Sumenep
Indonesia
Sumenep is projected to face significant climate hazards impacting its environmental and public health. The city will experience frequent heatwaves, posing risks to health, particularly among vulnerable groups. Furthermore, prolonged drought conditions threaten water availability, affecting both agriculture and drinking supplies. The risk of arbovirus transmission is anticipated to rise, creating conditions conducive to mosquito-borne diseases. Additionally, the city will face elevated malaria risks as warmer temperatures may expand the habitats suitable for the malaria-carrying mosquito. These compounding risks indicate that the local population's vulnerability will likely increase in the future, highlighting the urgent need for awareness and adaptation strategies in response to these climate challenges.
Hazard Outlook
How will Sumenep's projected climate hazards compare to other cities under a 3.0°C future warming scenario?
Elevation
At 2 m elevation, Sumenep faces very high risk from coastal flooding and sea level rise.
Longest Heatwave
Sumenep may experience heatwaves lasting up to 5 days, higher than most other cities.
Maximum Rainfall
Sumenep's projected maximum rainfall of 9 mm is near the median of cities globally.
Maximum Temperature
Sumenep's projected maximum temperature of 8.1°C is lower than most cities globally under a 3.0°C warming scenario.
Heavy Rainfall Days
With 7 days of heavy rainfall expected, Sumenep ranks lower than most cities for extreme precipitation events.
Exposure Summary
Adaptation Priorities
Sumenep faces high exposure to elevation and elevated exposure to heatwave. These areas may warrant priority attention in adaptation planning.
Data source: Climate projections from the IPCC AR6 scenario analysis. See our methodology for details on how we process and interpret this data.
Deployed Solutions
Deployed climate adaptation technologies identified in Sumenep.
No solutions have been documented for Sumenep.
This is an archived snapshot of the database.
Recommended Solutions
Proven solutions from similar cities that could help diversify Sumenep's resilience portfolio
My Tree Urban Georeferencing Platform
71%Salvador's Municipal Secretary of Sustainability, Innovation and Resilience developed the 'My Tree' platform, an open web and mobile georeferencing system designed to register and monitor tree plantings performed by both municipal authorities and citizens throughout the city.
InVEST Ecosystem Services Modeling for Climate Adaptation Planning
69%Istanbul Metropolitan Municipality staff received comprehensive training on the InVEST modeling program through SECAP workshops, which were conducted to build capacity in climate adaptation, mitigation, and monitoring.
Urban Heat Island Mapping and Monitoring Platform
71%Salvador developed an online platform to map and monitor urban heat islands, supporting the city's public administration in adapting to climate change effects.
Downscaled Climate Modeling System with Multi-Scenario Projections
69%The Istanbul Metropolitan Municipality developed a comprehensive climate modeling approach that integrated downscaled global climate models with thirty years of city-specific meteorological data from stations operated by the General Directorate of Meteorology (MGM).
Food Access Geospatial Mapping Tool for Vulnerable Populations
68%The City and County of Honolulu is developing a geospatial mapping tool that overlays food system resources and assets with vulnerable and at-risk populations to assess community needs.
GIS-Enabled Emergency Information Sharing Platform
71%The Common Operational Picture is a GIS-enabled electronic platform that enhances emergency information sharing and support mechanisms for dealing with multiple hazards in Hong Kong.
Flood Risk Management Platform with Integrated Municipal Data
70%CivicDataLab, in collaboration with the Open Contracting Partnership and Bangkok Metropolitan Administration (BMA), has developed a Flood Risk Management Platform to strengthen mitigation planning and oversight.
Floating Solar Photovoltaic Systems on Reservoirs
71%The Water Supplies Department (WSD) has pioneered floating photovoltaic (FPV) technology on Hong Kong's reservoirs, beginning with two 100 kW pilot systems installed at Shek Pik Reservoir and Plover Cove Reservoir in 2017.
Smart Water Metering and Automatic Meter Reading System
71%The Water Supplies Department is promoting wider use of smart water meters and Automatic Meter Reading (AMR) System, planned to work in conjunction with the Water Intelligent Network (WIN) to help identify problems.
Smart Water Meter System with AI-Powered Consumption Analytics
71%The Water Supplies Department is exploring the use of Automatic Meter Reading (AMR) coupled with mobile applications to enhance consumers' awareness of their water consumption on a timely basis, thereby facilitating behavioural changes to save water.