nkysdb: なかよし論文データベース

大槻 静香 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 "大槻 静香")

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

    24: 大槻 静香

    13: 中村 美千彦

    7: 下司 信夫

    5: 松本 恵子

    4: 無盡 真弓

    3: 井口 正人, 味喜 大介, 安川 宙葵, 野口 里奈

    2: 佐々木 理, 奥村 聡, 庄司 大悟

    1: 三輪 学央, 上杉 健太朗, 及川 輝樹, 斎藤 元治, 日野 英逸, 板木 拓也, 栗田 敬, 河村 祥一, 石塚 治, 西原 歩


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

    2010: 桜島から噴出している火山礫のミクロ/ナノ構造−−”ガス溜まり”の実体とそのブルカノ式噴火機構への意義−− [Net] [Bib] [Doi]
    Micro/Nanostructure of Volcanic Lapilli from Resent Sakurajima Eruptions : Gas Pocket Materials and Mechanism of Vulcanian Explosions [Net] [Bib] [Doi]

    2010: 桜島火山の火山灰に見られる特徴的な微細組織−−火道内部環境の指標−−(ポスターセッション) [Net] [Bib]
    Characteristic microstructures of the volcanic ashes from the Sakurajima volcano : Insights into conduit environments [Net] [Bib]

    2011: 地表付近でのメルトフォームの崩壊メカニズム ブルカノ式噴火機構への意義 (SVC047 13) [Net] [Bib]
    Mechanism of foam collapse near the surface: implications for the Vulcanian eruptions(SVC047 13) [Net] [Bib]

    2011: 火山灰に含まれるナノライトから探る桜島のガス溜まりプロセス(SMP006 07) [Net] [Bib]
    Nanolites in volcanic ash: a clue to understand gas pocket processes in the on going Sakurajima eruption(SMP006 07) [Net] [Bib]

    2012: 表面張力によるメルトフォーム組織緩和 粘性・比表面積・斑晶量の効果 [Net] [Bib] [Doi]
    Textural relaxation of melt foam due to surface tension: Effect of viscosity, specific surface area and phenocryst content [Net] [Bib] [Doi]

    2012: 表面張力によるメルトフォーム組織緩和実験(SVC54 P04) [Net] [Bib]
    Experimental study on the textural relaxation of melt foam(SVC54 P04) [Net] [Bib]

    2014: 表面張力によるメルトフォームの組織緩和実験 試料サイズ依存性 [Net] [Bib] [Doi]
    Textural relaxation of melt foam due to surface tension: Sample size dependence [Net] [Bib] [Doi]

    2015: 新燃岳噴石に含まれる微小樹枝状石基結晶の3次元観察 [Net] [Bib] [Doi]
    X ray CT observation of minute dendritic groundmass crystals in the volcanic ejecta from the Shinmoedake volcano [Net] [Bib] [Doi]

    2015: 火道浅部条件における石基微細結晶の成長実験 [Net] [Bib] [Doi]
    Microlites crystallization experiments in shallow conduit conditions [Net] [Bib] [Doi]

    2016: 阿蘇中岳2014 2015年火山灰の微細組織の時間変化 [Net] [Bib] [Doi]
    Temporal change in microstructure of volcanic ashes from the Aso Nakadake 2014 2015 [Net] [Bib] [Doi]

    2017: Textural relaxation and permeability evolution of bubble bearing magmas (SVC46 P05) [Net] [Bib]

    2017: マグマの浸透流脱ガス機構の解明に関する研究 表面張力による発砲マグマの形状緩和実験 [Net] [Bib]

    2017: 阿蘇中岳2014 2015年噴出物に含まれるリサイクル火山灰の特徴 [Net] [Bib] [Doi]
    Characterization of recycled ashes from the Aso Nakadake 2014 2015 [Net] [Bib] [Doi]

    2018: ハワイの巨大ルートレスコーンの形成過程検討 [Net] [Bib] [Doi]
    Formation process of huge rootless cones in Big Island, Hawaii [Net] [Bib] [Doi]

    2018: 人工知能を用いた火山灰形状の自動判別 [Net] [Bib]
    Classification of volcanic ash particles using artificial intelligence [Net] [Bib]

    2018: 低水蒸気圧下における安山岩質軽石の石基結晶化実験 [Net] [Bib] [Doi]
    Groundmass crystallization experiments of an andesitic pumice under low vapor pressure [Net] [Bib] [Doi]

    2018: 噴火活動評価のための火山噴出物カタログの作成 [Net] [Bib] [Doi]
    Volcanic Ash Catalog for evaluation of eruption activity [Net] [Bib] [Doi]

    2018: 岩石学的解析とメルト包有物分析に基づく霧島火山新燃岳2018年噴火マグマの特徴と揮発性成分濃度 [Net] [Bib] [Doi]
    Petrological characteristics and volatile content of magma from the 2018 eruption of Shinmoedake, Kirishima volcano [Net] [Bib] [Doi]

    2018: 火山噴出物粒子のX線元素マッピングによる識別 [Net] [Bib] [Doi]
    Classification of volcanic ash particles by X ray elemental maps [Net] [Bib] [Doi]

    2019: 低水蒸気圧下における安山岩質軽石の石基結晶化実験(SVC37 02) [Net] [Bib]
    Groundmass crystallization experiments of an andesitic pumice under low vapor pressure (SVC37 02) [Net] [Bib]

    2020: 火山灰カタログ 霧島山(新燃岳)2008年~2018年噴火噴出物 [Net] [Bib]
    Catalog of Volcanic Ash Linked with Volcanic Activities: Shinmoedake 2008 2018 Eruptions, Kirishima Volcano, Japan [Net] [Bib]

    2020: 火山灰カタログ3:阿蘇山(中岳)2014~2016年噴火噴出物 [Net] [Bib]
    Catalog of Volcanic Ash Linked with Volcanic Activities 3: The 2014–2016 Eruption of Aso Volcano, Japan [Net] [Bib]

    2020: 粒子形状と透過性に基づいた機械学習による火山灰粒子画像分類(MIS31 P02) [Net] [Bib]
    Machine learning for grain images of volcanic ash based on grain shape and transparency (MIS31 P02) [Net] [Bib]

    2023: 安山岩軽石の石基の結晶化過程:低圧加熱実験からの制約 [Net] [Bib] [Doi]
    Groundmass crystallization process of andesitic pumice: Insights from low pressure heating experiments [Net] [Bib] [Doi]

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