Climate science · atmospheric modelling · sustainability

Understanding climate change. Building resilient futures.

Climate Research & Sustainability Analytics LLP is a research-driven organisation focused on climate science, urban environments, atmospheric processes, climate risk and sustainability analytics.

ClimateScience
UrbanEnvironments
DataAnalytics
ResilienceApplications
Atmosphere → CityConnecting atmospheric dynamics with urban-scale environmental conditions.
Data → EvidenceCombining observations, modelling, remote sensing and geospatial information.
Science → ActionTranslating climate evidence into research, planning and resilience insights.
Research focus

Climate science across scales.

We examine how climate processes interact with urbanisation, land surfaces, atmospheric circulation and human environments.

Urban Climate

Urban heat islands, boundary-layer processes, thermal comfort, heat stress and climate-sensitive urban environments.

Atmospheric Modelling

High-resolution modelling of winds, rainfall, convection, radiation and land–atmosphere interactions.

Climate Risk

Heat, rainfall and other climate hazards, with emphasis on vulnerability, exposure, adaptation and resilience.

Sustainability Analytics

Spatial and quantitative evidence to support sustainable development and environmental decision-making.

Scientific lens

From observation to decision.

We use multi-source evidence and physically based modelling to understand environmental change and derive interpretable climate indicators.

Observations
Remote sensing
Numerical models
Geospatial analysis
Climate indicators
Resilience insights
Selected themes

Research in action.

View project themes →

Urban heating & moist heat stress

Understanding how urban heating, moisture and boundary-layer stability shape human thermal exposure in Indian cities.

Monsoon convection & rainfall

Investigating low-level jets, terrain interactions and convective rainfall using modelling and atmospheric observations.

City-scale cooling

Assessing cooling strategies and thermal comfort through climate-sensitive indicators across diverse urban contexts.

Purpose

Better climate evidence for better futures.

Our aim is to strengthen the connection between rigorous climate science, quantitative evidence and practical sustainability challenges.

Mission

Advance climate and sustainability research through rigorous science, modelling, analytics and collaboration.

Vision

Support resilient communities, healthier environments and sustainable development under a changing climate.

Values

Scientific integrity · Interdisciplinary collaboration · Reproducibility · Practical relevance · Sustainability