What caused the NHPC tunnel disaster in Sikkim’s Namchi? | Explained
Explore the NHPC tunnel disaster in Sikkim, caused by methane gas, revealing dangers in Himalayan infrastructure projects.
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Methane trapped inside rock is suspected to have triggered the fatal blast. But how does this happen?
Updated - July 22, 2026 05:19 pm IST
A view of the under-construction tunnel site in Sikkim’s Namchi district after it collapsed following a suspected methane gas explosion, leaving at least 20 workers dead and five others trapped for more than 24 hours, on Wednesday (July 22, 2026). | Photo Credit: PTI
The story so far: Toxic gases, generated by a sudden explosive release of suspected methane trapped or embedded in rocks on July 20, 2026, claimed the lives of 13 workers (till the time of reporting) in an under-construction Head Race Tunnel (HRT) of the NHPC’s 500 MW Teesta Stage VI Hydropower Project at Samardung in Sikkim’s Namchi district. Five others remained trapped about 1.5 km inside the tunnel, underlining the hazards of infrastructure development across the Himalayan landscape.
How did the tragedy happen?
The NHPC has said a thorough investigation will be conducted to ascertain the cause of the incident. The Sikkim government has also announced the constitution of a high-level committee for the same purpose. Preliminary reports indicate the formation of toxic gases in the HRT owing to the sudden release of suspected methane trapped in the rocks, resulting in an explosion and partial damage to the tunnel. This indicates that the workers hit such rocks while drilling or constructing the HRT, a critical component of a hydropower plant for transporting massive volumes of water from the primary intake at a reservoir to the power generation turbine.
Also read: Silkyara tunnel collapse | Trapped in the Himalayas
NHPC officials said that surveys for tunnel projects in India, especially in the fragile Himalayan belt, are conducted across planning, construction, and maintenance phases to ensure structural stability, worker safety, and environmental compliance. These typically involve comprehensive topographical, geotechnical, geophysical, hydrological, resistivity, and utility tests. However, no test can detect the presence of the colourless and odourless methane, an extremely flammable gas, which can explode after mixing with air in a specific ratio and encountering an ignition source, possibly sparks during drilling in the case of the Teesta-VI tunnel.
How is methane trapped in hilly terrains?
Methane deposits usually occur either as natural gas trapped in porous rock or localised gas pockets in young, fragile geological formations. These are frequently encountered in the Himalayan belt or other mountainous regions with active or historical coal-bearing strata, where ancient organic matter has decomposed over millions of years. Hilly depressions or valleys frequently trap moisture, creating oxygen-deprived (anaerobic) waterlogged soils where microscopic organisms digest organic matter and emit methane. Improperly managed or open waste dumps in hilly terrain also decompose in anaerobic layers, producing large amounts of landfill gas.
Moreover, hilly and mountainous regions are often located near fault lines or areas with underlying coal, gas, or geothermal reserves, with natural fissures allowing the migration of underground methane upwards. There are no coalfields in Sikkim, but the State is in the Rangit Tectonic Window zone, and Geological Survey of India studies have identified coal reserves of approximately 1.40 lakh tonnes in southern Sikkim, primarily the Namchi area where the NHPC tunnel incident occurred.
According to the State’s Mines and Geology Department, a regional-level coal exploration project commenced in the district in December 2025 under a Government of India programme. The coal in Namchi was analysed to contain 53.40% fixed carbon, 39.5% ash, 3.4% volatile matter, and 3.7% moisture.
Have other projects in Sikkim been similarly affected?
A young geological age, active tectonic instability, and steep, erosion-prone terrain make the Himalayas fragile. The mountains are constantly rising and shifting due to the collision of the Indian and Eurasian plates, making the region highly prone to earthquakes. Heavy blasting and tunnelling for highways, dams, and railways add to the geological instability, leading to frequent landslides and mudslides. Heavy tourism, unregulated urban expansion, poor waste management, and deforestation have compounded the problems.



