Pakistan says potential cyclone in Arabian Sea may affect coastal areas this month

Children play, with the rainbow and rain clouds in the background, following reports from the Pakistan Meteorological Department of a potential cyclonic storm that could develop over the Arabian Sea, at Clifton Beach in Karachi, Pakistan on August 30, 2024. (REUTERS/File)
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  • The weather system is currently positioned near India’s Lakshadweep Valley and expected to move northwestward
  • Early forecasts suggest the possibility of landfall along the Pakistani coast, depending on its trajectory and intensity

ISLAMABAD: Pakistan’s National Emergencies Operation Center (NEOC) said on Monday a low-pressure system was developing in the Arabian Sea that could transform into a cyclone and affect coastal areas of the country later this month.

The system is currently positioned near India’s Lakshadweep Valley and is expected to move northwestward, according to an early advisory issued by the NEOC.

Early forecasts suggest the possibility of landfall along the Pakistani coastline in the third week of October, depending on its trajectory and intensity.

“There is a chance that this low-pressure system may evolve into a full-fledged tropical cyclone, with the potential to affect the coastal areas of Pakistan,” the NEOC said in a statement.

“Citizens and stakeholders, particularly those residing in coastal regions, are advised to stay informed of official updates and adviseries as the situation evolves.”

The NEOC said the National Disaster Management Authority (NDMA), in collaboration with relevant departments, was continuously monitoring the situation to provide timely updates and issue further adviseries.

In August, a cyclonic storm, ASNA, in the Arabian Sea caused heavy rains in coastal areas in Pakistan’s southern Sindh and southwestern Balochistan provinces.

Pakistan has seen erratic changes in its weather patterns which have led to frequent heat waves, untimely rains, cyclones and droughts in recent years. Scientists have blamed the events on human-driven climate change.