23.2.2.2.3 Flood Risk Analysis, Flood Hazard Assessment, Susceptibility

Chapter Contents (Back)
Flood Analysis. Flood Risk. Flood Susceptibility. General:
See also Flood Analysis, Flood Mapping, Flood Monitoring.
See also Floodplains, Riverside. Coast, tide specific:
See also Coastal, Tidal Flood Analysis, Storm Surge.

Corani, G., Guariso, G.,
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Schumann, G., Hostache, R., Puech, C., Hoffmann, L., Matgen, P., Pappenberger, F., Pfister, L.,
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Wang, C., Wan, T.R., Palmer, I.J.,
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Smith, A.[Alan], Newing, A.[Andy], Quinn, N.[Niall], Martin, D.[David], Cockings, S.[Samantha], Neal, J.[Jeffrey],
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Albano, R.[Raffaele], Mancusi, L.[Leonardo], Sole, A.[Aurelia], Adamowski, J.[Jan],
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Burke, J.J.[Jeri J.], Pricope, N.G.[Narcisa G.], Blum, J.[James],
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Kwak, Y.J.[Young-Joo],
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Rounce, D.R.[David R.], Watson, C.S.[C. Scott], McKinney, D.C.[Daene C.],
Identification of Hazard and Risk for Glacial Lakes in the Nepal Himalaya Using Satellite Imagery from 2000-2015,
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DOI Link 1708
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Sharma, S.K.[Sanjay Kumar], Kwak, Y.J.[Young-Joo], Kumar, R.[Rakesh], Sarma, B.[Bibhash],
Analysis of Hydrological Sensitivity for Flood Risk Assessment,
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DOI Link 1802
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Klonner, C.[Carolin], Usón, T.J.[Tomás J.], Marx, S.[Sabrina], Mocnik, F.B.[Franz-Benjamin], Höfle, B.[Bernhard],
Capturing Flood Risk Perception via Sketch Maps,
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Mashaly, J.[Jehan], Ghoneim, E.[Eman],
Flash Flood Hazard Using Optical, Radar, and Stereo-Pair Derived DEM: Eastern Desert, Egypt,
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Liu, C.C.[Cheng-Chien], Shieh, M.C.[Ming-Chang], Ke, M.S.[Ming-Syun], Wang, K.H.[Kung-Hwa],
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Ma, M.H.[Mei-Hong], Liu, C.J.[Chang-Jun], Zhao, G.[Gang], Xie, H.J.[Hong-Jie], Jia, P.F.[Peng-Fei], Wang, D.C.[Da-Cheng], Wang, H.[Huixiao], Hong, Y.[Yang],
Flash Flood Risk Analysis Based on Machine Learning Techniques in the Yunnan Province, China,
RS(11), No. 2, 2019, pp. xx-yy.
DOI Link 1902
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Wu, Y.X.[Yong-Xing], Peng, F.[Fei], Peng, Y.[Yang], Kong, X.Y.[Xiao-Yang], Liang, H.M.[He-Ming], Li, Q.[Qi],
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DOI Link 1912
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Lee, I.[Insu], Lee, J.[Junseok], Ham, S.[Sungil],
A Study on Storm and Flood Insurance Management Mapping: Case Study of Incheon Metropolitan City,
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Felice, P.D.[Paolino Di],
Ranking of Illegal Buildings Close to Rivers: A Proposal, Its Implementation and Preliminary Validation,
IJGI(8), No. 11, 2019, pp. xx-yy.
DOI Link 1912
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Shahabi, H.[Himan], Shirzadi, A.[Ataollah], Ghaderi, K.[Kayvan], Omidvar, E.[Ebrahim], Al-Ansari, N.[Nadhir], Clague, J.J.[John J.], Geertsema, M.[Marten], Khosravi, K.[Khabat], Amini, A.[Ata], Bahrami, S.[Sepideh], Rahmati, O.[Omid], Habibi, K.[Kyoumars], Mohammadi, A.[Ayub], Nguyen, H.[Hoang], Melesse, A.M.[Assefa M.], Ahmad, B.B.[Baharin Bin], Ahmad, A.[Anuar],
Flood Detection and Susceptibility Mapping Using Sentinel-1 Remote Sensing Data and a Machine Learning Approach: Hybrid Intelligence of Bagging Ensemble Based on K-Nearest Neighbor Classifier,
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DOI Link 2001
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Hu, S.[Shunshi], Qin, J.X.[Jian-Xin], Ren, J.[Jinchang], Zhao, H.[Huimin], Ren, J.[Jie], Hong, H.[Haoran],
Automatic Extraction of Water Inundation Areas Using Sentinel-1 Data for Large Plain Areas,
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DOI Link 2001
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Hadimlioglu, I.A.[I. Alihan], King, S.A.[Scott A.], Starek, M.J.[Michael J.],
FloodSim: Flood Simulation and Visualization Framework Using Position-Based Fluids,
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DOI Link 2004
BibRef

Shen, D.[Dingtao], Qian, T.[Tianlu], Xia, Y.[Yu], Zhang, Y.[Yu], Wang, J.C.[Jie-Chen],
Micro-scale Flood Hazard Assessment Based on Catastrophe Theory and an Integrated 2-D Hydraulic Model: A Case Study of Gongshuangcha Detention Basin in Dongting Lake Area, China,
IJGI(9), No. 4, 2020, pp. xx-yy.
DOI Link 2005
BibRef

Costache, R.[Romulus], Pham, Q.B.[Quoc Bao], Corodescu-Ro?ca, E.[Ema], Cîmpianu, C.[Catalin], Hong, H.Y.[Hao-Yuan], Linh, N.T.T.[Nguyen Thi Thuy], Fai, C.M.[Chow Ming], Ahmed, A.N.[Ali Najah], Vojtek, M.[Matej], Pandhiani, S.M.[Siraj Muhammed], Minea, G.[Gabriel], Ciobotaru, N.[Nicu], Popa, M.C.[Mihnea Cristian], Diaconu, D.C.[Daniel Constantin], Pham, B.T.[Binh Thai],
Using GIS, Remote Sensing, and Machine Learning to Highlight the Correlation between the Land-Use/Land-Cover Changes and Flash-Flood Potential,
RS(12), No. 9, 2020, pp. xx-yy.
DOI Link 2005
BibRef

Nguyen, V.N.[Viet-Nghia], Yariyan, P.[Peyman], Amiri, M.[Mahdis], Tran, A.D.[An Dang], Pham, T.D.[Tien Dat], Do, M.P.[Minh Phuong], Ngo, P.T.T.[Phuong Thao Thi], Nhu, V.H.[Viet-Ha], Long, N.Q.[Nguyen Quoc], Bui, D.T.[Dieu Tien],
A New Modeling Approach for Spatial Prediction of Flash Flood with Biogeography Optimized CHAID Tree Ensemble and Remote Sensing Data,
RS(12), No. 9, 2020, pp. xx-yy.
DOI Link 2005
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Goldberg, M.D.[Mitchell D.], Li, S.[Sanmei], Lindsey, D.T.[Daniel T.], Sjoberg, W.[William], Zhou, L.H.[Li-Hang], Sun, D.L.[Dong-Lian],
Mapping, Monitoring, and Prediction of Floods Due to Ice Jam and Snowmelt with Operational Weather Satellites,
RS(12), No. 11, 2020, pp. xx-yy.
DOI Link 2006
BibRef

Shen, J.[Jie], Zhou, J.Y.[Jing-Yi], Zhou, J.[Jiemin], Herman, L.[Lukas], Reznik, T.[Tomas],
Constructing the CityGML ADE for the Multi-Source Data Integration of Urban Flooding,
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DOI Link 2006
BibRef

Ma, M.[Meihong], Wang, H.[Huixiao], Jia, P.F.[Peng-Fei], Tang, G.[Guoqiang], Wang, D.C.[Da-Cheng], Ma, Z.Q.[Zi-Qiang], Yan, H.[Haiming],
Application of the GPM-IMERG Products in Flash Flood Warning: A Case Study in Yunnan, China,
RS(12), No. 12, 2020, pp. xx-yy.
DOI Link 2006
BibRef

Li, L.[Linyi], Chen, Y.[Yun], Xu, T.B.[Ting-Bao], Meng, L.[Lingkui], Huang, C.[Chang], Shi, K.[Kaifang],
Spatial Attraction Models Coupled with Elman Neural Networks for Enhancing Sub-Pixel Urban Inundation Mapping,
RS(12), No. 13, 2020, pp. xx-yy.
DOI Link 2007
BibRef

Muhadi, N.A.[Nur Atirah], Abdullah, A.F.[Ahmad Fikri], Bejo, S.K.[Siti Khairunniza], Mahadi, M.R.[Muhammad Razif], Mijic, A.[Ana],
The Use of LiDAR-Derived DEM in Flood Applications: A Review,
RS(12), No. 14, 2020, pp. xx-yy.
DOI Link 2007
BibRef

Vernimmen, R.[Ronald], Hooijer, A.[Aljosja], Pronk, M.[Maarten],
New ICESat-2 Satellite LiDAR Data Allow First Global Lowland DTM Suitable for Accurate Coastal Flood Risk Assessment,
RS(12), No. 17, 2020, pp. xx-yy.
DOI Link 2009
BibRef

Lowe, A.[Aaron], Agarwal, P.K.[Pankaj K.], Rav, M.[Mathias],
Flood-Risk Analysis on Terrains,
CACM(63), No. 9, September 2020, pp. 94-102.
DOI Link 2009
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Elmahdy, S.[Samy], Ali, T.[Tarig], Mohamed, M.[Mohamed],
Flash Flood Susceptibility Modeling and Magnitude Index Using Machine Learning and Geohydrological Models: A Modified Hybrid Approach,
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DOI Link 2009
BibRef

Nhu, V.H.[Viet-Ha], Ngo, P.T.T.[Phuong-Thao Thi], Pham, T.D.[Tien Dat], Dou, J.[Jie], Song, X.[Xuan], Hoang, N.D.[Nhat-Duc], Tran, D.A.[Dang An], Cao, D.P.[Duong Phan], Aydilek, I.B.[Ibrahim Berkan], Amiri, M.[Mahdis], Costache, R.[Romulus], Hoa, P.V.[Pham Viet], Bui, D.T.[Dieu Tien],
A New Hybrid Firefly-PSO Optimized Random Subspace Tree Intelligence for Torrential Rainfall-Induced Flash Flood Susceptible Mapping,
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Liu, X.H.[Xiao-Hui], Kar, B.[Bandana], Ishino, F.A.M.[Francisco Alejandro Montiel], Zhang, C.[Chaoyang], Williams, F.[Faustine],
Assessing the Reliability of Relevant Tweets and Validation Using Manual and Automatic Approaches for Flood Risk Communication,
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Ekeu-wei, I.T.[Iguniwari Thomas], Blackburn, G.A.[George Alan],
Catchment-Scale Flood Modelling in Data-Sparse Regions Using Open-Access Geospatial Technology,
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Esfandiari, M.[Morteza], Abdi, G.[Ghasem], Jabari, S.[Shabnam], McGrath, H.[Heather], Coleman, D.[David],
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Wang, G.P.[Guang-Peng], Hu, Z.Y.[Zi-Ying], Liu, Y.[Yong], Zhang, G.M.[Guo-Ming], Liu, J.[Jifu], Lyu, Y.L.[Yan-Li], Gu, Y.[Yu], Huang, X.C.[Xi-Chen], Zhang, Q.Y.[Qing-Yan], Tong, Z.Z.[Zong-Ze], Hong, C.[Chang], Liu, L.Y.[Lian-You],
Impact of Expansion Pattern of Built-Up Land in Floodplains on Flood Vulnerability: A Case Study in the North China Plain Area,
RS(12), No. 19, 2020, pp. xx-yy.
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Olthof, I.[Ian], Svacina, N.[Nicolas],
Testing Urban Flood Mapping Approaches from Satellite and In-Situ Data Collected during 2017 and 2019 Events in Eastern Canada,
RS(12), No. 19, 2020, pp. xx-yy.
DOI Link 2010
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Gebremichael, E.[Esayas], Molthan, A.L.[Andrew L.], Bell, J.R.[Jordan R.], Schultz, L.A.[Lori A.], Hain, C.[Christopher],
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Band, S.S.[Shahab S.], Janizadeh, S.[Saeid], Pal, S.C.[Subodh Chandra], Saha, A.[Asish], Chakrabortty, R.[Rabin], Melesse, A.M.[Assefa M.], Mosavi, A.[Amirhosein],
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Abdrabo, K.I.[Karim I.], Kantoush, S.A.[Sameh A.], Saber, M.[Mohamed], Sumi, T.[Tetsuya], Habiba, O.M.[Omar M.], Elleithy, D.[Dina], Elboshy, B.[Bahaa],
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Wang, G.Y.[Guo-Yang], Li, P.[Peng], Li, Z.H.[Zhen-Hong], Ding, D.[Dong], Qiao, L.[Lulu], Xu, J.S.[Ji-Shang], Li, G.X.[Guang-Xue], Wang, H.J.[Hou-Jie],
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Cao, Y.[Yifan], Jia, H.L.[Hong-Liang], Xiong, J.[Junnan], Cheng, W.M.[Wei-Ming], Li, K.[Kun], Pang, Q.[Quan], Yong, Z.W.[Zhi-Wei],
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IJGI(9), No. 12, 2020, pp. xx-yy.
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Swain, K.C.[Kishore Chandra], Singha, C.[Chiranjit], Nayak, L.[Laxmikanta],
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Nguyen, H.D.[Huu Duy], Fox, D.[Dennis], Dang, D.K.[Dinh Kha], Pham, L.T.[Le Tuan], Du, Q.V.V.[Quan Vu Viet], Nguyen, T.H.T.[Thi Ha Thanh], Dang, T.N.[Thi Ngoc], Tran, V.T.[Van Truong], Vu, P.L.[Phuong Lan], Nguyen, Q.H.[Quoc-Huy], Nguyen, T.G.[Tien Giang], Bui, Q.T.[Quang-Thanh], Petrisor, A.I.[Alexandru-Ionut],
Predicting Future Urban Flood Risk Using Land Change and Hydraulic Modeling in a River Watershed in the Central Province of Vietnam,
RS(13), No. 2, 2021, pp. xx-yy.
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Meadows, M.[Michael], Wilson, M.[Matthew],
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Wang, G.P.[Guang-Peng], Liu, Y.[Yong], Hu, Z.Y.[Zi-Ying], Zhang, G.M.[Guo-Ming], Liu, J.[Jifu], Lyu, Y.L.[Yan-Li], Gu, Y.[Yu], Huang, X.[Xichen], Zhang, Q.[Qingyan], Liu, L.[Lianyou],
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Rydvanskiy, R.[Ruslan], Hedley, N.[Nick],
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Korgaonkar, Y.[Yoganand], Guertin, D.P.[David Phillip], Meixner, T.[Thomas], Goodrich, D.C.[David C],
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Lombana, L.[Lorena], Martínez-Grańa, A.[Antonio],
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Zhao, Q.[Qing], Pan, J.[Jiayi], Devlin, A.[Adam], Xu, Q.[Qing], Tang, M.[Maochuan], Li, Z.J.[Zheng-Jie], Zamparelli, V.[Virginia], Falabella, F.[Francesco], Mastro, P.[Pietro], Pepe, A.[Antonio],
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Sang, S.[Shan], Wu, T.X.[Tai-Xia], Wang, S.D.[Shu-Dong], Yang, Y.Y.[Ying-Ying], Liu, Y.Y.[Yi-Yao], Li, M.Y.[Meng-Yao], Zhao, Y.T.[Yu-Ting],
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DOI Link 1404
BibRef

Nedvedová, K., Pergl, R.,
Cultural Heritage and Floods Risk Preparedness,
CIPA13(449-451).
HTML Version. 1311
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Robertson, N.M.[Neil M.], Chan, T.[Tak],
Aerial image segmentation for flood risk analysis,
ICIP09(597-600).
IEEE DOI 0911
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Chapter on Cartography, Aerial Images, Buildings, Roads, Terrain, Forests, Trees, ATR continues in
Coastal, Tidal Flood Analysis, Storm Surge .


Last update:Dec 7, 2021 at 16:42:42