Effects of 2010 Hurricane Earl amidst geologic evidence for greater overwash at Anegada, British Virgin Islands

Author:

Atwater B. F.,Fuentes Z.,Halley R. B.,Ten Brink U. S.,Tuttle M. P.

Abstract

Abstract. A post-hurricane survey of a Caribbean island affords comparisons with geologic evidence for greater overwash at the same place. This comparison, though of limited application to other places, helps calibrate coastal geology for assessment of earthquake and tsunami potential along the Antilles Subduction Zone. The surveyed island, Anegada, is 120 km south of the Puerto Rico Trench and is near the paths of hurricanes Donna (1960) and Earl (2010), which were at or near category 4 when at closest approach. The survey focused on Earl's geologic effects, related them to the surge from Hurricane Donna, and compared them further with erosional and depositional signs of southward overwash from the Atlantic Ocean that dates to 1200–1450 AD and to 1650–1800 AD. The main finding is that the geologic effects of these earlier events dwarf those of the recent hurricanes. Hurricane Earl's geologic effects at Anegada, observed mainly in 2011, were limited to wrack deposition along many of the island's shores and salt ponds, accretion of small washover (spillover) fans on the south shore, and the suspension and deposition of microbial material from interior salt ponds. Earl's most widespread deposit at Anegada, the microbial detritus, was abundantly juxtaposed with evidence for catastrophic overwash in prior centuries. The microbial detritus formed an extensive coating up to 2 cm thick that extended into breaches in beach-ridge plains of the island's north shore, onto playas that are underlain by a sand-and-shell sheet that extends as much as 1.5 km southward from the north shore, and among southward-strewn limestone boulders pendant to outcrops as much as 1 km inland. Earl's spillover fans also contrast with a sand-and-shell sheet, which was dated previously to 1650–1800, by being limited to the island's south shore and by extending inland a few tens of meters at most. These findings complement those reported in this issue by Michaela Spiske and Robert Halley (Spiske and Halley, 2014), who studied a coral-rubble ridge that lines part of Anegada's north shore. Spiske and Halley attribute the ridge to storms that were larger than Earl. But they contrast the ridge with coral boulders that were scattered hundreds of meters inland by overwash in 1200–1450.

Publisher

Copernicus GmbH

Reference93 articles.

1. Atwater, B. F., Musumi-Rokkaku, S., Satake, K., Tsuji, Y., Ueda, K., and Yamaguchi, D. K.: The orphan tsunami of 1700; Japanese clues to a parent earthquake in North America, U.S. Geological Survey Professional Paper 1707, 133 pp., available at: http://pubs.usgs.gov/pp/pp1707/, last access: 15 February 2014, 2005.

2. Atwater, B. F., ten Brink, U. S., Feuillet, N., Fuentes Figueroa, Z., Halley, R. B., Tuttle, M. P., Wei, Y., and Weil Accardo, J.: Geologic evidence for a medieval tsunami with an eastern source along the Puerto Rico Trench, 2012 Fall Meeting, American Geophysical Union, San Francisco, USA, 3–7 December 2012, Abstract T41A-2566, 2012a.

3. Atwater, B. F., ten Brink, U. S., Buckley, M., Halley, R. B., Jaffe, B. E., López-Venegas, A. M., Reinhardt, E. G., Tuttle, M. P., Watt, S., and Wei, Y.: Geomorphic and stratigraphic evidence for an unusual tsunami or storm a few centuries ago at Anegada, British Virgin Islands, Nat. Hazards, 63, 51–84, https://doi.org/10.1007/s11069-010-9622-6, 2012b.

4. Atwater, B. F., Cisternas, M., Yulianto, E., Prendergast, A. L., Jankaew, K., Eipert, A. A., Fernando, W. I. S., Tejakusuma, I., Schiappacasse, L., and Sawai, Y.: The 1960 tsunami on beach-ridge plains near Maullín, Chile: landward descent, renewed breaches, aggraded fans, multiple predecessors, Andean Geol., 40, 393–418, https://doi.org/10.5027/andgeoV40n3-a01, 2013.

5. Ball, M. M., Shinn, E. A., and Stockman, K. W.: The geologic effects of Hurricane Donna in south Florida, J. Geol., 75, 583–597, 1967.

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