Jining
China
Jining is projected to face a future marked by significant climate hazards, including extreme heat and an increased frequency of heatwaves. The city will experience rising temperatures that could worsen heat-related health issues and strain energy systems. Concurrently, heavy rainfall events are expected to become more common, which may result in flooding and put pressure on drainage infrastructure. This combination of climate risks presents complex vulnerabilities for the city, necessitating a comprehensive understanding of their future implications. Addressing these hazards is crucial for Jining to enhance its resilience against climate change impacts.
Hazard Outlook
How will Jining's projected climate hazards compare to other cities under a 3.0°C future warming scenario?
Maximum Temperature
Jining's projected maximum temperature of 10.0°C is higher than most cities globally under a 3.0°C warming scenario.
Maximum Rainfall
Jining's projected maximum rainfall of 13 mm is higher than most cities globally.
Elevation
At 41 m elevation, Jining faces elevated risk from coastal flooding and sea level rise.
Longest Heatwave
Jining may experience heatwaves lasting up to 4 days, near the median of other cities.
Heavy Rainfall Days
With 10 days of heavy rainfall expected, Jining ranks near the median of cities for extreme precipitation events.
Exposure Summary
Adaptation Priorities
Jining faces elevated exposure to max temp, max rain, elevation. 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 Jining.
No solutions have been documented for Jining.
This is an archived snapshot of the database.
Recommended Solutions
Proven solutions from similar cities that could help diversify Jining's resilience portfolio
GIS-Based Groundwater Protection Zoning and Database System
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Automated Water and Rain Monitoring System with Provincial Integration
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Floating Solar Photovoltaic Systems on Reservoirs
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Smart Water Metering and Automatic Meter Reading System
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Smart Water Meter System with AI-Powered Consumption Analytics
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River Hydraulic Modeling and Water Quality Monitoring System
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Smart Water Metering for Real-Time Distribution Network Management
79%Smart metering technology in Belgrade's water distribution network collects and transmits real-time water usage data from residential and industrial end users to improve monitoring and management capabilities.