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Robust responses of typhoon hazards in northern Japan to global warming climate: cases of landfalling typhoons in 2016.
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- Meteorological Applications, 2020, v. 27, n. 5, p. 1, doi. 10.1002/met.1954
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- Article
Impacts of Mountain Topography and Background Flow Conditions on the Predictability of Thermally Induced Thunderstorms and the Associated Error Growth.
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- Journal of the Atmospheric Sciences, 2023, v. 80, n. 4, p. 1177, doi. 10.1175/JAS-D-21-0331.1
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Low-Level Circulation and Its Coupling with Free-Tropospheric Variability as a Mechanism of Spontaneous Aggregation of Moist Convection.
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- Journal of the Atmospheric Sciences, 2022, v. 79, n. 12, p. 3429, doi. 10.1175/JAS-D-21-0313.1
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A Triggering Mechanism for Rapid Intensification of Tropical Cyclones.
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- Journal of the Atmospheric Sciences, 2015, v. 72, n. 7, p. 2666, doi. 10.1175/JAS-D-14-0193.1
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A Transition Mechanism for the Spontaneous Axisymmetric Intensification of Tropical Cyclones.
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- Journal of the Atmospheric Sciences, 2013, v. 70, n. 1, p. 112, doi. 10.1175/JAS-D-11-0285.1
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Large-eddy simulation of plume dispersion in a turbulent boundary layer flow generated by a dynamically controlled recycling method.
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- Atmospheric Science Letters (John Wiley & Sons, Inc. ), 2024, v. 25, n. 4, p. 1, doi. 10.1002/asl.1204
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- Article
Characteristics of Nepartak (2021), a subtropical cyclone controlled by an upper‐tropospheric cutoff low.
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- Atmospheric Science Letters (John Wiley & Sons, Inc. ), 2023, v. 24, n. 10, p. 1, doi. 10.1002/asl.1177
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An analytical representation of raindrop size distribution in a mixed convective and stratiform precipitating system as revealed by field observations.
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- Atmospheric Science Letters (John Wiley & Sons, Inc. ), 2023, v. 24, n. 6, p. 1, doi. 10.1002/asl.1155
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- Article
Large-eddy simulation of urban boundary-layer flows by generating turbulent inflows from mesoscale meteorological simulations.
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- Atmospheric Science Letters (John Wiley & Sons, Inc. ), 2012, v. 13, n. 3, p. 180, doi. 10.1002/asl.377
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Mechanisms for intensification and maintenance of numerically simulated dust devils.
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- Atmospheric Science Letters (John Wiley & Sons, Inc. ), 2010, v. 11, n. 1, p. 27, doi. 10.1002/asl.249
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- Article
Comparison of vulnerability to catastrophic wind between Abies plantation forests and natural mixed forests in northern Japan.
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- Forestry: An International Journal of Forest Research, 2019, v. 92, n. 4, p. 436, doi. 10.1093/forestry/cpy045
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- Article
Long-Term Ash Dispersal Dataset of the Sakurajima Taisho Eruption for Ashfall Disaster Countermeasure.
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- Earth System Science Data Discussions, 2022, p. 1, doi. 10.5194/essd-2022-42
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- Article
Radiative Effects on Tropical Cyclone Development in Different Life Stages.
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- Monthly Weather Review, 2022, v. 150, n. 12, p. 3131, doi. 10.1175/MWR-D-21-0337.1
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Finescale Doppler Radar Observation of a Tornado and Low-Level Misocyclones within a Winter Storm in the Japan Sea Coastal Region.
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- Monthly Weather Review, 2011, v. 139, n. 2, p. 351, doi. 10.1175/2010MWR3247.1
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- Article
Dust Devil Steady-State Structure from a Fluid Dynamics Perspective.
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- Space Science Reviews, 2016, v. 203, n. 1-4, p. 209, doi. 10.1007/s11214-016-0281-0
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Large-Eddy Simulations of Dust Devils and Convective Vortices.
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- Space Science Reviews, 2016, v. 203, n. 1-4, p. 245, doi. 10.1007/s11214-016-0284-x
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History and Applications of Dust Devil Studies.
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- Space Science Reviews, 2016, v. 203, n. 1-4, p. 5, doi. 10.1007/s11214-016-0239-2
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- Article
Estimation of a possible maximum flood event in the Tone River basin, Japan caused by a tropical cyclone.
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- Hydrological Processes, 2013, v. 27, n. 23, p. 3292, doi. 10.1002/hyp.9830
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Quantitative estimations of hazards resulting from Typhoon Chanthu (2016) for assessing the impact in current and future climate.
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- Hydrological Research Letters, 2019, v. 13, n. 2, p. 20, doi. 10.3178/hrl.13.20
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Projection of impacts of climate change on windthrows and evaluation of potential adaptation measures in forest management: A case study from empirical modelling of windthrows in Hokkaido, Japan, by Typhoon Songda (2004).
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- Hydrological Research Letters, 2016, v. 10, n. 4, p. 132, doi. 10.3178/hrl.10.132
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Effects of global warming on the impacts of Typhoon Mireille (1991) in the Kyushu and Tohoku regions.
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- Hydrological Research Letters, 2016, v. 10, n. 3, p. 81, doi. 10.3178/hrl.10.81
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Assessing the impacts of global warming on meteorological hazards and risks in Japan: Philosophy and achievements of the SOUSEI program.
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- Hydrological Research Letters, 2016, v. 10, n. 4, p. 119, doi. 10.3178/hrl.10.119
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Robustness and uncertainty of projected changes in the impacts of Typhoon Vera (1959) under global warming.
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- Hydrological Research Letters, 2016, v. 10, n. 3, p. 88, doi. 10.3178/hrl.10.88
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- Article
Long-term ash dispersal dataset of the Sakurajima Taisho eruption for ashfall disaster countermeasure.
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- Earth System Science Data, 2022, v. 14, n. 12, p. 5309, doi. 10.5194/essd-14-5309-2022
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- Article
Importance of the Numerical Representation of Shallow and Deep Convection for Simulations of Dust Transport over a Desert Region.
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- Advances in Meteorology, 2012, p. 1, doi. 10.1155/2012/413584
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Convection-Permitting Models for Climate Research.
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- Bulletin of the American Meteorological Society, 2022, v. 103, n. 1, p. E77, doi. 10.1175/BAMS-D-21-0043.1
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Long-term impacts of ocean wave-dependent roughness on global climate systems.
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- Journal of Geophysical Research. Oceans, 2017, v. 122, n. 3, p. 1995, doi. 10.1002/2016JC012621
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Preface to the Special Issue on Summer 2020: Record Rainfall in Asia — Mechanisms, Predictability and Impacts.
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- Advances in Atmospheric Sciences, 2021, v. 38, n. 12, p. 1977, doi. 10.1007/s00376-021-1010-5
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Large-Scale Turbulence Structures in the Atmospheric Boundary Layer Observed above the Suburbs of Kyoto City, Japan.
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- Boundary-Layer Meteorology, 2022, v. 184, n. 2, p. 333, doi. 10.1007/s10546-022-00707-8
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Large-Eddy-Simulation Study of the Effects of Building-Height Variability on Turbulent Flows over an Actual Urban Area.
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- Boundary-Layer Meteorology, 2018, v. 168, n. 1, p. 127, doi. 10.1007/s10546-018-0344-8
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Typhoon-induced precipitation characterization over northern Japan: a case study for typhoons in 2016.
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- Progress in Earth & Planetary Science, 2020, v. 7, n. 1, p. 1, doi. 10.1186/s40645-020-00347-x
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- Article
Benefits of high-resolution downscaling experiments for assessing strong wind hazard at local scales in complex terrain: a case study of Typhoon Songda (2004).
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- Progress in Earth & Planetary Science, 2020, v. 7, n. 1, p. 1, doi. 10.1186/s40645-019-0317-7
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Development of a Data Assimilation Method Using Vibration Equation for Large‐Eddy Simulations of Turbulent Boundary Layer Flows.
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- Journal of Advances in Modeling Earth Systems, 2020, v. 12, n. 8, p. 1, doi. 10.1029/2019MS001872
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A Multimodel Intercomparison of an Intense Typhoon in Future, Warmer Climates by Four 5-km-Mesh Models.
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- Journal of Climate, 2017, v. 30, n. 15, p. 6017, doi. 10.1175/JCLI-D-16-0715.1
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Response of Intensity and Structure of Typhoon Jebi (2018) before Landfall to 2-K and 4-K Warmed Future Climates in Dynamical Downscaling Experiments.
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- SOLA, 2023, v. 19, p. 142, doi. 10.2151/sola.2023-019
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The SOLA Award in 2022.
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- SOLA, 2023, v. 19, p. ii, doi. 10.2151/sola2023-000.3
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Editorial.
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- SOLA, 2023, v. 19, p. i, doi. 10.2151/sola2023-000.1
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The SOLA Award in 2021.
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- SOLA, 2022, v. 18, p. ii, doi. 10.2151/sola.2022-000.2
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- Article
Editorial.
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- SOLA, 2022, v. 18, p. i, doi. 10.2151/sola2022-000.1
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The SOLA Award in 2020.
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- SOLA, 2021, v. 17, p. ii, doi. 10.2151/sola.2021-000.2
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- Article
Editorial.
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- SOLA, 2021, v. 17, p. i, doi. 10.2151/sola.2021-000.1
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Environmental Factors for the Development of Heavy Rainfall in the Eastern Part of Japan during Typhoon Hagibis (2019).
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- SOLA, 2020, v. 16, p. 30, doi. 10.2151/sola.2020-006
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The SOLA Award in 2019.
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- SOLA, 2020, v. 16, p. iii, doi. 10.2151/sola.2020-000.2
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- Article
Editorial.
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- SOLA, 2020, v. 16, p. i, doi. 10.2151/sola.2020-000.1
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Diagnosing Environmental Properties of the July 2018 Heavy Rainfall Event in Japan.
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- SOLA, 2019, v. 15A, p. 60, doi. 10.2151/sola.15A-011
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Editorial of Special Edition on Extreme Rainfall Events in 2017 and 2018.
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- SOLA, 2019, v. 15A, p. i, doi. 10.2151/sola.15A-000.1
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Impacts of Global Warming on Extreme Rainfall of a Slow-Moving Typhoon: A Case Study for Typhoon Talas (2011).
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- SOLA, 2019, v. 15, p. 125, doi. 10.2151/sola.2019-023
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Quantitative Estimation of Strong Winds in an Urban District during Typhoon Jebi (2018) by Merging Mesoscale Meteorological and Large-Eddy Simulations.
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- SOLA, 2019, v. 15, p. 22, doi. 10.2151/sola.2019-005
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- Article
The SOLA Award in 2018.
- Published in:
- SOLA, 2019, v. 15, p. iii, doi. 10.2151/sola.2019-000.2
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- Publication type:
- Article
Editorial.
- Published in:
- SOLA, 2019, v. 15, p. i, doi. 10.2151/sola.2019-000.1
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- Publication type:
- Article