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森重 学 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 "森重 学")

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

    39: 森重 学

    10: 本多 了

    4: VAN KEKEN Peter E.

    3: VAN KEKEN Peter, 田阪 美樹

    2: van Keken Peter, 吉田 晶樹, 徳利 ポール, 桑谷 立

    1: PETER van Keken, イスメイル-ザデー アリック, ツエペレフ イゴール, 中川 貴司, 千田 紅葉, 吉田 昌樹, 川勝 均, 折橋 裕二, 汐見 勝彦, 田島 文子, 石瀬 素子


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

    2007: 沈んで行く高温異常と発熱的相変化:本州沈み込み帯の海側の高温異常の起原(I214 P015) [Net] [Bib]
    Sinking hot anomaly and exothermic phase change: A possible origin of hot anomaly beneath the ocean side of Honshu subduction zone(I214 P015) [Net] [Bib]

    2008: Interaction of hot anomaly and subducting cold slab(J244 018) [Net] [Bib]

    2009: サブスラブマントル内に高温異常が存在する可能性について(I131 P017) [Net] [Bib]
    Possibility of hot anomaly in the sub slab mantle(I131 P017) [Net] [Bib]

    2010: 3次元球殻形状での沈み込みモデルを用いたジャンクション帯におけるマントルの流れの数値シミュレーション(SIT040 05) [Net] [Bib]
    A numerical study of mantle flow around a junction using a new subduction zone model in three dimensional sphere(SIT040 05) [Net] [Bib]

    2010: マントルウェッジ内小規模対流による格子選択配向(C12 10)(演旨) [Net] [Bib]
    Lattice preferred orientation due to the small scale convection in the mantle wedge (C12 10) [Net] [Bib]

    2011: 3次元球殻形状での沈み込み帯セミ・ダイナミックモデルの改良とその適用(SIT004 P08) [Net] [Bib]
    Improvement of a semi dynamical numerical model of a subduction zone in a 3D sphere and its applications(SIT004 P08) [Net] [Bib]

    2011: マントル遷移層における海洋プレートと海洋地殻の三次元的挙動(P1 45) [Net] [Bib]
    Three dimensional behavior of oceanic plate and crust in the mantle transition zone (P1 45) [Net] [Bib]

    2012: プレートジャンクションにおけるマントル流動とスラブの変形(SIT02 P05) [Net] [Bib]
    The mantle flow and the deformation of subducting slab at the plate junction(SIT02 P05) [Net] [Bib]

    2012: 数値計算によるマントルウェッジ内地震波速度異方性の推定(SIT02 25) [Net] [Bib]
    Seismic anisotropy in the mantle wedge estimated by numerical simulations(SIT02 25) [Net] [Bib]

    2013: 東北日本弧-千島弧接合部周辺の温度構造 [Net] [Bib]
    Thermal structure around the junction between Japan and Kurile arcs [Net] [Bib]

    2013: 沈み込むスラブ近傍の熱い熱異常によって支配される沈み込みのダイナミクス(SCG08 13) [Net] [Bib]
    Subduction zone dynamics controlled by the hot material next to the subducting slab (SCG08 13) [Net] [Bib]

    2014: スラブとマントルがデカップリングする深さの空間変化がスラブ表面温度に与える影響(SIT04 02) [Net] [Bib]
    Effects of a local deepening of slab mantle decoupling depth on slab surface temperature (SIT04 02) [Net] [Bib]

    2014: プレート境界上の低粘性層による東北地方の火山分布の説明(D32 10) [Net] [Bib]
    Low viscosity layer at the plate interface as a possible explanation for the distribution of volcanoes in NE Japan (D32 10) [Net] [Bib]

    2015: プレート境界上の低粘性層による沈み込み帯3次元温度構造の発達(SCG60 03) [Net] [Bib]
    Development of a 3D thermal structure in the subduction zone due to a low viscosity layer at the plate interface (SCG60 03) [Net] [Bib]

    2015: 沈み込むプレートの形状による流体の3次元的移動(S04 P06) [Net] [Bib]
    Migration of fluids in 3D due to the geometry of subducting slab (S04 P06) [Net] [Bib]

    2016: スラブ直上の薄い低粘性層によるスラブ・マントル間カップリングの弧に沿った方向の変化(SCG57 P02) [Net] [Bib]
    Along arc variation in the slab mantle coupling due to a thin, low viscosity layer just above the slab (SCG57 P02) [Net] [Bib]

    2016: 沈み込み帯における流体の3次元的な移動によるスロースリップの空間変化(S04 P04) [Net] [Bib]
    Spatial variation in slow slip events caused by 3D fluid migration in subduction zones (S04 P04) [Net] [Bib]

    2016: 流体の3次元的移動とそのスロー地震の空間変化への示唆(SCG21 21) [Net] [Bib]
    3D migration of fluid and its implications for the spatial variation of slow earthquakes (SCG21 21) [Net] [Bib]

    2017: 3D fluid migration due to complex slab geometries and its implications for short term slow slip events (SSS04 P61) [Net] [Bib]

    2017: Fluid migration in poro viscoelastic slab (SIT26 03) [Net] [Bib]

    2017: スラブ起源流体の多様な振る舞い(S08 P16) [Net] [Bib]
    A wide range of behavior of slab derived fluid (S08 P16) [Net] [Bib]

    2017: 数値モデルと観測との比較に基づく沈み込み帯ダイナミクスの研究(S20 03) [Net] [Bib]
    Subduction zone dynamics constrained based on the comparison between numerical models and observations (S20 03) [Net] [Bib]

    2018: Importance of a thin, low viscosity layer on top of the slab for rock deformation and fluid migration in subduction zones (SIT20 P05) [Net] [Bib]

    2018: Migration of aqueous fluid in a subducting slab with implications for intermediate depth seismicity (SCG52 10) [Net] [Bib]

    2018: 数値モデルと観測との比較に基づく沈み込み帯ダイナミクスの解明 [Net] [Bib] [Doi]
    Subduction Zone Dynamics Constrained from Numerical Models and Observations [Net] [Bib] [Doi]

    2018: 見かけの異方性を考慮したP波方位異方性と鉛直異方性の解釈 東北地方 (S06 05) [Net] [Bib]
    Interpretation of Radial and Azimuthal Anisotropy of the NE Japan: Evaluation of Apparent Seismic Anisotropy (S06 05) [Net] [Bib]

    2019: Mechanism of aqueous fluid migration through a thin, low viscosity layer near the subducting plate interface (S07P 05) [Net] [Bib]

    2020: Bayesian inference of model parameters controlling the thermal structure of subduction zones (SMP40 01) [Net] [Bib]

    2020: Rheological effects on aqueous fluid migration near the subducting plate interface (SCG69 10) [Net] [Bib]

    2020: 地殻熱流量データに基づく沈み込み帯温度構造の不確かさの推定(S08 06) [Net] [Bib]
    Uncertainty estimation for the thermal structure of subduction zones based on surface heat flow measurements (S08 06) [Net] [Bib]

    2021: 海洋プレート冷却モデルが東北地方沈み込み帯の温度構造に与える影響(SCG55 06) [Net] [Bib]
    Thermal structure of the Tohoku subduction zone: effects of plate cooling models (SCG55 06) [Net] [Bib]

    2021: 熱伝導率の異方性を考慮した東北地方沈み込み帯温度構造のモデリング(S07 02) [Net] [Bib]
    Impact of anisotropic thermal conductivity on the thermal structure of the Tohoku subduction zone, Northeast Japan (S07 02) [Net] [Bib]

    2022: 熱的特性の変化を考慮したプレート冷却モデルから予測する東北地方沈み込み帯温度構造(SCG56 04) [Net] [Bib]
    Thermal structure of the Tohoku subduction zone predicted by plate cooling models with temperature and lithology dependent thermal properties (SCG56 04) [Net] [Bib]

    2022: 結晶選択配向による熱伝導率の異方性が沈み込み帯温度構造に及ぼす影響(SCG49 14) [Net] [Bib]
    Impact of anisotropic thermal conductivity due to crystallographic preferred orientation on the thermal structure of subduction zones (SCG49 14) [Net] [Bib]

    2023: Numerical modeling of three dimensional fluid migration in subduction zones (SCG58 11) [Net] [Bib]

    2023: 中央海嶺 トランスフォーム断層系における溶け残りマントルの不均質性(S07 01) [Net] [Bib]
    Spatial variations in the degree of melt depletion in a mid ocean ridge transform fault system (S07 01) [Net] [Bib]

    2024: 中央海嶺 トランスフォーム断層系における枯渇度の空間分布(SCG48 10) [Net] [Bib]
    Spatial distributions of the degree of melt depletion in a mid ocean ridge transform fault system (SCG48 10) [Net] [Bib]

    2024: 海洋プレートの温度構造は拡大速度に依存するのか?(S07 01) [Net] [Bib]
    Does the thermal structure of the oceanic plate depend on spreading rate? (S07 01) [Net] [Bib]

    2024: 海洋プレート底部における小規模対流の開始:枯渇マントルの影響(SCG48 09) [Net] [Bib]
    Onset of small scale convection beneath the oceanic plate: effects of melt depletion (SCG48 09) [Net] [Bib]

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