Glacier Calving
Ice cliff periodically fractures and drops chunks into the sea below.
Watch for splash particles and expanding ripple rings on impact.
Glacier calving is the process by which blocks of ice break off (calve) from the terminus of a glacier or ice shelf, generating displacement waves and sometimes localized tsunamis when large volumes hit the water. Because glacial ice is slightly less dense than seawater (roughly 900 kg/m³ versus 1025 kg/m³), calved blocks float as icebergs while the impact and subsequent buoyant rebound send powerful ripples and splash outward. Calving accounts for a substantial share of mass loss from marine-terminating glaciers and ice shelves, and is a major contributor to global sea level rise as polar ice sheets thin. The cracking and fracturing of ice under stress often produces loud low-frequency booms and cracks nicknamed "white thunder" by people living near glaciers, audible seconds before the visible collapse due to the delay between fracture and sound travel.
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