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橋本 明弘 様の 共著関連データベース

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+(A list of literatures under single or joint authorship with "橋本 明弘")

共著回数と共著者名 (a list of the joint author(s))

    34: 橋本 明弘

    30: 新堀 敏基

    16: 福井 敬一

    12: 高木 朗充

    8: 石井 憲介

    5: 佐藤 英一, 森 健彦

    4: 鈴木 雄治郎

    3: 山里 平, 徳本 哲男

    2: 宇野 史睦, 山本 哲也, 林 洋介, 長谷川 嘉彦

    1: 加藤 幸司, 大竹 秀明, 安藤 忍, 小司 禎教, 小長谷 瑞木, 山本 哲, 林 勇太, 棚田 俊收, 清野 直子, 白土 正明, 相川 百合, 石井 徹之, 長井 雅史, 鬼澤 真也, 鵜川 元雄


発行年とタイトル (Title and year of the issue(s))

    2009: 2009年2月2日浅間山噴火に伴う量的降灰予測 気象レーダーにより観測された噴煙エコー頂高度の利用 [Net] [Bib] [Doi]
    Quantitative Tephra Fall Prediction of the Eruption at Asama Volcano on 1 February 2009: Using Observation Data of the Eruption Cloud Echo Height by Weather Radar [Net] [Bib] [Doi]

    2009: 雲・降水過程を考慮した噴煙−降灰モデルの開発(V159 P026) [Net] [Bib]
    Development of eruption cloud model incorporating water phase microphysics(V159 P026) [Net] [Bib]

    2009: 雲過程を考慮した噴煙モデルの開発 Sarychev Peak 2009年6月12日噴火事例への適用 [Net] [Bib] [Doi]
    Development of Eruption Cloud Model Involving Cloud Microphysics Application to the Eruption of Sarychev Peak on 12 June, 2009 [Net] [Bib] [Doi]

    2010: 2009年桜島噴火に伴う量的降灰予測(SVC062 P02) [Net] [Bib]
    Quantitative Tephra Fall Predictions of the Eruptions at Sakurajima Volcano in 2009(SVC062 P02) [Net] [Bib]

    2010: 雲・降水過程を考慮した噴煙−降灰モデルの開発(その2)−−霧島山新燃岳2008年8月22日噴火事例への適用−−(ポスターセッション)(演旨) [Net] [Bib] [Doi]
    Development of Eruption Cloud Model coupled with Detailed Cloud Microphysics (2) Application to the Eruption of Kirishimayama Shinmoedake on 22 August, 2008 [Net] [Bib] [Doi]

    2011: ゾンデによる霧島山新燃岳の噴煙観測 [Net] [Bib] [Doi]
    Balloon borne Observation of Volcanic Plume from Shinmoe dake Volcano [Net] [Bib] [Doi]

    2011: 火山灰移流拡散モデルによる量的降灰予測 2009年浅間山噴火の事例 [Net] [Bib]
    Quantitative Tephra Fall Prediction with the JMA Mesoscale Tracer Transport Model for Volcanic Ash: A Case Study of the Eruption at Asama Volcano in 2009 [Net] [Bib]

    2011: 霧島山新燃岳噴火に伴う火山灰輸送の数値実験(SVC050 08) [Net] [Bib]
    Numerical simulation of the volcanic ash transpotation during the eruption of Mt. Shinmoedake of Kirishima Mountains(SVC050 08) [Net] [Bib]

    2011: 霧島山新燃岳噴火に伴う火山灰輸送の数値実験(その2) [Net] [Bib] [Doi]
    Numerical simulation of the volcanic ash transpotation during the eruption of Mt. Shinmoedake of Kirishima Mountains (2) [Net] [Bib] [Doi]

    2012: 移流拡散モデルによる降下火山礫予測 [Net] [Bib] [Doi]
    Trial Experiments of the Lapilli Fall Prediction with the JMA Local Tracer Transport Model [Net] [Bib] [Doi]

    2012: 霧島山新燃岳噴火に伴う火山灰輸送の数値実験(その3) [Net] [Bib] [Doi]
    Numerical simulation of the volcanic ash transpotation during the eruption of Mt. Shinmoedake of Kirishima Mountains (3) [Net] [Bib] [Doi]

    2013: 数100kmにわたる火山灰長距離輸送に関するモデル開発と数値実験 [Net] [Bib] [Doi]
    Model Development and Simulation for Volcanic Ash Long range transport beyond 100 km [Net] [Bib] [Doi]

    2013: 気象庁非静力学モデルを用いた対流圏補正によるSAR干渉解析霧島山等への適用 [Net] [Bib] [Doi]
    Correction of the SAR Interferometric Image for Atmospheric Delay Using by the JMA NHM and Its Application to the Volcanic Deformations [Net] [Bib] [Doi]

    2014: 2011年1月26-27日新燃岳噴火に伴う火山灰輸送に関する数値実験(SVC50 03) [Net] [Bib]
    Numerical Simulation of Volcanic Ash Transport for the Eruptions at Mt. Shinmoe dake during 26 27 January 2011 (SVC50 03) [Net] [Bib]

    2014: 領域移流拡散モデルによる1914(大正3)年桜島噴火を想定した火山灰拡散および降灰予測(SVC50 P01) [Net] [Bib]
    Tephra Fall Predictions with the JMA Regional Atmospheric Transport Model for the 1914 Eruption at Sakurajima Volcano (SVC50 P01) [Net] [Bib]

    2014: 高層の火山灰の落下速度 鈴木の抵抗係数へのカニンガム補正の適用 [Net] [Bib] [Doi]
    Settling Velocities of the Tephra Particles in the Upper Atmosphere: Cunningham Correction Factor on Suzuki's Drag Coefficient [Net] [Bib] [Doi]

    2015: 新燃岳2011年噴火事例における火山灰供給モデルの検討 [Net] [Bib] [Doi]
    Reconstruction of Volcanic Ash Discharging Model and its Effect on Volcanic Ash Transport Simulation for 2011 Eruption of Shinmoe dake [Net] [Bib] [Doi]

    2015: 移流拡散モデルのための即時的な火山灰データ同化システムの構築にむけて [Net] [Bib] [Doi]
    The instantaneous volcanic ash data assimilation system for the atmospheric transport model [Net] [Bib] [Doi]

    2016: 御嶽山2014年噴火に関する火山ガス移流拡散シミュレーション [Net] [Bib] [Doi]
    Volcanic Gas Transport Simulation for the 2014 Eruption of Mt. Ontake [Net] [Bib] [Doi]

    2016: 新燃岳2011年噴火にともなう火山灰雲の再現性に関する初期粒径分布の検討(MIS26 10) [Net] [Bib]
    An examination of the impact of initial size distribution of volcanic ash particles on volcanic ash transport simulation in the case of Sinmoe dake eruption 2011 (MIS26 10) [Net] [Bib]

    2016: 火山灰拡散予測のためのレーダーと衛星観測の即時的なデータ同化 [Net] [Bib] [Doi]
    Instantaneous data assimilation of radar and satellite observations for the volcanic ash forecsting [Net] [Bib] [Doi]

    2016: 降灰予測モデルの検証のための太陽電池発電量を利用した降灰量推定(MIS26 11) [Net] [Bib]
    Estimation method of tephra deposition using photovoltaic power generation data for model validation of tephra fall simulation (MIS26 11) [Net] [Bib]

    2017: 火山ガス移流拡散シミュレーションにおける解像度依存性 [Net] [Bib] [Doi]
    Sensitivity to Grid Spacing in a Volcanic Gas Transport Simulation [Net] [Bib] [Doi]

    2017: 火山灰拡散予測のための火山灰データ同化システムの開発(MIS02 P02) [Net] [Bib]
    Development of a Volcanic Ash Data Assimilation System for Atmospheric Transport Model (MIS02 P02) [Net] [Bib]

    2018: 4次元変分法による噴煙柱から離脱する火山灰粒子の高度分布の解析 [Net] [Bib] [Doi]
    Using 4 Dimensional Variational Method, Analysis of Vertical Distribution of Ash Particles Segregation from Eruption column [Net] [Bib] [Doi]

    2018: 気象予測モデルを併用した新しい二酸化硫黄放出率推定方法の開発 [Net] [Bib] [Doi]
    Development of new method for estimating the SO2 discharge rate using a numerical weather prediction model [Net] [Bib] [Doi]

    2019: 火山灰による太陽光発電量の減少率を利用した降灰量推定 [Net] [Bib] [Doi]
    Estimation method of amount of tephra fall using effective reduction of photovoltaic power generation [Net] [Bib] [Doi]

    2020: 気象予測モデルを併用した新しい二酸化硫黄放出率推定手法の開発:その2 [Net] [Bib] [Doi]
    Development of new method for estimating the SO2 discharge rate using a numerical weather prediction model: Part II [Net] [Bib] [Doi]

    2021: 大気環境測定局の二酸化硫黄濃度による火山活動評価への活用 [Net] [Bib] [Doi]
    Evaluation of volcanic activity using by sulfur dioxide concentration observed by the atmospheric environment monitoring stations [Net] [Bib] [Doi]

    2021: 気象予測モデルを併用した新しい二酸化硫黄放出率推定手法の開発: その3 [Net] [Bib] [Doi]
    Development of new method for estimating the SO2 discharge rate using a numerical weather prediction model: Part III [Net] [Bib] [Doi]

    2022: 気象予測モデルを併用した新しい二酸化硫黄放出率推定手法の開発: その4 [Net] [Bib] [Doi]
    Development of new method for estimating the SO2 discharge rate using a numerical weather prediction model: Part IV [Net] [Bib] [Doi]

    2023: 移流拡散モデルによる再飛散火山灰予測 [Net] [Bib] [Doi]
    Resuspension Prediction with the JMA's Atmospheric Transport Model for Volcanic Ash [Net] [Bib] [Doi]

    2023: 衛星観測と前方流跡線解析による二酸化硫黄放出率推定 [Net] [Bib] [Doi]
    Estimation of SO2 discharge rate from satellite observation and forward trajectory analysis [Net] [Bib] [Doi]

    2024: 衛星観測と前方流跡線解析による二酸化硫黄放出率推定その2 [Net] [Bib] [Doi]
    Estimation of SO2 discharge rate from satellite observation and forward trajectory analysis: Part II [Net] [Bib] [Doi]

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