Independent science. Aotearoa New Zealand.

Climate science.
In finer detail.

1 km climate projections across New Zealand.
46 model chains. A broader scientific perspective.
A clearer view of what comes next.

Year-to-year variation in the wettest day’s rainfall across New Zealand, showing the native 1 km terrain detail.
Year-to-year variabilityWettest-day rainfall · Rx1day · 2080–2099
01 / A finer view

A complex landscape.
A more detailed view.

Mountain ranges. Rain shadows. Coastlines. New Zealand’s climate changes over remarkably short distances.

NZM1K brings a 1 km national grid together with 46 global–regional model chains: 18 global models and six regional configurations. Exceptional spatial detail and a much broader view of model uncertainty for New Zealand climate risk analysis.

1kmNational projection grid
46Global–regional model chains
25×Spatial grid detail versus 5 km
2+ 2Core + additional pathways

Finer detail.
A far broader ensemble.

Twenty-five 1 km cells cover the area of one 5 km cell. NZM1K combines this finer grid with 46 model chains, compared with six in the national 5 km projections. Its 18 global models and six regional configurations provide a much wider range of model structures for climate risk analysis.

Compare with the national 5 km dataset ↗
DAILY TEMPERATURE & PRECIPITATION

Four pathways.
Two at the core.

Core: SSP1-2.6 and SSP3-7.0.
Also available: SSP2-4.5 and SSP5-8.5.

The additional pathways have different model coverage. We confirm the available models, variables and periods when scoping your project.

The 25× comparison describes grid-cell density. The ensemble spans different model structures; its chains are not independent predictions. Interpreting that detail and uncertainty is part of the science.

About these maps
02 / The NZM1K explorer

See the change.
Explore the detail.

How might rainfall change? How variable is it from year to year? Explore annual rainfall and the wettest day of the year, with all 274,834 native 1 km land cells retained.

Wettest-day rainfall · year-to-year variability
Year-to-year variability in wettest-day rainfall, 2080–2099, at native 1 km resolution.

Variability SD / reference rainfall

0%40%80%
NZM1K · Climate PrescienceNative 1 km detail · 274,834 land cells
About these maps

Year-to-year variability

Rx1day is the wettest day of each year. The map shows its climate-variability standard deviation as a percentage of reference rainfall.

The NZM1K methods manuscript has been submitted for peer review.

The comparison

Variability covers 2080–2099, combining SSP1-2.6 and SSP3-7.0, relative to a modelled 2015–2024 reference.

Both rainfall metrics share a 0–80% scale. This is a measure of variability, not the probability of an event.

From patterns to projects

Explore the spatial patterns at native 1 km resolution. Colours are for visual exploration; project analysis uses the underlying scientific data.

A climate grid cell is not a property assessment, and Rx1day is not a return-period design storm. Discuss the data and interpretation your project needs ↗

03 / Science for your project

Your team’s question.
Our scientific perspective.

Specialist climate support for consulting, risk and planning teams. Bring the project brief; we provide the data, analysis and interpretation that fit your workflow.

01

Climate data

The right inputs, ready to use.

NZM1K data selected for your geography, variables, scenarios and time horizons. Supplied with versioned metadata, provenance and an explanation of appropriate use.

Project-specific extractsTemperature & rainfallDocumented provenance
02

Tailored analysis

From climate inputs to useful evidence.

Calculations, scenario comparisons, figures and GIS outputs designed around your question. Methods and checks are documented so your team can understand and use the results.

Scenario comparisonsFigures & spatial outputsReproducible methods
03

Scientific interpretation

Know what the results really mean.

Direct scientific input from Dr Nathanael Melia: interpreting the signal, explaining uncertainty and identifying the limits relevant to your assessment.

Model uncertaintyTechnical reviewClear explanations

Scoped and quoted to your project.
Start with the question, location, outputs and deadline.

Send a project brief
01 Send a brief02 Agree the scope03 Analyse & review04 Deliver to your team
Research end users

Science that reaches
real decisions.

Climate Prescience and Nathanael Melia’s wider research have supported organisations working across government, transport, conservation, primary industries and emergency management.

Explore examples of commissioned research and its use in climate and emergency planning.

Commissioned climate research ↗Wildfire research in practice ↗
04 / Research at the core

The work behind
the perspective.

Research into climate projections, extremes and uncertainty is the foundation of Climate Prescience. Selected publications by Nathanael and collaborators.

RESEARCH SUPPORTMBIE Endeavour Fund · Smart Ideas, 2022 & 2025
With the Science Media Centre

Science in the
public conversation.

Dr Nathanael Melia regularly contributes expert commentary to New Zealand’s Science Media Centre, bringing independent climate science into reporting on extreme weather, climate risk, forestry and adaptation.

Selected contributions to the Science Media Centre’s expert commentary series.

Independent by design.ROTORUA, AOTEAROA NEW ZEALAND
The scientist behind the science

Dr Nathanael Melia

Climate scientist & founder

I founded Climate Prescience to bring climate research into the questions people need to answer. My work spans climate projections, extreme weather and the uncertainty that shapes future risk.

When you work with Climate Prescience, you work directly with me. I direct and review the science, and help your team understand what the evidence means for its project.

Academic profile
Let’s start with your question.

Bring a question.
See further.

Tell us what you’re working on.
A short email is a good place to start.

Send a project brief
nathanael@climateprescience.com