Updated on 2024/07/28

Information

 

写真a

 
MIZUNO HIDEAKI
 
Organization
Faculty of Agriculture Department of Agro-environmental Sciences Associate Professor
School of Agriculture Department of Bioresource and Bioenvironment(Concurrent)
Graduate School of Bioresource and Bioenvironmental Sciences Department of Agro-environmental Sciences(Concurrent)
Title
Associate Professor
Tel
0928024644
Profile
Research fields are to clear the physical process of sediment movement in mountainous area, to develop efficient structural measures against sediment-related disasters, and to develop an integrated sediment management system in the river basin and coastal area. Member of the Japan Society of Erosion Control Engineering, the Japan Society for Simulation Technology, and the Japan Society of Mechanical Engineers. Emergency Technical Adviser for the natural disasters – TEC-DOCTOR – of the Kyushu Regional Office, Ministry of Land, Infrastructure, Transport and Tourism. Member of the River and Sabo Recovery Work Technical Committee, and the committee for Evaluating Master Plan for Preventing Sediment-related Disasters in the Aso mountains area in Kumamoto Prefecture.
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Degree

  • Dr. Agr

Research History

  • 建設省九州地方建設局 国土交通省国土技術政策総合研究所 国立研究開発法人土木研究所   

    建設省九州地方建設局 国土交通省国土技術政策総合研究所 国立研究開発法人土木研究所

  • 国立大学法人筑波大学生命環境系 准教授(2012.04-2015.03)   

Research Interests・Research Keywords

  • Research theme: Study on effective drainage systems of forest roads

    Keyword: Forest roads, Drainage system, Conduit, Sedimentation

    Research period: 2018.4 - 2023.3

  • Research theme: Study on estimating of mudflow spreading

    Keyword: Numerical Simulation, Mudflow, Hazard mapping

    Research period: 2018.4 - 2021.3

  • Research theme: Clarify the sediment-related distasters triggered by the 2017 Northern Kyushu Severe Rainfall event

    Keyword: Sedimen-related disasters, 2017 Northern Kyushu Severe Rainfall event, Landslides, Debris flow, Drift woods

    Research period: 2017.8 - 2022.3

  • Research theme: Study on Sediment movement in mountainous area, river basin and coastal area

    Keyword: Sediment movement, mountainous area, reservoir, river system, coastal area

    Research period: 2001.4 - 2017.3

Papers

  • 粘性の高い液体を用いたダムブレーク現象の2次元数値計算による再現と精度評価 Reviewed

    @水野秀明,#和田眞典,#土谷麻菜,#江藤稚佳子

    砂防学会誌   74 ( 2 )   24 - 30   2021.7

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    The purposes of this study are to develop a numerical model of shallow water equations with Bingham shear stress model, to evaluate the accuracy by reproducing dam break phenomena with different viscous liquids, and to clarify the differences between flow profiles computed by the numerical model with Bingham model and flow profiles computed by the numerical model with Manning model. By conducting flume experiments, we obtained the time changes of flow profiles with water and two type of viscous liquids. We reproduced the time changes of experimental flow profiles by computing with both the numerical model with Bingham model and the numerical model with Manning model. The results said that the numerical model with Bingham model could reproduce the experimental flow profiles including both rarefaction waves and shock waves. And the numerical model with Bingham model could reproduce more accurately than the numerical model with Manning model.

  • The July 2020 Rainfall-Induced Sediment Disasters in Kumamoto Prefecture, Japan Reviewed International journal

    Takashi JITOUSONO, Mari IGURA, Hirotaka UE, Hiroyuki OHISHI, Tsuyoshi KAKIMOTO, Ken-ichi KITOU, Syozo KOGA, Yusuke SAKAI, Toshihiko SAKASHIMA, Yoshinori SHINOHARA, Osamu SHIMIZU, Satoshi TAGATA, Yukiyoshi TERAMOTO, Eiji TORITA, Naomasa NAGATANI, Koji NAKANO, Ayato NISHIWAKI, Yasuyuki HIRAKAWA, Kozaburou FUKUZUKA, @Hideaki MIZUNO

    International Journal of Erosion Control Engineering   14 ( 4 )   93 - 100   2021.4

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    On July 4, 2020, heavy rainfall was observed in the southern part of Kumamoto Prefecture and the northern part of Kagoshima Prefecture. Due to heavy rainfall, floods and sediment disasters such as collapses and debris flows occurred predominantly in the Kuma River basin of Kumamoto Prefecture. We conducted field investigations at four sites in Ashikita Town and Tsunagi Town, Kumamoto Prefecture, where collapses and debris flows caused deaths. We also conducted field investigations in the Kawauchi River branch of the Kuma River, where vast amounts of sediment discharge caused damage to houses. The objectives of these investigations were to clarify the situation and mechanism of the disasters and to propose procedures to recover from the disasters. This report briefly summarizes the results of these investigations.

    DOI: https://doi.org/10.13101/ijece.13.93

  • 暗渠内における流れと流砂の停止過程 Reviewed

    #江藤稚佳子,#原教介,@水野秀明

    砂防学会誌   73 ( 5 )   38 - 43   2021.1

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    Process and mechanism of sedimentation in a conduit

  • 平成29年7月九州北部豪雨における土砂移動現象の時空間分布の推定と避難実態 Reviewed

    @厚井 高志,@長井 義樹,@菊井 稔宏,@小林 拓也,@大野 宏之,@城ケ崎 正人,@野呂 智之,#水野 秀明,@田中 淳

    砂防学会誌   73 ( 3 )   54 - 59   2020.9

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  • 2023年7月の大雨により福岡県久留米市と佐賀県唐津市で発生した土砂災害 Reviewed

    清水収,地頭薗隆,@執印康裕,@水野秀明,秋田寛己,天野祐一朗,植弘隆,大石博之,岡野和行,小野貴稔,影山大輔,加藤卓也,菊池英明,木藤賢一,木原早紀,佐藤厚慈,篠原慶規,田方智,竹林洋史,千葉幹,鳥田英司,中濃耕司,西脇彩人,平川泰之,福池孝記,福塚康三郎,本田健,本多泰章,光永海斗,山越隆雄,矢渡岳,吉永子規,吉野孝彦

    砂防学会誌   76 ( 4 )   33 - 43   2023.11

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  • 令和2年7月豪雨による熊本県の土砂災害 Reviewed

    地頭薗隆,伊倉万理,植弘隆,大石博之,垣本毅,木藤賢一,古賀省三,坂井佑介,坂島俊彦,篠原慶規,清水収,田方智,寺本行芳,鳥田英司,永谷直昌,中濃耕司,西脇彩人,平川泰之,福塚康三郎,@水野秀明

    砂防学会誌   73 ( 4 )   41 - 50   2020.11

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  • 平成29年7月九州北部豪雨における土砂移動と降雨の関係 Reviewed

    #江藤稚佳子,@水野秀明,@久保田哲也

    九州森林研究   72   47 - 50   2019.3

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  • 土壌硬度が根量や法面の表面侵食量に与える影響 Reviewed

    #木原早紀,@久保田哲也,@水野秀明

    九州森林研究   72   25 - 28   2019.3

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  • 画像のRGB空間における濁水の立体分布と3次元ベクトル空間モデルを用いた流況変化検知手法の基礎的検討 Reviewed

    @五十嵐和秀,@水谷佑,@木下篤彦,@井深真治,@肥後明豪,@池島剛,@秋田寛己,@水野秀明

    砂防学会誌   71 ( 6 )   28 - 34   2019.3

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  • Distribution of landslides caused by heavy rainfall events and an earthquake in northern Aso Volcano, Japan from 1955 to 2016 Reviewed

    Atsuhisa Yano, Yoshinori Shinohara, Haruka Tsunetaka, Hideaki Mizuno, Tetsuya Kubota

    Geomorphology   327   533 - 541   2019.2

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    A new landslide cannot form until the soil has recovered to the critical depth for the recurrence of a landslide through the weathering of bedrock and soil transportation from adjacent areas. In volcanic areas with tephra deposits, landslides expose tephra and not bedrock. Therefore, the immunity of landslides in volcanic areas may be different from that of landslides in non-volcanic areas. Herein, we developed landslide inventory maps (LIMs) for 6 periods during 1955–2016 using aerial photographs and digital elevation models in northern Aso Volcano. In this area, landslides were found to continuously occur due to rainfall events and a large earthquake. Using the 6 LIMs, we examined the terrain attributes (i.e., slope angle, slope aspect, and normalized distance to ridge) and the overlap of landslides. Among the terrain attributes, slope angle was a dominant factor affecting the occurrence of landslides caused by both rainfall events and an earthquake. The total landslide areal density in 2016 was 50% for a slope angle of 35%–45%. 2 atypical events (a rainfall in July 2012 and an earthquake in April 2016) caused landslides to occur on slopes that were relatively resistant to landslides by typical amounts of rainfall, resulting in high landslide density in 2016. The intensity of rainfall for an event in July 2012 was considerably higher than that for other rainfall events. The type of landslides caused by an earthquake in April 2016 was different from that of landslides caused by rainfall. The depths of some landslides caused by this earthquake were deeper than those of landslides caused by the rainfall in July 2012. The overlap ratio was <2.3% for all combinations of the 6 LIMs. The small overlap ratio in the study area suggests that the immunity of landslides continued during the 60-year period we examined. Further research clarifying the process leading to subsequent landslides would be useful to better understand the immunity of landslide and the associated landslide susceptibility in volcanic areas.

    DOI: 10.1016/j.geomorph.2018.11.024

  • Optimization of causative factors using logistic regression and artificial neural network models for landslide susceptibility assessment in Ujung Loe Watershed, South Sulawesi Indonesia Reviewed

    Andang Suryana Soma, Tetsuya Kubota, Hideaki Mizuno

    Journal of Mountain Science   16 ( 2 )   383 - 401   2019.2

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    Landslide susceptibility maps (LSMs) play a vital role in assisting land use planning and risk mitigation. This study aims to optimize causative factors using logistic regression (LR) and an artificial neural network (ANN) to produce a LSM. The LSM is produced with 11 causative factors and then optimized using forward-stepwise LR (FSLR), ANN, and their combination (FSLR-ANN) until eight causative factors were found for each method. The ANN method produced superior validation results compared with LR. The ROC values for the training data set ranges between 0.8 and 0.9. On the other hand, validation with the percentage of landslide fall into LSM class high and very high, ANN method was higher (92.59%) than LR (82.12%). FSLR-ANN with nine causative factors gave the best validation results with respect to area under curve (AUC) values, and validation with the percentage of landslide fall into LSM class high and very high. In conclusion, ANN was found to be better than LR when producing LSMs. The best Optimization was combination of FSLR -ANN with nine causative factors and AUC success rate 0.847, predictive rate 0.844 and validation with landslide fall into high and very high class with 91.30%. It is an encouraging preliminary model towards a systematic introduction of FSLR-ANN model for optimization causative factors in landslide susceptibility assessment in the mountainous area of Ujung Loe Watershed.

    DOI: 10.1007/s11629-018-4884-7

  • 2018年4月11日大分県中津市耶馬渓町で発生した斜面崩壊 Reviewed

    Hideaki Mizuno, Takashi JITOUSONO, Tetsuya Kubota, Yoshiki NAGAI, Osamu Shimizu, Yasuhiro NOMURA, Yamato SUZUKI, Takao YAMAKOSHI, Takashi KOI, Hiroyuki OHISHI, Yasuhiro HIRAKAWA

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   71 ( 2 )   34 - 41   2018.7

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  • The overview of the Yabakei landslide occurred on April 11th 2018 in Nakatsu city, Oita prefecture, Japan Reviewed

    Hideaki Mizuno, Tetsuya Kubota, Takashi JITOUSONO, Yoshiaki NAGAI, Osamu Shimizu, Yasuhiro NOMURA, Yamato SUZUKI, Takao YAMAKOSHI, Takashi KOI, Hiroyuki OHISHI, Yasuyuki HIRAKAWA

    International Journal of Erosion Control Engineering   11 ( 2 )   36 - 37   2018

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    DOI: 10.13101/ijece.11.36

  • 2017年7月の九州北部豪雨による土砂災害 Sediment-related Disasters by a heavy Rainfall in the northern Part of Kyushu-Island, Japan in July 2017 Reviewed

    Hideaki Mizuno, Tomonori MARUTAN, Masahiro KAIBORI, Takashi JITOUSONO, Hiroyuki OHNO, Osamu SHIMIZU, Tetsuya Kubota, Hirotaka UE, Akito KANAZAWA, Takanori KAWANO, Syozo KOGA, Hiroki KOBAYASHI, Takuya KOBAYASHI, Toshihiko SAKASHIMA, Yukihiko SAKATANI, Wataru SAGARA, Yoshinori SHINOHARA, Yamato SUZUKI, Masayuki TAKAGI, Eiji SHIMADA, Koji NAKANO, Yasunori FUJISAWA, Kazuya YAMAGUCHI, Yuchi YAMADA

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   70 ( 4 )   31 - 42   2017.11

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    An extremely heavy rainfall was observed in the northern part of Kyushu, Japan in July 2017. For example, the highest daily rainfall was 803 mm on July 5, 2017 at Kurokawa, Asakura-City of Fukuoka Prefecture. The heavy rainfall caused many slope failures, debris-flows, sediment-flows and floods, which killed 37 people at the current stage. Phenomena such as surface slope failures and sediment-flows were concentrated around the eastern part of Asakura-City. They flowed down as floods and damaged many residential areas. The bedrock where the phenomena occurred was not only weathered granite but also weathered schist included in Sangun metamorphic rocks. It is a very important feature that enormous driftwood has discharged by sediment-flows, floods and so on. Some large failures also occurred out of Asakura-City. In Hita-City of Oita Prefecture, a large failure with a width of ca.200 m, a length of ca.350 m and a depth of ca.15 m occurred and blockaded Ono-river. Because this disaster caused serious damage to surrounding areas, the comprehensive countermeasures such as construction of sabo-facilities and setting warning-evacuation system must be needed.

  • 災害対応に要する時間の推定モデル-複数のパスからなる災害対応への適用- Reviewed

    Hideaki Mizuno, Toshihiro TERUNUMA, Haruo NISHIMOTO

    自然災害科学   36 ( 2 )   167 - 178   2017.6

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  • 大規模土砂移動に伴う災害の特徴整理と影響範囲の予測及び対策に向けた課題 Reviewed

    Hideaki Mizuno, Fumitoshi IMAIZUMI, Daizo TSUTSUMI, Kana NAKATANI, Yutaka GONDA, Okihiro OHSAKA, Tajiro FUKUYAMA, Shunsuke MIYATA, Yoshinori SHINOHARA, Norio HARADA, Masaki MIZUNO

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   70 ( 1 )   20 - 30   2017.5

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  • 蒸発熱を考慮した火砕物による融雪量推定に関する研究 Reviewed

    泉山 寛明, 堤 大三, 野池 耕平, 藤村 直樹, Hideaki Mizuno

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   69 ( 4 )   10 - 15   2016.11

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    Study on the estimation of snowmelt due to pyroclastic material considering enthalpy of evaporation

  • 災害対応に要する時間の推定モデル Reviewed

    照沼 利浩, Hideaki Mizuno, 西本 晴男

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   69 ( 2 )   13 - 18   2016.7

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    Numerical model for estimating period of disaster response

  • 土石流災害とその対策 (特集 変貌する斜面災害と対策)

    Hideaki Mizuno

    基礎工 = The foundation engineering & equipment, monthly : 土木・建築基礎工事と機材の専門誌   44 ( 6 )   12 - 15   2016.6

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  • Reproduction of a Surge in a Reservoir by Using Finite Volume Method With Conservation Property Reviewed

    Hideaki Mizuno, Takashi Sekine, Chikako Eto, Kazumasa Kuramoto

    Transaction of the Japan Society for Simulation Technology   8 ( 1 )   13 - 20   2016

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      Recently the numerical simulation plays an important part in the emergency management for sediment-related disaster. Water and sediment go down streams that have conjunctions, curves, narrow and wide parts, so that the numerical simulation has to treat the complex geometry. Moreover, it is necessary for the numerical simulation to be applied for not only very fast flows such as debris flows and floods but also very slow flows such as still water. The numerical simulation needs to be based on unstructured mesh and to be improved in order to handle very slow flow such as still water. This study aims to develop a numerical model for still water and to verify the numerical model by reproducing the experimental results. In the developed numerical model, it is assumed that the averaged gradient of flow surface is equal to the resultant force of the hydrostatic force acting on the boundaries of element. It is found that the numerical simulation with the developed numerical model can reproduce the still water and the surges triggered by the flow going into the reservoir.

    DOI: 10.11308/tjsst.8.13

  • 深層崩壊の発生の可能性のある領域の抽出 (特集 深層崩壊に挑む)

    Hideaki Mizuno

    土木学会誌   100 ( 8 )   18 - 21   2015.8

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    Extraction Methods of Areas Tending to Cause Deep-seated landslides

  • 秋山怜子,藤村直樹,石塚忠範,内田太郎,桜井亘,酒井良,海原荘一,只熊典子: 天然ダムの水位予測に漏水量が与える影響 (砂防学会誌,Vol.67,No.4,p.31-37) Reviewed

    Hideaki Mizuno, 秋山 怜子

    砂防学会誌   67 ( 6 )   71 - 72   2015

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    DOI: 10.11475/sabo.67.6_71

  • 質疑応答 松本直樹,和田孝志,中谷加奈,里深好文,水山高久:粒径変化を考慮した土石流氾濫予測手法に関する研究(砂防学会誌,Vol.65,No.3,p.3-11) Reviewed

    Hideaki Mizuno, 松本 直樹

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   66 ( 6 )   74 - 77   2014.3

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  • 土砂の流れ 固体と液体の特徴を合わせ持つ土石流

    Hideaki Mizuno

    日本機械学會誌 = Journal of the Society of Mechanical Engineers   116 ( 1136 )   474 - 477   2013.7

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    Sediment Movement and Transportation

  • 山地河道における水の流れとマニングの粗度係数の実測 Reviewed

    Hideaki Mizuno, 浅野 友子

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   65 ( 5 )   56 - 57   2013.1

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    DOI: 10.11475/sabo.65.5_56

  • 非構造メッシュを用いた合流点及び湾曲部の流れに関する数値解析 Reviewed

    Hideaki Mizuno, 小山内 信智

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   64 ( 4 )   33 - 38   2011.11

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    Numerical simulation of varied flow at confluence and curved channel by using unstructured grids

    DOI: 10.11475/sabo.64.4_33

  • 2010年7月鹿児島県船石川土石流災害の流下実態 Reviewed

    Hideaki Mizuno, 小山内 信智

    Open Civil Engineering Journal   53 ( 7 )   24 - 27   2011.7

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    Investigation into characteristics of debris flows in Funaishi Torrent occurred in July 2010

  • これまでの日本とイタリアの砂防技術交流 (特集 海外技術協力)

    Hideaki Mizuno

    砂防と治水   43 ( 6 )   35 - 39   2011.2

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  • 第7回日伊土砂災害防止技術会議に参加して

    Hideaki Mizuno

    砂防と治水   43 ( 6 )   80 - 82,図巻頭1p   2011.2

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  • 河道閉塞 (天然ダム) の形成による土砂災害リスクの低減対策に関する研究 Reviewed

    Hideaki Mizuno, 小山内 信智

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   62 ( 6 )   24 - 29   2010.3

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    Study on structural measures for reducing disaster risk of natural lake formed by natural barrier

  • 2008年岩手・宮城内陸地震により生じた天然ダム危険度評価の考え方 (特集 2008年岩手・宮城内陸地震による土砂災害) Reviewed

    Hideaki Mizuno

    Open Civil Engineering Journal   52 ( 2 )   14 - 17   2010.2

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    Assessment of disaster risks emerged by sudden breaches of landslide dams formed by the 2008 Iwate-Miyagi Nairiku Earthquake

  • 音圧データを用いたハイドロフォンによる掃流砂量計測手法に関する基礎的研究 Reviewed

    鈴木 拓郎, Hideaki Mizuno, 小山内 信智, 平澤 良輔, 長谷川 祐治

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   62 ( 5 )   18 - 26   2010.1

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    Basic study on sediment rate measurement with a hydrophone on the basis of sound pressure data

    DOI: 10.11475/sabo.62.5_18

  • 河道閉塞(天然ダム)の形成による土砂災害リスクの低減対策に関する研究 Reviewed

    Hideaki Mizuno, 小山内 信智

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   62 ( 6 )   24 - 29   2010

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    Study on structural measures for reducing disaster risk of natural lake formed by natural barrier

    DOI: 10.11475/sabo.62.6_24

  • 宮崎県鰐塚山崩壊の流出土砂モニタリング (特集 水系一貫した土砂輸送に向けて) Reviewed

    Hideaki Mizuno, 稲村 貴志, 小山内 信智

    Open Civil Engineering Journal   50 ( 10 )   26 - 29   2008.10

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    Observation of sediment transport after large-scaled landslides at Mt. Wanitsukayama

  • 迫川で形成した河道閉塞(天然ダム)の決壊危険度評価と監視の概要 (特集 平成20年岩手・宮城内陸地震)

    Hideaki Mizuno, 山越 隆雄

    砂防と治水   41 ( 4 )   20 - 22   2008.10

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  • WMO/UNESCAP台風委員会2007バンコクワークショップとベトナム共和国における土砂災害早期警戒システムについて

    Hideaki Mizuno

    砂防と治水   40 ( 5 )   102 - 105   2007.12

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  • 「自然災害危機管理に関する日伊シンポジウム」の開催について

    Hideaki Mizuno

    砂防と治水   40 ( 5 )   106 - 108   2007.12

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  • 流砂系の総合的な土砂管理支援システムの開発 (特集 砂防・河川・海岸における土砂管理の取り組み) Reviewed

    Hideaki Mizuno, 小山内 信智, 清水 武志

    Open Civil Engineering Journal   49 ( 7 )   26 - 31   2007.7

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    Development of support system for establishment of comprehensive sediment management plan

  • 天然ダムの決壊とその対策--市ノ瀬地区水理模型実験を対象として

    浅井 誠二, 小山内 信智, Hideaki Mizuno

    建設技術研究所所報   2007 ( 12 )   29 - 35   2007

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  • 2006年7月豪雨による土砂災害 長野県岡谷市で発生した土石流災害 Reviewed

    平松 晋也, Hideaki Mizuno, 池田 暁彦, 加藤 誠章

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   59 ( 3 )   51 - 56   2006.9

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  • 緊急時における土砂災害リスク監視のための一手法 (特集:自然災害リスクの評価と軽減) Reviewed

    Hideaki Mizuno, 小山内 信智, 林 真一郎

    Open Civil Engineering Journal   48 ( 8 )   24 - 29   2006.8

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  • インタープリベント・2006サミットに参加して

    西本 晴男, Hideaki Mizuno, 嶋 丈示

    砂防と治水   39 ( 2 )   61 - 63,図巻頭1p   2006.6

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  • 南西諸島における赤土砂生産域の流砂系 Reviewed

    南 哲行, Hideaki Mizuno, 与那覇 忍

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   58 ( 5 )   35 - 39   2006.1

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  • 2006年7月豪雨による土砂災害:長野県岡谷市で発生した土石流災害 Reviewed

    平松 晋也, Hideaki Mizuno, 池田 暁彦, 加藤 誠章

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   59 ( 3 )   51 - 56_2   2006

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    DOI: 10.11475/sabo1973.59.3_51

  • 10. 荒廃した人工林流域における浮遊土砂の採取と放射性核種を指標とした浮遊土砂生産源の推定(2005年度春季研究発表会)

    恩田 裕一, 古賀 聡子, 福山 泰治郎, 平松 晋也, 長嶺 真理子, Hideaki Mizuno, 原槇 利幸, ONDA Yuichi, KOGA Satoko, FUKUYAMA Taijiro, HIRAMATSU Shinya, NAGAMINE Mariko, MIZUNO Hideaki, HARAMAKI Toshiyuki

    Chikei   26 ( 3 )   302   2005.7

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    10. Collection of suspended sediment in mountainous watershed covered by devastated forest plantations and estimation of the suspended sediment sources using environmental isotopes(Abstracts of Papers Presented at the Spring Meeting of the Union, May 2005)

  • 姫川流砂系 Reviewed

    Hideaki Mizuno, 今井 一之, 長谷川 賢市

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   58 ( 2 )   51 - 57   2005.7

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  • S字型湾曲部の流下痕跡から土石流の流速を推定する方法に関する実験的研究 Reviewed

    Hideaki Mizuno

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   57 ( 4 )   56 - 59   2004.11

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    Experimental study on a estimating method for velocity of debris flow in bending curves

  • 日本国とイタリア共和国との砂防研究協力の現状 Reviewed

    Hideaki Mizuno

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   57 ( 4 )   74 - 77   2004.11

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  • 平成16年7, 8月新潟, 福井および徳島における土砂災害(速報) Reviewed

    野呂 智之, Hideaki Mizuno, 内田 太郎, 山越 隆雄, 西本 晴男, 藤澤 和範, 田中 秀基, 秋山 一弥, 小嶋 伸一

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   57 ( 3 )   47 - 52   2004.9

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    Sediment related disasters caused by heavy rainfalls in Niigata, Fukui and Tokushima in July and August 2004 (prompt report)

  • ニュースと話題 第4回日伊土砂災害防止技術会議の開催と日伊共同研究所設立に関する取極めの調印について

    Hideaki Mizuno

    河川   60 ( 7 )   65 - 67   2004.7

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  • 第4回日伊土砂災害防止技術会議の開催と日伊共同研究所設立に関する取極めの調印について

    Hideaki Mizuno

    砂防と治水   37 ( 2 )   44 - 47   2004.6

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  • 流砂系における土砂移動実態に関する研究 (特集:国土交通省国土技術研究会) Reviewed

    Hideaki Mizuno

    Open Civil Engineering Journal   46 ( 3 )   14 - 17   2004.3

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  • 流砂系を一貫して扱う地形変化推定モデルの開発と安倍川流砂系への適用 (特集 土砂災害) Reviewed

    福嶋 彩, Hideaki Mizuno, 寺田 秀樹

    Open Civil Engineering Journal   46 ( 2 )   50 - 53   2004.2

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  • 平成16年7, 8月新潟, 福井および徳島における土砂災害 (速報) Reviewed

    野呂 智之, Hideaki Mizuno, 内田 太郎, 山越 隆雄, 西本 晴男, 藤澤 和範, 田中 秀基, 秋山 一弥, 小嶋 伸一

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   57 ( 3 )   47 - 52_1   2004

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    Heavy rainfalls occurred in Niigata and Fukushima Prefectures during July 12-13, 2004 (Total rainfall at Tochio City, Niigata was greater than 420mm) and in Fukui Prefecture during July 17-18 2004 (Total rainfall at Miyama Town in Fukui was greater than 280mm). Also, Typhoon Namtheun brought heavy rainfalls to the Kinki and Shikoku regions between July 30 and August 1, 2004. Total rainfall in the upper reaches of the Nakagawa River exceeded 1, 000mm. These rainfalls triggered a number of sediment related disasters. The NILIM and PWRI investigated these sediment related disasters shortly after they occurred. Here we report on (1) characteristics of sediment related disasters in Fukui and Tokushima, (2) spatial distributions of sediment related disasters and their relation to rainfall amount variability in Niigata and Fukui, and (3) effectiveness of sabo dams against debris flows.

    DOI: 10.11475/sabo1973.57.3_47

  • 土石流による家屋被災範囲の推定手法 (特集 災害の軽減をめざして) Reviewed

    Hideaki Mizuno, 寺田 秀樹

    Open Civil Engineering Journal   45 ( 12 )   46 - 51   2003.12

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  • 2003年7月の梅雨前線豪雨によって発生した九州地方の土石流災害(速報) Reviewed

    Hideaki Mizuno, 杉浦 信男, 寺田 秀樹, 内田 太郎, 原槇 利幸, 曽我部 匡敏, 桜井 亘, 西本 晴男, 小山内 信智, 武澤 永純, 土井 康弘

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   56 ( 3 )   36 - 43   2003.9

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    The debris flow disasters caused by localized rainfall of seasonal rain front in Kyushu region in July, 2003 (prompt report)

    DOI: 10.11475/sabo1973.56.3_36

  • 流砂系の土砂管理に向けた技術開発--透過型砂防えん堤による土砂移動の制御 (特集 総合土砂管理--安全から環境まで総合的な土砂管理の展開)

    Hideaki Mizuno, 寺田 秀樹, 原槇 利幸

    土木技術   58 ( 8 )   47 - 53,12   2003.8

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  • 土石流による家屋被災範囲の設定方法に関する研究

    寺田 秀樹, Hideaki Mizuno

    国土技術政策総合研究所資料   ( 70 )   1 - 146,巻頭1枚   2003.2

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  • 総合的な土砂管理に向けた土砂移動の観測 (特集1 自然災害に備える)

    Hideaki Mizuno

    国総研アニュアルレポート   ( 2 )   28 - 31   2003

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  • 1998年サルノ災害跡地における土石流対策 Reviewed

    Hideaki Mizuno, 中野 泰雄, 岩男 忠明

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   55 ( 4 )   29 - 32   2002.11

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    Measures for debris flow in the 1998's Sarno disaster area

    DOI: 10.11475/sabo1973.55.4_29

  • 連続するスリット砂防堰堤の土砂調節効果に与える降雨波形の影響 (土砂災害特集) Reviewed

    Hideaki Mizuno, 寺田 秀樹

    Open Civil Engineering Journal   44 ( 6 )   36 - 41   2002.6

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  • 流砂系における土砂移動実態に関する研究 (〔平成13年度〕国土交通省技術研究会報告特集) Reviewed

    寺田 秀樹, Hideaki Mizuno

    Open Civil Engineering Journal   44 ( 4 )   32 - 37   2002.4

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  • 透過型砂防堰堤を通過する泥流のハイドログラフ推定に関する研究 Reviewed

    Hideaki Mizuno, Vittorio Bovolin, 仲野 公章

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   54 ( 5 )   3 - 11   2002.1

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    Study on forecasting hydrograph of mudflow passing through a slit dam

  • 海外コーナー 「土石流対策工に関するフォーラム サルノ災害を事例として」に参加して

    Hideaki Mizuno

    砂防と治水   34 ( 5 )   80 - 82   2001.12

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  • 世界に誇る砂防技術 - 砂防堰堤 -

    Hideaki Mizuno

    土木学会誌   86 ( 7 )   62 - 64   2001.7

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  • 透過型砂防ダムによる泥流型土石流のピーク流量減少効果に関する研究 Reviewed

    Hideaki Mizuno, ボボリン ヴィットリオ, 南 哲行

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   53 ( 6 )   45 - 54   2001.3

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    Study on effectiveness of reducing peak discharge of muddy debris flow with open type dams

    DOI: 10.11475/sabo1973.53.6_45

  • DEMを用いた土石流シミュレーションの開発

    杉山 実, 倉岡 千郎, 高橋 秀, 南 哲行, Hideaki Mizuno

    こうえいフォーラム = Nippon Koei technical forum : 日本工営技術情報   ( 9 )   1 - 5   2001

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    DEVELOPMENT OF DEBRIS FLOW SIMULATION WITH DEM METHOD

  • イタリア共和国における土砂災害対策に関する法律と行政組織 Reviewed

    Hideaki Mizuno

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   53 ( 4 )   58 - 61   2000.11

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    Laws and administrative organizations for preventing sediment-related disasters in Italy

    DOI: 10.11475/sabo1973.53.4_58

  • 連続して配置した鋼管製透過型ダムによる土石流の捕捉効果に関する実験的研究 Reviewed

    Hideaki Mizuno, 南 哲行, 水山 高久

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   53 ( 1 )   19 - 25   2000.5

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    Experimental Study on Controlling Debris Flow by a Consecutive Series of Open Type Steel Dams

  • 個別要素法を用いた鋼管製透過型砂防ダムの土石流捕捉効果に関するシミュレーション解析 Reviewed

    Hideaki Mizuno, 水山 高久, 南 哲行, 倉岡 千郎

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   52 ( 6 )   4 - 11   2000.3

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    Analysis of Simulating Debris Flow Captured by Permeable Type Dam using Distinct Element Method

  • 山地流域における土砂移動の実態--粒径別土砂収支の作成 (水系の土砂管理特集) Reviewed

    Hideaki Mizuno, 南 哲行

    Open Civil Engineering Journal   41 ( 7 )   48 - 53   1999.7

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  • 平成4年から平成9年にかけて発生した土石流災害の特徴 (特集 土砂災害を防ぐ) Reviewed

    Hideaki Mizuno, 南 哲行

    Open Civil Engineering Journal   41 ( 6 )   30 - 35   1999.6

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  • 総合的な土石流検知手法の構築 Reviewed

    山田 孝, 南 哲行, Hideaki Mizuno

    Open Civil Engineering Journal   41 ( 6 )   20 - 23   1999.6

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  • 地すべりや深層崩壊に起因した土石流の実態 (土砂災害対策特集) Reviewed

    山田 孝, 南 哲行, Hideaki Mizuno

    Open Civil Engineering Journal   40 ( 6 )   38 - 43   1998.6

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  • 1997年7月10日に鹿児島県針原川で深層崩壊に起因して発生した土石流の流下・堆積実態 Reviewed

    山田 孝, 南 哲行, 小山内 信智, Hideaki Mizuno

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   51 ( 1 )   46 - 54   1998.5

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    Actual State fo Debris Flows Induced by Deep-seated Slope Failure on July 10, 1997 at the Harihara River Basin, Kagoshima Prefecture, Japan

  • 土石流災害防止のためのセンサー関発の現状と今後の課題 Reviewed

    山田 孝, 南 哲行, Hideaki Mizuno

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   50 ( 5 )   60 - 64   1998.1

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    Developing of Debris Flows Prediction and Deteetion Technology, Their Future Issues

  • 土石流災害防止のためのセンサー開発の現状と今後の課題 Reviewed

    山田 孝, 南 哲行, Hideaki Mizuno

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   50 ( 5 )   60 - 64   1998

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    DOI: 10.11475/sabo1973.50.5_60

  • 平成9年7月10日に鹿児島県出水市針原川で発生した土石流の土砂量と面積について(速報) Reviewed

    南 哲行, 山田 孝, Hideaki Mizuno, 古賀 省三

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   50 ( 3 )   81 - 82   1997.9

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  • 上部の格子間隔が狭い格子型ダムに関する研究 Reviewed

    Hideaki Mizuno, 水山 高久

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   49 ( 4 )   3 - 8   1996.11

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    Experimental Study of a Grid Dam with Narrow Pipe Interval of Upper Grids

  • 格子型ダムのピーク流砂量減少率に関する研究 Reviewed

    水山 高久, 小橋 澄治, Hideaki Mizuno

    新砂防 = Journal of the Japan Society of Erosion Control Engineering : 砂防学会誌   47 ( 5 )   8 - 13   1995.1

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    Control of Passing Sediment with Grid-type Dams

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Presentations

  • 二次元河床変動計算による砂防施設の施設効果評価と計算 方法の効率化に関する検討

    杉原成満, 村上智哉, 児玉祥樹, 秦雅之, @水野秀明

    砂防学会  2024.5 

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    Event date: 2024.5

    Language:Japanese  

    Venue:和歌山市   Country:Japan  

  • 寒水川におけるLPデータを用いた土砂移動実態の把握

    本間哲郎, 浦真, 小更亨, @水野秀明

    砂防学会  2024.5 

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    Event date: 2024.5

    Language:Japanese  

    Venue:和歌山市   Country:Japan  

  • 桜島における⼟⽯流の流出補正係数の推定

    #井関十也,#江藤稚佳子,@水野秀明

    砂防学会  2023.5 

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    Event date: 2023.5

    Language:Japanese  

    Venue:北海道大学   Country:Japan  

  • 深港川で発生した泥流型土石流のせき上げのメカニズムに関する考察

    #土谷麻菜,@水野秀明

    砂防学会  2022.5 

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    Event date: 2022.5

    Language:Japanese  

    Venue:宮崎市   Country:Japan  

  • 2016年から2020年までの5年間の桜島・有村川における土砂流出の経年変化

    #井関十也,@水野秀明

    砂防学会  2022.5 

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    Event date: 2022.5

    Language:Japanese  

    Venue:宮崎市   Country:Japan  

  • 朝倉市奈良ヶ谷川流域で流木流出率が高かった原因の分析

    #森晴香,@水野秀明,#江藤稚佳子

    砂防学会  2022.5 

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    Event date: 2022.5

    Language:Japanese  

    Venue:宮崎市   Country:Japan  

  • 満管と未満管が混在する流れの再現方法の検討

    #江藤稚佳子,#原教介,@水野秀明

    砂防学会  2022.5 

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    Event date: 2022.5

    Language:Japanese  

    Venue:宮崎市   Country:Japan  

  • 3次元数値解析による暗渠閉塞機構についての考察

    #原教介,#江藤稚佳子,@水野秀明

    砂防学会  2022.5 

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    Event date: 2022.5

    Language:Japanese  

    Venue:宮崎市   Country:Japan  

  • Characteristics of Debris Flow and Driftwoods Transport during the July 2017 Northern Kyushu Heavy Rainfall, Japan International conference

    #Chikako Eto,#Haruka Mori,@Hideaki Mizuno,@Tetsuya Kubota

    14th Congress INTERPRAEVENT 2021  2021.5 

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    Event date: 2021.5 - 2021.6

    Language:English  

    Venue:Online (Norway)   Country:Japan  

  • 高粘性の流れへの浅水流方程式の適用性

    @水野秀明,#松尾響子,#土谷麻菜,#江藤稚佳子

    砂防学会  2021.5 

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    Event date: 2021.5

    Language:Japanese  

    Venue:オンライン   Country:Japan  

  • 2017年大分県津久見市における土砂流出とそれに伴う暗渠の閉塞機構の考察

    #原教介,#江藤稚佳子,@水野秀明

    砂防学会  2021.6 

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    Event date: 2021.5

    Language:Japanese  

    Venue:オンライン   Country:Japan  

  • 奈良ヶ谷川流域での崩壊に起因した流木堆積地の特徴

    #森晴香,#江藤稚佳子,@水野秀明

    砂防学会  2021.5 

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    Event date: 2021.5

    Language:Japanese  

    Venue:オンライン   Country:Japan  

  • 浅水流方程式による暗渠内の流砂の停止過程の再現

    #江藤稚佳子,#原教介,@水野秀明

    砂防学会  2021.5 

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    Event date: 2021.5

    Language:Japanese  

    Venue:オンライン   Country:Japan  

  • 深港川で発生した泥流の跳水現象の数値計算による再現

    #土谷麻菜,@水野秀明

    砂防学会  2021.5 

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    Event date: 2021.5

    Language:Japanese  

    Venue:オンライン   Country:Japan  

  • 2017年九州北部豪雨に伴い発生した斜面崩壊の解析

    #武田剛,@水野秀明,@久保田哲也

    2019年度砂防学会研究発表会  2019.5 

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    Event date: 2019.5

    Language:Japanese   Presentation type:Oral presentation (general)  

    Country:Japan  

    平成29年7月九州北部豪雨い伴って発生した斜面崩壊を浸透解析及び斜面安定解析を用いて再現した。

  • 空中写真を活用した礫径調査手法の検討

    武澤永純,@水野秀明

    2019年度砂防学会研究発表会  2019.5 

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    Event date: 2019.5

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岩手県盛岡市   Country:Japan  

    山地流域の渓流に堆積した砂礫の粒径を空中写真より読み取る技術を開発した。

  • 暗渠内における流れと流砂の停止過程の再現

    #江藤稚佳子,@水野秀明,@久保田哲也

    2019年度砂防学会研究発表会  2019.5 

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    Event date: 2019.5

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岩手県盛岡市   Country:Japan  

    平成29年7月九州北部豪雨などの豪雨に伴って流れてきた流砂が、林道や道路の下に設置された暗渠を閉塞した事例を紹介するとともに、その現象を水路実験により再現した結果を報告した

  • 土石流に含まれる土砂の沈殿条件の解明

    #和田眞典,#久保田哲也,#水野秀明

    2019年度砂防学会研究発表会  2019.5 

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    Event date: 2019.5

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岩手県盛岡市   Country:Japan  

    鹿児島県垂水市の深港川流域で発生した泥流型土石流のレオロジー特性を実験により明らかにした。

  • 福岡県朝倉市奈良ヶ谷地区における流砂・流木による流路の閉塞の実態

    #塩崎将司,@水野秀明,@久保田哲也

    2019年度砂防学会研究発表会  2019.5 

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    Event date: 2019.5

    Language:Japanese   Presentation type:Oral presentation (general)  

    Country:Japan  

    平成29年7月九州北部豪雨に伴って、福岡県朝倉市奈良ケ谷川流域で生じた流木の移動実態を整理した。

  • 住民アンケート調査に基づく平成29年7月九州豪雨における土砂移動の時空間変化把握の試み

    厚井高志,長井義樹,菊井稔宏,小林拓也,大野宏之,城ケ崎正人,野呂智之,@水野秀明,田中淳

    2019年度砂防学会研究発表会  2019.5 

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    Event date: 2019.5

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岩手県盛岡市   Country:Japan  

    平成29年7月九州北部豪雨で災害を目撃した方にアンケート調査を実施し、赤谷川流域での土砂移動の実態を推測した。

  • 流木による橋梁の閉塞過程を再現する数理モデルの開発

    水野秀明

    日本シミュレーション学会合同研究会  2018.6 

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    Event date: 2018.6

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:早稲田大学西早稲田キャンパス55N号館   Country:Japan  

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Professional Memberships

  • Japan Society of Erosion Control Engineering

  • Japan Society for Simulation Technology

  • JAPAN SOCIETY OF MECHANICAL ENGINEERING

Committee Memberships

  • 砂防学会   Executive   Domestic

    2022.5 - 2025.5   

  • 砂防学会   九州支部副支部長   Domestic

    2020.6 - 2025.5   

  • 砂防学会   Executive   Domestic

    2020.6 - 2022.5   

  • 砂防学会   国際部会委員   Domestic

    2017.5 - 2021.5   

Academic Activities

  • Editorial member International contribution

    INTERPRAEVENT International Symposium 2018  ( Toyama, Japan Japan ) 2018.10

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    Type:Competition, symposium, etc. 

  • 座長

    平成30年度砂防学会研究発表会  ( Japan ) 2018.5

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    Type:Competition, symposium, etc. 

  • Screening of academic papers

    Role(s): Peer review

    2018

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    Type:Peer review 

    Proceedings of International Conference Number of peer-reviewed papers:2

Research Projects

  • 火山地域における効果的な除石計画策定手法の開発

    2024 - 2026

    河川砂防技術研究開発公募課題地域課題

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    Authorship:Principal investigator  Grant type:Contract research

  • 木村基金研究助成

    2023

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    Grant type:Donation

  • 木村基金研究助成

    2022

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    Grant type:Donation

  • 火山地域における土石流の流出補正係数の推定

    2021 - 2023

    国土交通省河川砂防技術研究開発公募(地域課題)

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    Authorship:Principal investigator  Grant type:Contract research

  • 木村基金研究助成

    2021

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    Grant type:Donation

  • 地震に起因して発生する斜面崩壊による土砂災害発生範囲を予測する数値計算プログラムの開発

    2020.11 - 2022.3

    Joint research

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    Authorship:Principal investigator  Grant type:Other funds from industry-academia collaboration

  • 土砂・洪水氾濫の予測のための数値計算プログラムの開発

    2020.6 - 2023.3

    Joint research

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    Authorship:Principal investigator  Grant type:Other funds from industry-academia collaboration

  • 山間地の谷間にある住宅地での土砂災害に対する最適な避難経路の設定の開発

    Grant number:20K05029  2020 - 2022

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

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    Authorship:Principal investigator  Grant type:Scientific research funding

  • 木村基金研究助成

    2020

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    Grant type:Donation

  • 気候変動影響を考慮した総合的流木災害リスク評価の展開

    Grant number:19H00812  2019 - 2022

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (A)

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    Authorship:Coinvestigator(s)  Grant type:Scientific research funding

  • 九州北部豪雨による流木被害の要因と影響:森林環境政策の合意形成に向けて

    Grant number:18H04152  2018 - 2021

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (A)

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    Authorship:Coinvestigator(s)  Grant type:Scientific research funding

  • 微地形が泥流型土石流の水面形の変化に及ぼす影響の解明

    2018 - 2020

    平成30年度 河川砂防技術研究開発公募

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    Authorship:Principal investigator  Grant type:Contract research

  • 大規模外力に対してレジリエントな砂防施設の設計手法の開発

    2017.4 - 2019.3

    国土交通省 

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    Authorship:Coinvestigator(s) 

    100年超過確率を超えるような大きな豪雨により発生する土砂移動現象(大規模な土石流・流木ならびに降雨および地震等に起因する深層崩壊による土砂移動(土石流・流木および崩壊土砂))が砂防施設に及ぼす大規模な外力を推定する手法を開発するとともに、数値シミュレーション等を用いて砂防施設等の破壊プロセスおよび破壊メカニズムを解明する。加えて、大規模な外力に耐えうるリダンダンシー(冗長性)が高く、ロバストネス(頑健性)が大きく、レ ジリエントな(粘り強い)材料、構造を持つ砂防施設の設計手法ならびに既設砂防施設の補強法を提案する。

  • 奨学寄附金

    2017

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    Grant type:Donation

  • 砂防に関する調査研究に係る助成金 平成29年7月九州北部豪雨に伴う土砂・流木移動実態の解明

    2017

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    Grant type:Donation

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Educational Activities

  • 科学英語、森林工学、森林砂防測量学、環境地学、森林機能制御学実習を担当。

Class subject

  • 環境地学

    2024.12 - 2025.2   Winter quarter

  • 地水環境論

    2024.12 - 2025.2   Winter quarter

  • 森林砂防測量学実習

    2024.10 - 2025.3   Second semester

  • 森林砂防測量学

    2024.10 - 2025.3   Second semester

  • 森林保全学

    2024.6 - 2024.8   Summer quarter

  • 環境地学

    2023.12 - 2024.2   Winter quarter

  • 森林砂防測量学実習

    2023.10 - 2024.3   Second semester

  • 森林砂防測量学Ⅰ

    2023.10 - 2024.3   Second semester

  • 森林保全学

    2023.6 - 2023.8   Summer quarter

  • 森林・林業の科学(国際コース)

    2023.4 - 2023.6   Spring quarter

  • 環境地学Ⅱ

    2022.12 - 2023.2   Winter quarter

  • 課題協学

    2022.10 - 2023.3   Second semester

  • 森林砂防測量学実習

    2022.10 - 2023.3   Second semester

  • 森林機能制御学演習

    2022.10 - 2023.3   Second semester

  • 森林調査実習Ⅰ

    2022.10 - 2023.3   Second semester

  • 環境地学Ⅰ

    2022.10 - 2022.12   Fall quarter

  • 科学英語

    2022.4 - 2022.9   First semester

  • 森林環境管理学

    2022.4 - 2022.6   Spring quarter

  • 森林保全学

    2022.4 - 2022.6   Spring quarter

  • 森林・林業の科学

    2022.4 - 2022.6   Spring quarter

  • 環境地学Ⅱ

    2021.12 - 2022.2   Winter quarter

  • 森林調査実習Ⅰ

    2021.10 - 2022.3   Second semester

  • 森林砂防測量学実習

    2021.10 - 2022.3   Second semester

  • 森林機能制御学演習

    2021.10 - 2022.3   Second semester

  • 森林砂防測量学

    2021.10 - 2022.3   Second semester

  • 環境地学Ⅰ

    2021.10 - 2021.12   Fall quarter

  • 山地防災学特論

    2021.10 - 2021.12   Fall quarter

  • 森林工学

    2021.4 - 2021.9   First semester

  • 森林環境管理学

    2021.4 - 2021.6   Spring quarter

  • Seminar in a Specified Field Ⅰ

    2021.4 - 2021.6   Spring quarter

  • Master's Thesis Research Ⅰ

    2021.4 - 2021.6   Spring quarter

  • 森林・林業の科学

    2021.4 - 2021.6   Spring quarter

  • 森林調査実習Ⅰ

    2020.10 - 2021.3   Second semester

  • 森林砂防測量学実習

    2020.10 - 2021.3   Second semester

  • 森林機能制御学演習

    2020.10 - 2021.3   Second semester

  • 森林砂防測量学

    2020.10 - 2021.3   Second semester

  • 環境地学

    2020.10 - 2021.3   Second semester

  • 山地防災学特論

    2020.10 - 2020.12   Fall quarter

  • 森林保全砂防学

    2020.4 - 2020.9   First semester

  • 森林工学

    2020.4 - 2020.9   First semester

  • 森林環境管理学

    2020.4 - 2020.6   Spring quarter

  • 森林・林業の科学

    2020.4 - 2020.6   Spring quarter

  • 環境地学

    2019.10 - 2020.3   Second semester

  • 森林工学

    2019.10 - 2020.3   Second semester

  • 森林砂防測量学実習

    2019.10 - 2020.3   Second semester

  • 森林機能制御学演習

    2019.10 - 2020.3   Second semester

  • 森林砂防測量学

    2019.10 - 2020.3   Second semester

  • 森林環境管理学

    2019.4 - 2019.6   Spring quarter

  • 森林・林業の科学

    2019.4 - 2019.6   Spring quarter

  • 森林・林業の科学

    2019.4 - 2019.6   Spring quarter

  • 環境地学

    2018.10 - 2019.3   Second semester

  • 森林工学

    2018.10 - 2019.3   Second semester

  • 森林砂防測量学実習

    2018.10 - 2019.3   Second semester

  • 森林機能制御学演習

    2018.10 - 2019.3   Second semester

  • 森林砂防測量学

    2018.10 - 2019.3   Second semester

  • 基幹教育セミナー

    2018.6 - 2018.8   Summer quarter

  • 森林環境管理学

    2018.4 - 2018.6   Spring quarter

  • 環境地学

    2017.10 - 2018.3   Second semester

  • 森林工学

    2017.10 - 2018.3   Second semester

  • 森林砂防測量学実習

    2017.10 - 2018.3   Second semester

  • 流域森林環境学

    2017.4 - 2017.9   First semester

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FD Participation

  • 2017.5   Role:Participation   Title:電子教材著作権講習会

    Organizer:University-wide

Visiting, concurrent, or part-time lecturers at other universities, institutions, etc.

  • 2022  国立大学法人京都大学農学部  Classification:Part-time lecturer  Domestic/International Classification:Japan 

    Semester, Day Time or Duration:春学期

  • 2020  京都大学農学部  Classification:Part-time lecturer  Domestic/International Classification:Japan 

    Semester, Day Time or Duration:令和2年7月16日から17日まで2日間

  • 2018  京都大学農学部  Classification:Part-time lecturer  Domestic/International Classification:Japan 

    Semester, Day Time or Duration:平成30年7月17日から18日まで

Outline of Social Contribution and International Cooperation activities

  • 九州地方整備局緊急災害対策派遣ドクター(TEC-DOCTOR)
    国土交通省九州地方整備局より委嘱。道路、河川のほか地すべり等砂防関係も含め迅速な復旧に向けた技術支援の要請に対し、機動的で迅速かつ的確な支援を目的としたもの。
    最近では、平成29年7月九州北部豪雨に伴って大分県日田市小野地区で発生した崩壊による河道閉塞の危険性を評価するために派遣された。令和5年豪雨に伴って発生した土砂災害(佐賀県唐津市)にTecDoctorとして派遣。

Social Activities

  • 平成29年度北海道演習林講演会 山地において自然災害が発生するメカニズムとその備え

    九州大学農学部演習林 北海道名寄町  北海道名寄町  2017.11

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    Audience:General, Scientific, Company, Civic organization, Governmental agency

    Type:Lecture

Media Coverage

  • 2017年12月27日に掲載された「安全再考 九州北部豪雨半年」において砂防堰堤による流木の捕捉効果について解説した。 Newspaper, magazine

    毎日新聞  2017.12

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    2017年12月27日に掲載された「安全再考 九州北部豪雨半年」において砂防堰堤による流木の捕捉効果について解説した。

Activities contributing to policy formation, academic promotion, etc.

  • 2021.4 - 2024.3   鹿児島県

    鹿児島県土砂災害警戒避難基準雨量検討委員会委員として、鹿児島県内の土砂災害警戒避難基準雨量の見直し作業に助言を行う。

  • 2020.4 - 2025.3   福岡県

    福岡県県土整備部所管の公共事業に関する事業再評価を行う。(公共事業再評価検討委員会委員)

  • 2019.4 - 2024.3   鹿児島県

    鹿児島県土砂災害アドバイザー会議委員として、鹿児島県内の土砂災害対策について学術的・技術的な助言を行う。

  • 2017.12 - 2018.3   国土交通省九州地方整備局

    平成28年熊本地震によって、多くの崩壊の発生した阿蘇山周辺における土砂災害対策の計画について、土砂災害の専門家の立場から助言した

  • 2017.9 - 2018.3   国土交通省九州地方整備局

    平成29年7月九州北部豪雨により甚大な被災を受けた筑後川中流域右支川を対象に、河川事業・砂防事業の連携した復旧計画の立案に際しての基本的な考え方を取りまとめた。

  • 2017.6 - 2024.3  

    国土交通省九州地方整備局管内およぼ九州内の地方自治体の管内において発生した土砂災害について、現場に赴いて2次的な土砂災害の可能性と応急復旧対策について助言を行う。

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Educational Activities for Highly-Specialized Professionals in Other Countries

  • 2021.6 - 2023.6   JICA研修「土砂災害リスク削減」

    Main countries of student/trainee affiliation:Brazil

    Other countries of student/trainee affiliation:フィリピン、スリランカ、チモール、ベトナム

  • 2017.11 - 2017.12   土砂災害防止マネージメント(豪雨、地震と火山噴火起因)

    Main countries of student/trainee affiliation:Brazil

    Other countries of student/trainee affiliation:Pakistan, Sri Lanka, Viet Nam