Mojokerto
Indonesia
Mojokerto is projected to face multiple climate hazards, with future heavy rainfall events likely leading to flooding and infrastructure damage. Concurrently, the city will experience prolonged drought conditions that threaten agriculture and food security. Public health is also at risk as elevated arbovirus transmission and increased malaria cases are anticipated due to shifting climate patterns. These challenges will necessitate proactive measures to enhance community resilience. As the city navigates these vulnerabilities, it underscores the importance of understanding climate-related risks to safeguard the well-being of its residents in coming years.
Hazard Outlook
How will Mojokerto's projected climate hazards compare to other cities under a 3.0°C future warming scenario?
Elevation
At 23 m elevation, Mojokerto faces high risk from coastal flooding and sea level rise.
Maximum Rainfall
Mojokerto's projected maximum rainfall of 13 mm is higher than most cities globally.
Maximum Temperature
Mojokerto's projected maximum temperature of 8.2°C is lower than most cities globally under a 3.0°C warming scenario.
Longest Heatwave
Mojokerto may experience heatwaves lasting up to 0 days, lower than most other cities.
Heavy Rainfall Days
With 8 days of heavy rainfall expected, Mojokerto ranks lower than most cities for extreme precipitation events.
Exposure Summary
Adaptation Priorities
Mojokerto faces high exposure to elevation and elevated exposure to max rain. 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 Mojokerto.
No solutions have been documented for Mojokerto.
This is an archived snapshot of the database.
Recommended Solutions
Proven solutions from similar cities that could help diversify Mojokerto's resilience portfolio
Integrated Environmental Monitoring and Warning Platform
68%Building upon the existing Huangshi Geological Environment Information Platform Project, this approach represents a comprehensive expansion to integrate multiple environmental monitoring and warning capabilities into a unified system.
Multi-Radar System for Urban Rainfall Monitoring and Flood Prediction
65%A demonstration study was conducted in Toyama City and Fukui City utilizing a multi-radar system composed of three compact X-band dual-polarization radars as part of the B-DASH (Breakthrough by Dynamic Approach in Sewage High Technology) joint research project for rainwater management focused on monitoring heavy rainfalls in urban areas.
City Water Resilience Approach Framework Implementation
65%Cape Town became the first city to apply the City Water Resilience Approach (CWRA) to embed urban water resilience into the city's systems, following the severe 2014-2017 drought.
GIS-Based Groundwater Protection Zoning and Database System
68%This approach establishes a comprehensive groundwater management system for Huangshi through Geographic Information Systems (GIS) technology to address severe contamination and inadequate surveying of the city's groundwater resources.
Automated Water and Rain Monitoring System with Provincial Integration
68%The Huangshi Municipal Housing and Urban-Rural Development Bureau is constructing an automatic measuring and reporting system of water and rain that connects with the provincial flood monitoring system to realize information sharing through a special communication module.
Floating Solar Photovoltaic Systems on Reservoirs
65%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 Pressure Management Infrastructure
65%Beginning in late 2017 and continuing through 2018, Cape Town's municipal government significantly expanded its investment in advanced water pressure management infrastructure, deploying smart process controllers and zone-by-zone pressure regulation mechanisms across the metropolitan water distribution network.