeated weather impact produces meteorological tide: the recurring flood and ebb and flushing of the estuaries and bays but at lower frequencies than those of tides. The variation in weather conditions is quasi-periodic and of large scale nature(~1000-3000 km) because of the alternating low-and high-atmospheric pressure systems of extra-tropical cyclones and anti-cyclones and associated fronts. By examining 40 years of data between Jan. 1, 1977 and Dec. 31, 2016, we identified 1648 frontal events(averaging ~41.2±4.7 per year)influencing the northern Gulf of Mexico for time periods in the spring, fall and winter. The late spring and summer months(May, Jun, July, and August) were not included in the calculation because of much weaker activities involving synoptic weather systems with fronts during these months. It is found that the number of frontal events reached the maximum in Jan. and Dec. while the minimum occurred in April and Sept. It is found that there is an increasing trend of number of fronts over the 40-year period. Our data show that the low pass filtered water level,velocity, and vorticity(velocity shear) all vary in response to the weather and appear as the meteorological tide. The particle excursions of meteorological tides are much larger than those from the astronomical tides. In addition, the irregular nature of the meteorological tide makes the inward flux and outward flux asymmetric in general and thus it has a significant implication to dispersion and transport of waterborne materials. A scaling analysis shows that the meteorological tide generally reaches quasi-steady state;and as a result, a regression model is established which can be very useful for predicting the weather produced quasi-periodic motions.LI Chun-yan HUANG Wei WU Ren-hao Alex SHEREMET 2020China Ocean Engineering2020,34,3:1
20Optic neuritis and optic ischemic neuropathy:the problem of differential diagnosis显示文摘Sheremet NL Ronzina IA Smirnova TV 2012Vestn oftalmol2012,128,3:1
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