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Bulletin of the Seismological Society of America; June 2002; v. 92; no. 5; p. 1694-1707; DOI: 10.1785/0120010100
© 2002 Seismological Society of America
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Article

Late Holocene Earthquakes on the Aeropuerto Fault, Managua, Nicaragua

Hugh Cowan*, Carol Prentice, Daniela Pantosti, Paolo de Martini, Wilfried Strauch and Workshop Participants

Independent Consultant
Apartado 2561
Zona 9A, Panama City
Republic of Panama
(H.C.)
U.S. Geological Survey
345 Middlefield Road, MS 977
Menlo Park, California 94025
(C.P.)
Istituto Nazionale di Geofisica e Vulcanologia
Via di Vigna Murata, 605
00143 Rome
Italy
(D.P., P. di M.)
Instituto Nicaraguense de Estudios Territoriales
Apartado 2110
Managua, Nicaragua
(W.S.)

Manuscript received 15 January 2002.

Managua, capital of Nicaragua, is built on the shore of Lake Managua, within a densely faulted graben at a major discontinuity in the Central American volcanic chain. Shallow moderate earthquakes (Ms 6-6.2) ruptured faults with devastating effect at the heart of urban Managua in 1931 and 1972, and damaging earthquakes are cataloged in the earlier history of the surrounding region. The Aeropuerto fault is a major structure in the Managua Graben, but like other faults in this area its behavior is little understood. Paleoseismic investigations now suggest that the most recent large earthquake on this fault occurred sometime during the interval A.D. 1650-1810. An earlier earthquake on this fault occurred prior to A.D. 1390 and possibly around 2000 B.P.

On the basis of stratigraphic correlations we estimate the ages of two shorelines associated with former high stands of Lake Managua to be less than 6.4 ka and approximately 2 ka, respectively. Deformation of these abandoned shorelines adjacent to the Aeropuerto fault implies a vertical slip rate of 0.3 to 0.9 mm/yr. Strike-slip movement on this fault is also expected, but no direct measurement could be performed. By comparison with faults of similar geometry in the Managua area that ruptured in 1931 and 1972, we suspect a left-lateral component of horizontal slip that is higher than the vertical one but less than 5 mm/yr.

Additional data on slip rate and timing of paleoearthquakes are needed to better assess the Holocene behavior of the Managua faults and to investigate the influence of magmatic processes on the nature of faulting in the Managua Graben.




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J. Funk, P. Mann, K. McIntosh, and J. Stephens
Cenozoic tectonics of the Nicaraguan depression, Nicaragua, and Median Trough, El Salvador, based on seismic-reflection profiling and remote-sensing data
Geological Society of America Bulletin, November 1, 2009; 121(11-12): 1491 - 1521.
[Abstract] [Full Text] [PDF]




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