Skip to main navigation
Skip to search
Skip to main content
University of Canberra Research Portal Home
Search content at University of Canberra Research Portal
Home
Profiles
Research output
Projects
Press/MediaIO
Activities
Research units
Prizes
Student theses
Impacts
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
Link opens in a new tab
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%