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吉村 辰朗 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 "吉村 辰朗")

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

    72: 吉村 辰朗

    11: 間野 道子

    5: 七山 太, 井上 基, 小松原 琢, 新見 健, 木下 博久, 水野 清秀

    4: 寒川 旭, 照井 剛, 葛原 秀雄

    3: 中村 美重, 図司 高志, 松木 宏彰, 横井川 博之

    2: 居川 信之, 福山 裕樹, 西村 一彰, 赤桐 毅一, 赤間 大地, 鈴木 美和子

    1: 久保田 隆二, 佐藤 正明, 内田 敬, 前田 純二, 半場 康弘, 古城 輝夫, 古賀 義人, 吉松 史徳, 呉 明暢, 大繁 忠治, 大野 正夫, 小田 将太郎, 山根 健二, 山田 琢哉, 平川 泰之, 延原 英樹, 後藤 啓治, 末武 修, 杉山 光徳, 村上 哲, 村嶋 光明, 村瀬 博一, 森 昭宏, 森田 英利, 田中 信, 相原 安津夫, 磯貝 太, 立石 勝, 笠山 浩昭, 縄田 徳広, 近藤 憲昭, 鮎沢 潤, 鶴田 勝也


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

    1987: 北部九州第三紀炭田の続成・埋没被熱の石炭化度調査による解析 [Net] [Bib]
    Diagenetic and burial thermal alterations of the Tertiary System analyzed by coalfication study in North Kyushu, Japan [Net] [Bib]

    1987: 断層におけるγ線測定 [Net] [Bib]
    Gamma Ray Surveys of Faults [Net] [Bib]

    1987: 断層におけるγ線測定(2) 交差断層について [Net] [Bib]

    1988: 断層場モデルによる活断層と休断層の簡易判別方法 休断層及び活断層におけるγ線放射の規則性 [Net] [Bib] [Doi]
    Geological significance of gamma ray radiated from faults [Net] [Bib] [Doi]

    1991: 小田原地区における活断層調査 [Net] [Bib]

    1991: 西相模湾北西域における変動地形調査マグニチュード7級の内陸地震の余地に関する研究 [Net] [Bib]

    1992: γ線測定による断層破砕帯調査 [Net] [Bib]
    Ganma Ray Measurement ot Investigate Faults [Net] [Bib]

    1992: γ線測定による活断層調査 [Net] [Bib]

    1992: 活断層調査のためのγ線測定方法 [Net] [Bib] [Doi]
    The method of ganma ray surveys to investigate active faults [Net] [Bib] [Doi]

    1993: 中央構造線における断層場幅の累積現象 [Net] [Bib]

    1994: 活断層調査におけるγ線測定の可能性 断層場幅と地質年代による活断層の活動度評価 [Net] [Bib]

    1995: 1927(昭和2)年北丹後地震の地震断層におけるL棒探査とγ線測定 [Net] [Bib]

    1995: 野島地震断層におけるγ線測定 断層場幅と地質年代による活断層の活動度評価 [Net] [Bib]
    Measurement of gamma ray intensity on Nozima Earthquake Fault [Net] [Bib]

    1996: 断層と断層帯との斜交関係について 郷村・野島地震断層を例として [Net] [Bib]
    Some Considerations on Diagonal Cross relationship between Fault and Fault Zone with Goumura and Nojima Seismic Fault Layers as Examples [Net] [Bib]

    1996: 断層調査としての物理探査手法 高密度電気探査と放射能探査の併用 [Net] [Bib]
    The Geophysical Methods for the Investigation of Fault High Density Electrical Prospecting and Radiometric Prospecting [Net] [Bib]

    1997: γ線測定による未固結泥層内断層面の検出 [Net] [Bib] [Doi]
    Fault in mud detected by gamma ray survey [Net] [Bib] [Doi]

    1997: 滋賀県比良山地東縁から琵琶湖底にかけての地質構造及び活断層調査 [Net] [Bib]
    Geological structure and activity surveys of active faults at the foot of the Hira Mountains and in the western side of Lake Biwa, Shiga Prefecture [Net] [Bib]

    1997: 琵琶湖西岸断層系.饗庭野断層のトレンチ調査 [Net] [Bib]
    Excavation Survey of the Aibano Fault, West Side of the Lake Biwa [Net] [Bib]

    1998: 琵琶湖西岸活断層系・饗庭野断層の活動履歴(ポスターセッション) [Net] [Bib]
    Paleoseismological survey of the Aibano fault, the Biwako Seigan active fault system [Net] [Bib]

    1998: 琵琶湖西岸活断層系北部,饗庭野断層の第四紀後期の活動 [Net] [Bib]
    Late Quaternary activity of the Aibano Fault, western side of Lake Biwa, Kinki District, Japan [Net] [Bib]

    1999: 放射能探査による伏在断層の検出は可能か 測定条件規制について [Net] [Bib]

    1999: 琵琶湖西岸活断層系北部.饗庭野断層の活動履歴 [Net] [Bib] [Doi]
    Paleoseismological Survey of the Aibano Fault, Northern Part of the Biwako Seigan Active Fault System, Kinki District [Net] [Bib] [Doi]

    2002: バッドランドを成す花崗岩露岩地域に出現した空洞分布調査 [Net] [Bib]
    The survey of the cave distribution at granite distributed badland area [Net] [Bib]

    2003: 垂直変位に伴う破砕幅の累積性 [Net] [Bib]
    Accumulative widening of fracture zone due to multiple vertical displacement [Net] [Bib]

    2004: 破砕幅の度数分布より推定される第四紀地殻変動(T054 009) [Net] [Bib]
    Quaternary Tectonics deduced from Frequency Distribution of Fracture Width (T054 009) [Net] [Bib]

    2004: 破砕幅の規則性から検討したC級活断層問題(C057) [Net] [Bib]
    Solution of C class active fault problem by the rule of Fracture Width(C057) [Net] [Bib]

    2004: 第四紀は鮮新世の最終段階か−−600万年変動周期仮説−− [Net] [Bib]
    Quaternary in the Last Stage of Pliocene ? A hypothesis of 6million years cycle [Net] [Bib]

    2005: コアγ線・帯磁率測定によるすべり面検出 [Net] [Bib]

    2005: ボーリングコアのγ線強度・帯磁率測定によるすべり面検出 [Net] [Bib] [Doi]
    Estimation of slip surface by gamma ray and magnetic susceptibility measurements of boring core samples [Net] [Bib] [Doi]

    2005: 破断面(断層,地すべり面)にみられる帯磁率異方性とγ線強度異常 [Net] [Bib]
    Anisotropy of magnetic susceptibility and gamma ray anomaly in fault and slip surface [Net] [Bib]

    2005: 破砕幅から読み取る野島断層活動史−−自然ガンマ線検層の活用−−(O 202) [Net] [Bib] [Doi]
    The Nojima fault activity history to read in the fracture width The utilization of natural gamma ray logging (O 202) [Net] [Bib] [Doi]

    2005: 電磁波と磁性からみる地質の諸現象−−ボーリングコアの新たな見方−− [Net] [Bib]
    The phenomena with the geological feature to attend from the electromagnetic pulse and the magnetism The new viewpoint of the borehole core [Net] [Bib]

    2006: 京都西山断層帯円明寺断層の破砕幅から算出される断層長と垂直変位(S107 005) [Net] [Bib]
    The Fault Length and The Vertical Displacement is calcurated from The Fracture Width in Enmyoji Fault(S107 005) [Net] [Bib]

    2006: 物性計測(γ線,帯磁率)による断層調査−−破砕幅から算出される断層長と垂直変位量−− [Net] [Bib]
    The fault investigation by the physical properties measurement (the gamma ray, the susceptibility) The fault length and vertical displacement which is calculated from the fracture width [Net] [Bib]

    2006: 破砕幅の成長過程から推定される活断層の発生数と発生時期−−破砕幅の累積性とべき乗則−− [Net] [Bib] [Doi]
    The number of the appearance and occurring time on the active fault deduced from the growth process with fracture width The cumulation and power rule with fracture width [Net] [Bib] [Doi]

    2007: 破砕幅の関係式から検討したC級活断層問題 [Net] [Bib] [Doi]
    The C class active faults problems discussed from the relational expression of fracture width [Net] [Bib] [Doi]

    2008: 断層の発達過程(成熟度)と地震活動 内陸の大地震と小地震の違い (S142 P008) [Net] [Bib]
    Developing process of fault(maturity level) and seismic activity(S142 P008) [Net] [Bib]

    2009: γ線測定で検出した破砕幅による活断層評価 警固断層および宇美断層を事例として (S147 010) [Net] [Bib]
    The active fault estimation by fracture width detected by gamma ray survey(S147 010) [Net] [Bib]

    2009: マイロナイト中のシル分布から推定される下部地殻の変形帯(O 225)(演旨) [Net] [Bib] [Doi]
    Transformation zone of lower crust presumed from Sill distribution in mylonite (O 225) [Net] [Bib] [Doi]

    2010: 破砕幅を尺度とした活断層の活動度評価 [Net] [Bib] [Doi]
    Acitive level evaluation of active fault by fracture width Relational expression of fracture width and fault length [Net] [Bib] [Doi]

    2011: 断層における高帯磁率と低γ線の対応 [Net] [Bib]
    Correspondince between high magnetic susceptibility and low gamma ray in fault [Net] [Bib]

    2011: 磁性を考慮した放射能探査の原理1 [Net] [Bib]

    2012: γ線測定適用の再検討 [Net] [Bib]
    Reexamination of the application of gamma ray survey [Net] [Bib]

    2012: 断層数の関係式から予想される深層崩壊の場所(R18 O 4) [Net] [Bib] [Doi]
    Place of deep seated landslide expected by number of faults relation (R18 O 4) [Net] [Bib] [Doi]

    2012: 断層破砕帯における帯磁率異常に伴うγ線量の変化 [Net] [Bib] [Doi]
    Change of gamma ray dose with magnetic susceptibility anomaly in fracture zone [Net] [Bib] [Doi]

    2013: 小出(1955)の破砕帯と断層場(R20 O 9) [Net] [Bib] [Doi]
    Sheare zone after Koide (1955) and fault field (R20 O 9) [Net] [Bib] [Doi]

    2013: 目で捉えきれない断層・破砕帯・すべり面の識別方法 岩石の磁性を考慮した放射能探査法 [Net] [Bib]
    Distinguish method of fault, fracture zone, and slide surface that cannot be judged by eyes Application of gamma ray survey with evaluating rock magnetism [Net] [Bib]

    2013: 航空レーザ計測とγ線探査による活断層の検出と活動度評価 未知の活断層および短い活断層について [Net] [Bib]
    Geophysical Method for Detecting Active Faults and Evaluating their Activity by Airborne Lidar and Gamma ray Intensity Survey [Net] [Bib]

    2014: 1955年に出された断層・破砕帯の識別問題 未固化期変形帯の検出 [Net] [Bib] [Doi]
    Identigication problem with fault and fracture zone in 1955 Detection of deformation zone in unconsolidated period [Net] [Bib] [Doi]

    2014: γ線探査で検出される未固化期変形帯 [Net] [Bib]
    Gamma ray Survey for Detecting Deformation Zones in Unconsolidated Period [Net] [Bib]

    2017: 別府で震度6弱をもたらした由布院断層について(HCG37 P15) [Net] [Bib]
    Yufuin fault cause an earthquake with an intensity of lower 6 in Beppu (HCG37 P15) [Net] [Bib]

    2017: 断層分布と大規模崩壊の関連性 [Net] [Bib] [Doi]
    The Relationship between Distributions of Faults and Deep Seated Landslides [Net] [Bib] [Doi]

    2018: 「活断層」再考 [Net] [Bib]

    2018: 地質断層のべき乗則から検討した「未知の活断層」と「C級活断層問題」 [Net] [Bib]
    Unknown active fault and C class active fault problems discussed from power law of the geological fault [Net] [Bib]

    2018: 形体で識別困難なすべり面・変質帯・破砕帯を判別するコアγ線測定の活用 [Net] [Bib]

    2018: 断層規模の関係式から導かれる断層形成史 [Net] [Bib] [Doi]
    History of fault formation derived from fault scale relational expression [Net] [Bib] [Doi]

    2018: 断裂による分断に起因する斜面崩壊発生機構 [Net] [Bib] [Doi]
    Slope Failure Mechanism Result from Dividing into Parts By Fracture [Net] [Bib] [Doi]

    2019: γ線で視る活断層の実体 [Net] [Bib]
    Substance of active fault look by gamma ray [Net] [Bib]

    2020: 3次元地盤モデル作成に必要な基礎地盤の不連続性の認識(DS 8 01) [Net] [Bib]
    Discontinuous Recognition of Foundation Subgrade Necessary for Three Dimension Ground Model Making (DS 8 01) [Net] [Bib]

    2020: γ線探査で調べる地震断層 [Net] [Bib] [Doi]
    Earthquake faults determined by gamma ray survey [Net] [Bib] [Doi]

    2020: 崩壊の最前線としての遷急線について [Net] [Bib]

    2020: 断裂起因の崩壊モデルによる崩壊場所の予測 [Net] [Bib]
    Prediction of collapse location by collapse model resulting from fracture [Net] [Bib]

    2020: 第四紀火山岩分布域で検出される小規模断裂について [Net] [Bib]
    Small scale fracture determined in the quaternary volcano rock distribution region [Net] [Bib]

    2021: 使えない地質断面図-ボーリング調査の限界- [Net] [Bib]
    Sporting Geological Survey Method for Detecting Fracture Zones [Net] [Bib]

    2021: 崩壊形態を規制する断裂構造 [Net] [Bib] [Doi]
    Fracture structure regulate collapse form [Net] [Bib] [Doi]

    2022: 断裂群の違いに留意した斜面崩壊危険度評価 [Net] [Bib]

    2022: 豪雨時斜面崩壊の要因となる断裂帯の位置推定法に関する検討 [Net] [Bib]
    Investigation of methods for estimation of location of crush zone causing heavy rain induced slope failure [Net] [Bib]

    2022: 風化・崩壊様式を規制する断裂構造 [Net] [Bib]
    Fracture Structures that Regulate Weathering and Collapse [Net] [Bib]

    2023: 断裂交差場のパイプ流閉塞で発生する有圧水に起因する斜面崩壊発生機構 [Net] [Bib]
    Mechanism of slope failure caused by pressurized water generated by pipe flow blockage at fracture crossing [Net] [Bib]

    2023: 第四紀層を切る割れ目の検出,考え方 [Net] [Bib]
    Detection of fractures cutting Quaternary layers, concept [Net] [Bib]

    2023: 豪雨による谷埋め盛土の崩落メカニズム [Net] [Bib] [Doi]
    Mechanism of collapse of valley fill due to heavy rainfall [Net] [Bib] [Doi]

    2024: 地震に起因する地震災害発生機構-令和6年能登半島地震の事象から- [Net] [Bib]
    Mechanisms of Earthquake Induced Seismic Hazards The Noto Peninsula Earthquake of 2024 [Net] [Bib]

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