Revision summary
Climate-linked urban floods come from heavier downpours on sealed soil, lost wetlands, clogged drains and tidal lock. Mumbai on 26 July 2005 combined record rain, a choked Mithi and high tide; rails and the airport stopped. Chennai in late 2015 saw prolonged monsoon rain, tank and river overflow, and city-wide disruption tied to wetland loss. National response sits in the Disaster Management Act, NDMA urban-flooding guidelines, AMRUT/Smart Cities, and Wetlands Rules. The binding failure is still local: encroachment and drains that exist on a map.
Model answer
Introduction
A city flood used to be called a drainage problem. It is now also a climate-induced disaster: a shorter, harder rain falling on concrete, clogged drains and missing wetlands. Mumbai in 2005 and Chennai in 2015 are the two large, well-documented shocks of the last twenty years. Policy has caught up in guidelines and missions. The water still finds the old drain.
Body
Causes
Climate is loading the dice: warmer air holds more moisture, so extreme daily rainfall is more likely. Urbanisation seals soil with asphalt. Wetlands, tanks and floodplains — the city’s old sponges — are plotted and built. Storm-water drains are undersized, blocked with solid waste, and often combined with sewage. Encroachment on riverbanks (Mithi, Cooum, Adyar, many nallahs) removes the channel. Tidal lock in coastal cities stops drainage at high tide. Upstream dams and sudden releases can add a pulse. Poor mapping and housing on low ground put the poor in the first storey of the flood. The disaster is therefore climate plus planning plus garbage, not rain alone.
- Peg: Extreme rain is the climate limb; the sealed floodplain is the governance limb.
- Peg: Solid waste in a drain is a flood policy failure, not a civic footnote.
Two major floods
Mumbai, 26 July 2005. A record single-day downpour over the city, with the Mithi overflowing, airports and rails stopping, and large loss of life in low-lying and slum belts. Features: an extreme rain event, a river-turned-drain, high tide, and a megacity whose suburbs had eaten the catchment. The Fact-Finding Committee (Chitale) and later work made the Mithi and storm drains a public file.
Chennai, November–December 2015. Weeks of excess northeast-monsoon rain, overflow of Chembarambakkam and other tanks, the Adyar and Cooum in spate, a city-wide halt, and a death and livelihood toll that made it a national disaster. Features: a reservoir-and-tank system that could not be operated only as flood control, wetland loss (including the IT corridor’s relationship with the marsh), and rainfall that sat far above what the colonial-era drain assumed.
(Other large events exist — Uttarakhand 2013 is more mountain than city; Kerala 2018 was statewide; Hyderabad 2020 and Bengaluru 2022 were serious urban floods. The question asks for two; Mumbai 2005 and Chennai 2015 are the clearest megacity pair.)
- Peg: Mumbai 2005: one brutal day, Mithi, tide, transport collapse.
- Peg: Chennai 2015: a monsoon month, tanks and rivers, wetland memory.
Policies and frameworks
The Disaster Management Act, 2005, and NDMA guidelines on urban flooding (2010) ask cities for drainage master plans, wetland protection, and early warning. State disaster plans and city Heat-and-Flood SOPs sit under SDMAs. AMRUT and Smart Cities fund storm-water and some lake revival. National Water Mission and wetland rules (including the Wetlands Rules, 2017) try to keep sponges legal. Model Building Bye-Laws and some State rules require rainwater harvesting and, in a few cities, zero-dumping into nallahs. NGT orders on lakes and construction-and-demolition waste are a judicial track. National Cyclone Risk Mitigation and coastal zone rules matter for tidal cities. The gap is municipal capacity and encroachment politics: a guideline does not move a mall off a drain. Climate policy (National Action Plan, State Action Plans) now names urban flooding as an adaptation item, which is the right heading if the budget follows the drain, not only the flyover.
- Peg: NDMA urban flood guidelines plus the DM Act are the national framework; AMRUT/Smart Cities are the money pipes.
- Peg: Wetland Rules and lake litigation are the ecological half of the same policy.
Flow diagram
flowchart TD CL[Extreme rain] --> U[Urban flood] S[Sealed wetland] --> U D[Blocked drain] --> U M[Mumbai 2005] --> U C[Chennai 2015] --> U P[NDMA AMRUT wetland rules] --> U
Conclusion
Urban floods combine harder rain with sealed catchments and dead drains. Mumbai 2005 and Chennai 2015 showed a megacity can stop in a day or a month. India has NDMA guidelines, wetland rules and urban missions. They work only if the floodplain is not sold before the next cloud.
Quick related
Students also ask
-
Discuss about the vulnerability of India to earthquake related hazards. Give examples including the salient features of major disasters caused by earthquakes in different parts of India during the last three decades.
Next question on this syllabus topic (2021 · Q8). View answer →
-
Is every city flood only climate change?
Climate raises the odds of extreme rain. The depth of the flood is still decided by drains, wetlands and who was allowed to build on them.
-
Why these two examples, not Kerala 2018?
Kerala 2018 was a huge flood disaster across towns and villages. Mumbai 2005 and Chennai 2015 are the textbook megacity cases of the last two decades.
PYQ trend
When UPSC asked this
Related PYQs from other years, newest first. Open a question to read it.
-
2024 · Q17 · GS III · 15 marks
What is disaster resilience? How is it determined? Describe various elements of a resilience framework. Also mention the global targets of Sendai Framework for Disaster Risk Reduction (2015-2030). -
2021 · Q8 · GS III · 10 marks
Discuss about the vulnerability of India to earthquake related hazards. Give examples including the salient features of major disasters caused by earthquakes in different parts of India during the last three decades. -
2020 · Q18 · GS III · 15 marks
Discuss the recent measures initiated in disaster management by the Government of India departing from the earlier reactive approach. -
2019 · Q8 · GS III · 10 marks
Vulnerability is an essential element for defining disaster impacts and its threat to people. How and in what ways can vulnerability to disasters be characterized? Discuss different types of vulnerability with reference to disasters. -
2019 · Q18 · GS III · 15 marks
Disaster preparedness is the first step in any disaster management process. Explain how hazard zonation mapping will help disaster mitigation in the case of landslides. -
2018 · Q18 · GS III · 15 marks
Describe various measures taken in India for Disaster Risk Reduction (DRR) before and after signing 'Sendai Framework for DRR (2015-2030)'. How is this framework different from 'Hyogo Framework for Action, 2005'? (250 Words, 15 Marks). -
2016 · Q16 · GS III · 12 marks
With reference to National Disaster Management Authority (NDMA) guidelines, discuss the measures to be adopted to mitigate the impact of recent incidents of cloudbursts in many places of Uttarakhand.
More from this topic
Q17 · UPSC Mains 2024 · GS III · 15 marks
What is disaster resilience? How is it determined? Describe various elements of a resilience framework. Also mention the global targets of Sendai Framework for Disaster Risk Reduction (2015-2030).
Disaster Management
Disaster resilience is the capacity to anticipate, absorb, adapt and recover without losing essential functions. It is determined by hazard knowledge, exposure, vulnerability and institutional as well as household capacity. A resilience framework includes assessment, risk reduction, preparedness, response, build-back-better recovery, finance and learning. The Sendai Framework (2015–2030) has seven global targets on mortality, affected people, economic loss, infrastructure, national/local strategies, international cooperation and multi-hazard early warning. Sendai’s four priorities are understanding risk, governance, investment in resilience, and preparedness for recovery.
Q8 · UPSC Mains 2021 · GS III · 10 marks
Discuss about the vulnerability of India to earthquake related hazards. Give examples including the salient features of major disasters caused by earthquakes in different parts of India during the last three decades.
Disaster Management
Himalayan collision and the north-east put large populations in Zones IV and V; alluvium can amplify shaking in the plains. The peninsula is not risk-free, as Latur 1993 showed. Bhuj 2001 was a great urban disaster of failed multi-storeys on Republic Day. The 2004 tsunami made Andaman and Tamil Nadu earthquake-coast disasters. Kashmir 2005, Sikkim 2011, and Nepal 2015 extended the Himalayan lesson into the 2010s.
Q18 · UPSC Mains 2020 · GS III · 15 marks
Discuss the recent measures initiated in disaster management by the Government of India departing from the earlier reactive approach.
Disaster Management
The DM Act, 2005 institutionalised prevention and preparedness beside relief. NDMA, NDRF, SDMAs, and disaster funds are the standing architecture. Cyclone warning and mass evacuation (Fani, Phailin versus 1999) show the new approach in lives saved. CDRI (2019) and the PM’s DRR agenda push resilient infrastructure, not only tents. Zoning and building-code failure remain the reactive residue.
Toppers' copies
Toppers' copies for this question will be uploaded soon.