Completed Climate, Earth & Environment Engineering

HyCRISTAL: Integrating Hydro-Climate Science into Policy Decisions for Climate-Resilient Infrastructure and Livelihoods in East Africa

In plain English

AI plain-English summary

East Africa’s long rains are disappearing, yet climate models predict they should increase—a contradiction that leaves policymakers without reliable forecasts for the region’s water future. This mismatch, known as the “East African climate paradox,” is the core problem HyCRISTAL tackles. Without trustworthy projections, governments cannot plan for water supply, agriculture, or hydropower in a region with one of the world’s fastest-growing populations. The project will quantify the sources of this uncertainty—from natural variability to flawed model representations of storms and land-atmosphere interactions—and produce process-based expert judgments on when climate signals will emerge. If successful, HyCRISTAL will give East African water managers, city planners, and rural communities usable climate information on a 5-to-40-year timescale. The research will be tested in two real-world pilots: one for urban water systems, another for policies supporting climate-smart farming. By co-producing tools with local partners—11 of 25 co-investigators are African, nine based full-time in the region—the project aims to turn uncertain projections into concrete decisions for climate-resilient infrastructure and livelihoods.

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East Africa (EA) has one of the world's fastest growing populations, with maxima around water-bodies and rapid urbanisation. Climate change is adding to existing problems increasing vulnerability of the poorest. HyCRISTAL is driven by EA priorities. EA communities rely on rainfall for food via agriculture. EA's inland lakes are rain-fed and provide water, power and fisheries. For EA's growing cities, climate impacts on water resources will affect water supply & treatment. HyCRISTAL will therefore operate in both urban & rural contexts. Change in water availability will be critical for climate-change impacts in EA, but projections are highly uncertain for rain, lakes, rivers and groundwater, and for extremes. EA "Long-Rains" are observed to be decreasing; while models tend to predict an increase (the "EA Climate paradox") although predictions are not consistent. This uncertainty provides a fundamental limit on the utility of climate information to inform policy. HyCRISTAL will therefore make best use of current projections to quantify uncertainty in user-relevant quantities and provide ground-breaking research to understand and reduce the uncertainty that currently limits decision making. HyCRISTAL will work with users to deliver world-leading climate research quantifying uncertainty from natural variability, uncertainty from climate forcings including those previously unassessed, and uncertainty in response to these forcings; including uncertainties from key processes such as convection and land-atmopshere coupling that are misrepresented in global models. Research will deliver new understanding of the mechanisms that drive the uncertainty in projections. HyCRISTAL will use this information to understand trends, when climate-change signals will emerge and provide a process-based expert judgement on projections. Working with policy makers, inter-disciplinary research (hydrology, economics, engineering, social science, ecology and decision-making) will quantify risks for rural & urban livelihoods, quantify climate impacts and provide the necessary tools to use climate information for decision making. HyCRISTAL will work with partners to co-produce research for decision-making on a 5-40 year timescale, demonstrated in 2 main pilots for urban water and policies to enable adaptive climate-smart rural livelihoods. These cover two of three "areas of need" from the African Ministerial Council on Environment's Comprehensive Framework of African Climate Change Programmes. HyCRISTAL has already engaged 12 partners from across EA. HyCRISTAL's Advisory Board will provide a mechanism for further growing stakeholder engagement. HyCRISTAL will work with the FCFA global & regional projects and CCKE, sharing methods, tools, user needs, expertise & communication. Uniquely, HyCRISTAL will capitalise on the new LVB-HyNEWS, an African-led consortium, governed by the East African Community, the Lake Victoria Basin Commission and National Meteorological and Hydrological agencies, with the African Ministerial Conference on Meteorology as an observer. HyCRISTAL will build EA capacity directly via collaboration (11 of 25 HyCRISTAL Co-Is are African, with 9 full-time in Africa), including data collection and via targeted workshops and teaching. HyCRISTAL will deliver evidence of impact, with new and deep climate science insights that will far outlast its duration. It will support decisions for climate-resilient infrastructure and livelihoods through application of new understanding in its pilots, with common methodological and infrastructure lessons to promote policy and enable transformational change for impact-at-scale. Using a combination of user-led and science-based management tools, HyCRISTAL will ensure the latest physical science, engineering and social-science yield maximum impacts. HyCRISTAL will deliver outstanding outputs across FCFA's aims; synergies with LVB-HyNEWS will add to these and ensure longevity beyond HyCRISTAL.

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Researchers

Barbara Evans (Co-Investigator)Felix MUTUA (Co-Investigator)Geoffrey Sabiiti (Co-Investigator)Jackson Efitre (Co-Investigator)John Marsham (Principal Investigator)PASCAL WANIHA (Co-Investigator)Richard Anyah (Co-Investigator)

Related Research

Grants with similar aims, by meaning.

Integrating Hydro-Climate Science into Policy Decisions for Climate-Resilient Infrastructure and Livelihoods in East Africa (HyCRISTAL)
Uncertainty reduction in Models For Understanding deveLopment Applications (UMFULA)
SALIENT: Science for Adaptation: Learning and Innovation in EvideNce about future climaTe
Anticipatory Climate Adaptation for Communities in Africa
Anticipatory Climate Adaptation for Communities in Africa (ACACIA)

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Research Grant

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