Publications in nagai.bib
2003
[47]A Lagrangian photoresponse model coupled with 2nd-order turbulence closure (, and ), In Mar. Ecol. Prog. Ser., volume 265, . [bibtex]
2004
[46]Surface mixed layer dynamics and phytoplankton photoresponse (), PhD thesis, Tokyo University of Fisheries, . [bibtex]
2005
[45]How to do random walk right in eddy viscosity models, In: Marine Turbulence: Theories, observations and models, Baumert H, Simpson J, Sundermann J (Eds.) ( and ), (Baumert H, Simpson J, Sundermann J, ed.), Cambridge University Press, . [bibtex]
[44]Field and numerical study of entrainment laws for surface mixed layer (, , and ), In Deep-Sea Res. II, volume 52, . [bibtex]
2006
[43]Two-dimensional ageostrophic secondary circulation at ocean fronts due to vertical mixing and large-scale deformation (, and ), In J. Geophys. Res., volume 111, . [bibtex] [doi]
2008
[42]Biological and physical impacts of ageostrophic frontal circulations driven by confluent flow and vertical mixing (, , and ), In Dyn. Atmos. Ocean, volume 45, . [bibtex]
2009
[41]Chlorophyll patches observed in summer in the main stream of the Kuroshio (, , and ), In Atmospher-Ocean, volume 47, . [bibtex]
[40]One-dimensional models, In: Encyclopaedia of Ocean Sciences, Steele, J.H., S.A. Thorpe, and K.T. Turekian (Eds.) (, , and ), (Steele, J.H., S.A. Thorpe,, K.T. Turekian, eds.), Elsevier, . [bibtex]
[39]Evidence of enhanced turbulent dissipation in the frontogenetic Kuroshio Front thermocline (, , and ), In Geophys. Res. Lett., volume 36, . [bibtex] [doi]
[38]A method to estimate three-dimensional thermal structure from satellite altimetry data (, , and ), In J. Atmos. Oceanic Technol., volume 26, . [bibtex]
2010
[37]Multilayer biological structure and mixing in the upper water column of Lake Biwa during summer 2008 (, , , , and ), In Limnology, volume 11, . [bibtex]
2011
[36]Eddy-induced reduction of biological production in eastern boundary upwelling systems (, , , , , , and ), In Nature, Geoscience, volume 4, . [bibtex]
[35]Daphnia Pulicaria Hijacked by Vibrio Cholera: Altered Swimming Behaviour and Predation Risk Implications, Zooplankton and Phytoplankton: Types, Characteristics and Ecology, In: Zooplankton and Phytoplankton, Giri Kattel (Eds.) (, , , , and ), (Giri Kattel, ed.), NOVA Publisher, . [bibtex]
[34]Seasonal adaptations of Daphnia pulicaria swimming behaviour: the effect of water temperature (, , , and ), In Hydrobiologia, volume 661, . [bibtex]
2012
[33]乱流と混合, In: 温暖化の湖沼学, 永田、熊谷、吉山 (Eds.) ( and ), (永田, 熊谷, 吉山, eds.), 京都大学学術出版会, . [bibtex]
[32]Direct Observations of Microscale Turbulence and thermohaline structure in the Kuroshio Front (, , , and ), In J. Geophys. Res., volume 117, . [bibtex] [doi]
2013
[31]Hypolimnetic turbulence generation associated with superposition of large-scale internal waves in a strongly stratified lake: Lake Biwa (, , and ), In Limnology, volume 13, . [bibtex]
[30]Mixing observations at a constricted channel of a semi-closed estuary: Tokyo Bay (, , and ), In Continental Shelf Research, volume 69, . [bibtex]
2014
[29]Fine scale phytoplankton community structure across the Kuroshio Front (, and ), In J. Plankton Res., volume 36, . [bibtex]
2015
[28]Spontaneous generation of near-inertial waves by the Kuroshio Front (, , and ), In J. Phys. Oceanogr., volume 45, . [bibtex] [doi]
[27]Dominant Role of Eddies and Filaments in the Offshore Transport of Carbon and Nutrients in the California Current System (, , , , and ), In J. Geophys. Res., volume 120, . [bibtex] [doi]
[26]黒潮フロント域の栄養塩供給 (), In 沿岸海洋研究, volume 53, . [bibtex]
[25]黒潮のマルチスケール栄養塩供給メカニズム (, and ), In 海洋と生物, volume 37, . [bibtex]
[24]Evidence of enhanced double-diffusive convection below the main stream of the Kuroshio Extension (, , and ), In J. Geophys. Res., volume 120, . [bibtex]
2016
[23]The early-winter mixing event associated with baroclinic motions in weakly stratified Lake Biwa (, , and ), In Inland Water., volume 6, . [bibtex]
[22]Observations of the Kuroshio Extension by an Autonomous Microstructure Float (, , and ), In CLIVAR Exchanges., volume 20, . [bibtex]
2017
[21] First Evidence of Coherent Bands of Strong Turbulent Layers Associated with High-Wavenumber Internal-Wave Shear in the Upstream Kuroshio (, , , , , and ), In Scientific Reports, volume 7, . [bibtex] [url] [doi]
[20] Nutrient interleaving below the mixed layer of the Kuroshio Extension Front ( and ), In Ocean Dynamics, volume 67, . [bibtex] [url]
[19]Measurement of sardine-generated turbulence in a large tank (, , and ), In Mar. Ecol. Prog. Ser., , In press. [bibtex]
2019
[18]Kuroshio Current: Physical, Biogeochemical and Ecosystem Dynamics, Takeyoshi Nagai, Hiroaki Saito, Koji Suzuki, Motomitsu Takahashi (Eds.), AGU-Wiley, . [bibtex]
[17] On the Future of Argo: A Global, Full-Depth, Multi-Disciplinary Array (, , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , and ), In Frontiers in Marine Science, volume 6, . [bibtex] [url] [doi]
[16]Multiscale routes to supply nutrients through the Kuroshio nutrient stream, In: Kuroshio Current: Physical, Biogeochemical and Ecosystem Dynamics (, and ), AGU-Wiley, . [bibtex] [doi]
[15]The Research Advancements and Historical Episodes brought by the Kuroshio Flowing across Generations, In: Kuroshio Current: Physical, Biogeochemical and Ecosystem Dynamics (, and ), AGU-Wiley, . [bibtex] [doi]
[14] Global Perspectives on Observing Ocean Boundary Current Systems (, , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , and ), In Frontiers in Marine Science, volume 6, . [bibtex] [url] [doi]
[13] How the Kuroshio Current Delivers Nutrients to Sunlit Layers on the Continental Shelves With Aid of Near-Inertial Waves and Turbulence (, , , , , , , and ), In Geophysical Research Letters, volume 46, . [bibtex] [url] [doi]
[12]Mixing associated with submesoscale processes In Encyclopedia of Ocean Sciences, Third Edition, Cochran H.K., H.J. Bokuniewicz, and P.L. Yger (Eds.) ( and ), Elsevier, . [bibtex]
2020
[11] Mesoscale Warm-Core Eddies Drive Interannual Modulations of Swordfish Catch in the Kuroshio Extension System (, and ), In Frontiers in Marine Science, volume 7, . [bibtex] [url] [doi]
[10] Phytoplankton growth and consumption by microzooplankton stimulated by turbulent nitrate flux suggest rapid trophic transfer in the oligotrophic Kuroshio (, , , , , , , , , , , , , and ), In Biogeosciences, volume 17, . [bibtex] [url] [doi]
2021
[9] Phytoplankton Increase Along the Kuroshio Due to the Large Meander (, , and ), In Frontiers in Marine Science, volume 8, . [bibtex] [url] [doi]
[8] How a Small Reef in the Kuroshio Cultivates the Ocean (, , , , , , , , , , and ), In Geophysical Research Letters, volume 48, , e2020GL092063 2020GL092063. [bibtex] [url] [doi]
[7]海洋学の10 年展望2021:中緯度 (, , , , , , , , and ), In 海の研究, volume 30, . [bibtex] [doi]
[6] Elevated turbulent and double-diffusive nutrient flux in the Kuroshio over the Izu Ridge and in the Kuroshio Extension (, , and ), In J. Oceanogr., volume 77, . [bibtex] [url] [doi]
[5] The Kuroshio flowing over seamounts and associated submesoscale flows drive 100-km-wide 100-1000-fold enhancement of turbulence (, , , , , , , , and ), In Commun Earth Environ, volume 2, . [bibtex] [url] [doi]
2022
[4]The Kuroshio nutrient stream: Where diapycnal mixing matters In Chemical Oceanography in frontal zones (Igor Belkin Ed.) (), Springer Nature, . [bibtex]
2023
[3] Salt-Fingering Under the Thermal-Wind and Lateral Shears in the Kuroshio Fronts (, , and ), In Journal of Geophysical Research: Oceans, volume 128, , e2022JC019435 2022JC019435. [bibtex] [url] [doi]
2024
[2] Energetic Stratified Turbulence Generated by Kuroshio–seamount interactions in Tokara Strait (, , , , , , , , and ), In Journal of Physical Oceanography, American Meteorological Society, volume 54, . [bibtex] [url] [doi]
[1] Steady nutrient upwelling around a biological hotspot of the confluence between the quasi-stationary jet and the Oyashio in the western North Pacific (, , , and ), In Scientific Reports, Springer Nature, volume 14, . [bibtex] [url] [doi]
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