Relationship between residential house damage and flood characteristics: A case study in the Teesta River Basin, Bangladesh
暂无分享,去创建一个
[1] R. Shaw,et al. Implications of Flood Risk Reduction Interventions on Community Resilience: An Assessment of Community Perception in Bangladesh , 2022, Climate.
[2] K. Takeuchi,et al. Developing Flood Vulnerability Functions through Questionnaire Survey for Flood Risk Assessments in the Meghna Basin, Bangladesh , 2022, Water.
[3] Win Win Zin,et al. Development of flood damage assessment method for residential areas considering various house types for Bago Region of Myanmar , 2021, International Journal of Disaster Risk Reduction.
[4] N. S. Romali. ESTABLISHMENT OF RESIDENTIAL FLOOD DAMAGE FUNCTION MODEL FOR KUANTAN, MALAYSIA , 2020 .
[5] A. T. Balasbaneh,et al. Vulnerability assessment of building material against river flood water: case study in Malaysia , 2020, IOP Conference Series: Earth and Environmental Science.
[6] T. Gajendran,et al. Strengthening the information deficit model for disaster preparedness: Mediating and moderating effects of community participation , 2020 .
[7] Aye Myat Thu,et al. Multivariate Flood Loss Estimation of the 2018 Bago Flood in Myanmar , 2020 .
[8] Jun Gao,et al. Hard or soft flood adaptation? Advantages of a hybrid strategy for Shanghai , 2020 .
[9] E. Genovese,et al. Implementation of property‐level flood risk adaptation (PLFRA) measures: Choices and decisions , 2019, WIREs Water.
[10] J. Aerts,et al. Enhancement of large-scale flood risk assessments using building-material-based vulnerability curves for an object-based approach in urban and rural areas , 2019, Natural Hazards and Earth System Sciences.
[11] J. Magome,et al. Assessing flood disaster impacts in agriculture under climate change in the river basins of Southeast Asia , 2019, Natural Hazards.
[12] M. Nastev,et al. Flood risk mapping for direct damage to residential buildings in Quebec, Canada , 2019, International Journal of Disaster Risk Reduction.
[13] S. Herath,et al. Establishment of detailed loss functions for the urban flood risk assessment in Chao Phraya River basin, Thailand , 2019, Geomatics, Natural Hazards and Risk.
[14] Akiyuki Kawasaki,et al. Socioeconomic Vulnerability to Disaster Risk: A Case Study of Flood and Drought Impact in a Rural Sri Lankan Community , 2018, Ecological Economics.
[15] S. Kheradmand,et al. Evaluation of adaptation options to flood risk in a probabilistic framework , 2018, Journal of Hydrology: Regional Studies.
[16] I. Brown,et al. Re-thinking socio-economic impact assessments of disasters: The 2015 flood in Rio Branco, Brazilian Amazon , 2018, International Journal of Disaster Risk Reduction.
[17] Win Win Zin,et al. Establishment of flood damage function models: A case study in the Bago River Basin, Myanmar , 2018, International Journal of Disaster Risk Reduction.
[18] R. Dawson,et al. Assessment of Flood Losses with Household Responses: Agent-Based Simulation in an Urban Catchment Area , 2018, Environmental Modeling & Assessment.
[19] M. Brilly,et al. Development of model for the estimation of direct flood damage including the movable property , 2018 .
[20] D. Manley,et al. Confounding and collinearity in regression analysis: a cautionary tale and an alternative procedure, illustrated by studies of British voting behaviour , 2017, Quality & Quantity.
[21] A. R. Scorzini,et al. Flood damage curves: new insights from the 2010 flood in Veneto, Italy , 2017 .
[22] Lars Nyberg,et al. Assessment of pluvial flood exposure and vulnerability of residential areas , 2017 .
[23] Yukiko Tahira,et al. The Impact of the Thai Flood of 2011 on the Rural Poor Population Living on the Flood Plain , 2017 .
[24] Francesco Dottori,et al. INSYDE: a synthetic, probabilistic flood damage model based on explicit cost analysis , 2016 .
[25] M. Miyamoto,et al. Flood damage assessment in the Pampanga river basin of the Philippines , 2016 .
[26] Philippe De Maeyer,et al. Analyzing the sensitivity of a flood risk assessment model towards its input data , 2016 .
[27] Tuan Ngo,et al. Calibration and validation of FLFA rs -- a new flood loss function for Australian residential structures , 2016 .
[28] Jaroslav Mysiak,et al. Improving flood damage assessment models in Italy , 2015, Natural Hazards.
[29] George Tsakiris,et al. Flood Depth-Damage Functions for Built Environment , 2014, Environmental Processes.
[30] Jeroen C. J. H. Aerts,et al. Comparative flood damage model assessment: towards a European approach , 2012 .
[31] K. Chen,et al. Estimating insured residential losses from large flood scenarios on the Tone River, Japan - a data integration approach , 2011 .
[32] Bruno Merz,et al. Review article "Assessment of economic flood damage" , 2010 .
[33] N. C. Nadal,et al. Building Damage due to Riverine and Coastal Floods , 2010 .
[34] M. H. Middelmann-Fernandes. Flood damage estimation beyond stage–damage functions: an Australian example , 2010 .
[35] W. Haider,et al. Urban Flood Problems in Dhaka, Bangladesh: Slum Residents’ Choices for Relocation to Flood-Free Areas , 2007, Environmental management.
[36] G. Zhai,et al. MODELING FLOOD DAMAGE: CASE OF TOKAI FLOOD 2000 1 , 2005 .
[37] D. Dutta,et al. A mathematical model for flood loss estimation , 2003 .
[38] Win Win Zin,et al. A local level relationship between floods and poverty: A case in Myanmar , 2020 .
[39] Dennis Wagenaar,et al. Development of damage functions for flood risk assessment in the city of Colombo (Sri Lanka) , 2018 .
[40] K. Horie,et al. DEVELOPMENT OF FLOOD DAMAGE FUNCTIONS BASED ON INSURANCE LOSS DUE TO 2015 KANTO-TOHOKU HEAVY RAINFALL , 2017 .
[41] U. Saha,et al. Teesta Barrage Project – A Brief Review of Unattained Goals and Associated Changes , 2016 .
[42] Shigenobu Tanaka,et al. DEVELOPMENT OF FLOOD VULNERABILITY INDICES FOR LOWER MEKONG BASIN IN CAMBODAIN FLOODPLAIN , 2013 .
[43] Jan Corfee-Morlot,et al. An assessment of the potential impact of climate change on flood risk in Mumbai , 2011 .
[44] N. Okada,et al. GIS and flood inundation model-based flood risk assessment in urbanized floodplain , 2007 .
[45] Albert S. Chen,et al. A GRID-BASED GIS APPROACH TO REGIONAL FLOOD DAMAGE ASSESSMENT , 2005 .
[46] H. Akaike,et al. Information Theory and an Extension of the Maximum Likelihood Principle , 1973 .