Skip to main navigation
Skip to search
Skip to main content
University of Canberra Research Portal Home
Home
Profiles
Research output
Projects
Press/Media
Activities
Research units
Prizes
Student theses
Search by expertise, name or affiliation
A spatial framework for regional-scale flooding risk assessment
Yun Chen
, Damian Barrett
, Rui Liu
, Lei Gao
, Mingwei Zhou
, Luigi Renzullo
, Susan Cuddy
, Irina Emelyanova
Research output
:
Contribution to conference (non-published works)
›
Paper
›
peer-review
9
Citations (Scopus)
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'A spatial framework for regional-scale flooding risk assessment'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Flood Risk Assessment
100%
Flood Risk
100%
Spatial Framework
100%
Bowen Basin
60%
Mean Recurrence Time
40%
Australia
20%
ArcGIS
20%
Effective Approach
20%
Drought
20%
Climate Change
20%
Queensland Australia
20%
Hydrology
20%
Criteria Weights
20%
Spatial Data
20%
River Network
20%
Rainfall
20%
Streamflow
20%
Mitigation Measures
20%
Risk Estimation
20%
Australian Mining Industry
20%
Adaptation Strategies
20%
Baseline Data
20%
Extreme Weather
20%
Rainfall Events
20%
Water Availability
20%
Increasing Risk
20%
Mining Sector
20%
Spatial Index
20%
Decision Framework
20%
Water Surface Elevation
20%
Drainage Density
20%
Modeling Analysis
20%
Analytical Hierarchy Process Method
20%
Risk Map
20%
Inundation Extent
20%
Flood Inundation
20%
Inundation Risk
20%
Mine Water Management
20%
Intensive Rainfall
20%
Soil Water Retention
20%
Excess Water
20%
Spatial multi-criteria Decision Making
20%
Water Slope
20%
Sustainable Mine
20%
Flow Potential
20%
MODIS Images
20%
Earth and Planetary Sciences
Australia
100%
Coal Mine
100%
Water Management
50%
Queensland
50%
Decision Making
50%
Vegetation
50%
Spatial Data
50%
Digital Elevation Model
50%
Climate Change
50%
Mitigation Measure
50%
MODIS
50%
Soil Water
50%
Water Availability
50%
Mining Industry
50%
Analytical Hierarchy Process
50%
Water Retention
50%
Potential Flow
50%