Cities have become the new frontline of the climate crisis. In India, where over 800 million people are projected to live in urban areas by 2050, the impacts of a warming planet are not distant threats but daily realities. From flooded streets in Bengaluru to scorching afternoons in Delhi, climate change is reshaping how cities and their peripheries function. Understanding these changes is essential because urban and peri-urban areas are home to people, infrastructure, and ecosystems that are deeply interconnected and uniquely vulnerable.
Table of Contents
- Why cities feel climate change more intensely
- Rising temperatures and the urban heat trap
- Health and livelihood impacts
- Hydrological changes and urban flooding
- Why peri-urban areas flood worse
- Coastal flooding and sea level rise
- Extreme weather and infrastructure stress
- Who suffers most? The equity dimension
- Adaptation strategies: building resilient cities
- Ecosystem-based adaptation
- Sustainable urban planning
- Local government initiatives
- The road ahead
Why cities feel climate change more intensely
Urban areas are particularly susceptible to climate change for reasons that go beyond global warming alone. Dense populations, concrete-heavy infrastructure, and limited green cover combine to amplify the effects of rising temperatures and erratic rainfall. A study published in Nature Cities found that urbanisation alone has caused a 60% enhancement in warming across Indian cities, with eastern Tier-II cities showing the steepest rise. This is largely due to the urban heat island (UHI) effect, where surfaces like asphalt and concrete trap heat and reduce natural cooling through evaporation.
Peri-urban areas – the transitional zones at the edge of cities – face a different kind of pressure. These regions often absorb the spillover of urban growth without the planning, drainage, or governance support of formal city limits. They are simultaneously losing their rural character (farmland, water bodies, open ground) and inheriting urban problems (waste, traffic, encroachment) without the corresponding infrastructure to manage them.
Rising temperatures and the urban heat trap
Indian cities are heating up faster than the surrounding countryside, and faster than many global climate models predicted. New research highlighted by Global Climate Risks shows that urban areas in tropical regions have warmed about 45% more than surrounding rural zones. While climate models project around 2.2ยฐC of regional warming, Indian cities could experience 2.6-2.7ยฐC once urban effects are factored in.
The consequences are severe. Heatwaves are killing hundreds of people every summer, particularly outdoor workers, the elderly, and residents of informal settlements where housing materials trap heat and access to cooling is limited. According to Policy Circle, urban heat is reducing labour productivity, especially in construction and informal services, leading to economic losses that rarely appear in municipal balance sheets.
Health and livelihood impacts
Extreme heat affects more than comfort. It worsens cardiovascular and respiratory illnesses, accelerates dehydration, and contributes to vector-borne disease outbreaks. Children, pregnant women, and elderly populations are especially vulnerable. As research on climate change in India notes, the urban poor – often concentrated in informal settlements with poor ventilation and limited green space – bear the heaviest burden of heat-related illness.
Hydrological changes and urban flooding
The other half of the climate story in cities is water – too much of it, too fast. Urbanisation fundamentally disrupts the natural hydrological cycle. When farmland, wetlands, and forests are paved over, rainwater can no longer seep into the ground. Instead, it rushes across impervious surfaces, overwhelming drainage systems that were never designed for today’s rainfall patterns.
The National Disaster Management Authority observes a worrying pattern: major Indian cities have suffered devastating floods almost every year over the past two decades – Hyderabad (2000), Mumbai (2005), Chennai (2015), and Bengaluru (multiple times). Global climate change is producing high-intensity rainfall over shorter periods, and outdated drainage infrastructure simply cannot cope.
Why peri-urban areas flood worse
Peri-urban regions are especially vulnerable because they sit at the interface of altered hydrology. Wetlands, lakes, and floodplains in these zones are often privately owned and lack legal protection, making them prime targets for real estate development. A recent investigation documented how Mumbai’s peri-urban wetlands and floodplains have been steadily converted to construction sites, dramatically increasing flood risk. In May 2026, the city recorded rainfall 67,600% above the seasonal average over just three days, shattering a century-old record.
Bengaluru offers another telling example. Reports indicate that nearly 65% of the city’s lakes have been encroached upon, sharply reducing rainwater absorption capacity. Delhi continues to rely on a drainage master plan from 1976 that assumed peak rainfall of 50 mm per day, even though the city recorded 185.9 mm per day in 2023. Mumbai’s storm drains, designed in the 1860s for 25 mm/hour, now face downpours exceeding 100 mm/hour.
Coastal flooding and sea level rise
Coastal cities face an additional threat – rising sea levels combined with storm surges. A study in Scientific Reports projects that Mumbai, Kolkata, and Chennai will face their most severe flooding under high-emission scenarios. The research emphasises that immediate flood protection measures and comprehensive climate adaptation plans are critical for these megacities.
Extreme weather and infrastructure stress
Beyond heat and floods, urban areas face a growing menu of extreme weather events – cyclones, landslides, hailstorms, and flash floods in previously safe zones. The India Water Portal reports that warmer air holds more moisture, meaning rainfall, when it comes, falls harder and faster. This is turning regions once considered low-risk into flash flood hotspots, redrawing the country’s risk map.
Urban infrastructure – power grids, water supply, transport, and communication networks – was largely built for the climate of the 20th century. Today, that infrastructure is being stress-tested by 21st-century weather. Power outages during heatwaves, road collapses during downpours, and disrupted public transport during cyclones are no longer rare events; they are recurring features of urban life.
Who suffers most? The equity dimension
Climate impacts in cities are not distributed evenly. Research has shown that India has the world’s highest number of slum clusters in flood-prone areas. Informal settlements, often built on floodplains or low-lying land because no other space is available, face the brunt of every monsoon. The 2023 Yamuna floods in Delhi, which submerged settlements along the riverbank, illustrated this vulnerability painfully.
Marginalised communities – including Dalits, Adivasis, migrant workers, and women-headed households – are disproportionately affected because they typically live in higher-risk neighbourhoods with weaker infrastructure and have fewer resources to recover after disasters. Any meaningful climate response must therefore put equity at its centre.
Adaptation strategies: building resilient cities
The good news is that solutions exist, and many are already being tested across Indian cities. Adaptation strategies fall broadly into three categories: ecosystem-based approaches, sustainable urban planning, and local governance initiatives.
Ecosystem-based adaptation
Ecosystem-based adaptation (EbA) uses natural systems to buffer cities against climate impacts. This includes restoring wetlands, reviving urban lakes and water bodies, expanding tree cover, and creating green corridors. After the 2015 floods, Chennai began reviving its ancient temple tanks and stormwater channels, restoring 15 tanks by 2020. Telangana’s Mission Kakatiya rejuvenated over 45,000 lakes, many in peri-urban Hyderabad, simultaneously improving flood control and groundwater recharge.
However, a review of climate plans in 13 Indian cities found that nature-based solutions are too often reduced to tree planting and waterbody management, without engaging deeply with how urban ecosystems actually function. True EbA requires understanding ecological processes – soil hydrology, microclimate regulation, biodiversity – and integrating them into city planning.
Sustainable urban planning
Planning approaches must shift from concrete-first to water- and ecology-sensitive design. This includes:
Permeable surfaces: Replacing impervious pavements with porous materials that allow rainwater to seep into the ground.
Low Impact Development (LID): Features like detention ponds, bioswales, green roofs, and rain gardens that mimic natural drainage. A recent review shows that LID practices significantly reduce flood risk in Indian cities when integrated with hydrological modelling.
Floodplain protection: Legally protecting wetlands, rivers, and natural drainage corridors from encroachment.
Cool roofs and building codes: Mandating reflective roofing materials, better insulation, and natural ventilation to reduce indoor heat.
Local government initiatives
City governments are central to adaptation because climate impacts are local. The Brihanmumbai Municipal Corporation’s Mumbai Climate Action Plan (MCAP) 2022 was India’s first such citywide plan, identifying flooding, coastal risks, heat, landslides, and air pollution as priority vulnerabilities. Cities like Coimbatore, Rajkot, Siliguri, and Udaipur are implementing climate action plans through the CapaCITIES project, supported by ICLEI South Asia.
At the national level, the National Action Plan on Climate Change (NAPCC) launched in 2008 outlines eight missions covering sustainable habitat, water, green India, and other priorities. States are expected to operationalise these through their own action plans, but implementation remains uneven, especially in smaller cities and peri-urban areas where local governments often lack technical capacity and funding.
The road ahead
Building climate resilient cities is not just about engineering – it requires multi-level governance, community participation, equity-focused planning, and respect for natural ecosystems. Urban local bodies need stronger financial and technical support. Peri-urban areas need recognition as distinct planning zones with their own challenges. Marginalised communities need to be at the centre of adaptation strategies, not at the periphery.
The climate is changing faster than infrastructure can be rebuilt. The choices Indian cities make in the next decade – about how they grow, what they protect, and whom they prioritise – will determine whether they become resilient or remain reactive.
What do you think? If you were planning your own city’s climate adaptation strategy, would you prioritise grey infrastructure like better drains and seawalls, or green infrastructure like wetland restoration and urban forests – and why? And how can peri-urban communities be given a stronger voice in decisions that affect their land and water?
References
- https://www.nature.com/articles/s44284-024-00074-0
- https://globalclimaterisks.org/insights/blog/urban-heat-rising-faster-than-expected-in-indian-cities/
- https://www.policycircle.org/opinion/heatwaves-floods-cities-india/
- https://en.wikipedia.org/wiki/Climate_change_in_India
- https://ndma.gov.in/Natural-Hazards/Urban-Floods
- https://time.com/7300435/india-urbanization-climate-impacts-heat-monsoons/
- https://www.pmfias.com/urban-flooding-in-india/
- https://www.nature.com/articles/s41598-025-13394-5
- https://www.indiawaterportal.org/climate-change/disasters/flash-floods-threaten-indias-safe-zones-climate-change-is-redrawingthe-risk-map
- https://m.thewire.in/article/urban/as-flooding-wreaks-havoc-across-cities-a-nudge-for-urban-policy-to-address-climate-change/amp
- https://www.re-thinkingthefuture.com/designing-for-typologies/a14129-urban-flooding-in-india-learning-from-the-past-designing-for-the-future/
- https://www.tandfonline.com/doi/full/10.1080/00358533.2021.1985268
- https://www.cornous.com/article/cornous-environmental-sciences/urban-flood-risk-under-climate-change-modeling-and-lid-based-solutions
- https://www.orfonline.org/expert-speak/climate-action-plan-and-indian-cities
- https://eos.org/articles/climate-action-plans-tailored-to-indian-cities
- https://pmc.ncbi.nlm.nih.gov/articles/PMC8248603/

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