Hawaii Flash Floods: Hurricane Lala Sweeps Away Homes
Hawaii has been struck by flash floods and mudslides after category one Hurricane Lala skirted Big Island over the weekend, leaving one person dead and over 100 homes destroyed.

Stock photo for illustration only, not from the actual event
- Category one Hurricane Lala skirted Big Island over the weekend.
- Severe flash floods and mudslides left one person dead in Hawaii.
- Around 100 homes on Big Island were swept off their foundations.
- More than 200,000 households were left without electricity.
The state of Hawaii is facing a severe crisis after category one Hurricane Lala skirted past the Big Island over the weekend. The severe weather system unleashed torrential downpours and intense winds, triggering catastrophic flash floods and mudslides that have devastated multiple communities.
According to local officials, the heavy rains and powerful winds possessed enough force to sweep approximately 100 homes completely off their foundations on the Big Island. Furthermore, the extensive storm damage crippled local infrastructure, leaving more than 200,000 households without power.

Stock photo for illustration only, not from the actual event
The natural disaster has also resulted in human tragedy, with authorities confirming at least one fatality. Emergency services and response teams are currently working to assess the full extent of the devastation and provide aid to residents in the worst-hit areas.
While a category one hurricane represents the lowest tier on the Saffir-Simpson scale with winds between 74-95 mph, tropical systems often drop staggering amounts of rainfall. In mountainous island environments like Hawaii's Big Island, this immense precipitation routinely causes catastrophic flash flooding and deadly mudslides that far surpass wind damage threats.
Looking ahead, weather officials and emergency management agencies predict that the tropical storm will continue tracking toward the west over the next couple of days, prompting ongoing vigilance in surrounding regions.
Source: BBC Science & Environment
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