EarthMapped

Nazca Plate Map

The Nazca Plate in yellow, its neighbors in green, and its edges colored by boundary type. Tap any plate for its name and a link to its page.

Nazca Plate

Globe centered on the Nazca Plate with its plate boundariesNAZCACOCOS
  • Divergent (spreading ridge, rift)
  • Convergent (subduction, collision)
  • Transform (sliding past)
Layers
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Plate data: Bird (2003), PB2002, converted by Hugo Ahlenius, Nordpil (ODC-By 1.0). Land: Natural Earth (India POV).

The Nazca Plate is an oceanic plate in the southeast Pacific, off the west coast of South America. Its eastern edge is the Peru-Chile trench, where it sinks under the South American Plate. USGS notes that the plate as a whole sinks smoothly, but the deepest part breaks into pieces that stay locked for long periods and then slip in large earthquakes.

Its western edge is the East Pacific Rise, a spreading ridge. Near Easter Island, about 3,400 km west of Chile, the East Pacific Rise has the fastest spreading rate USGS lists: more than 15 cm per year. PB2002 places Easter Island and the Galapagos Islands on the Nazca Plate.1 USGS adds that Easter Island, famous for stone monoliths carved by ancient Polynesians out of volcanic rock, is moving east toward South America at the fastest seafloor spreading rate known in the world (USGS).

The ridge on its western edge is not a single clean line. Bird (2003) adds three microplates along the East Pacific Rise. The Easter Plate, about 550 by 410 km, lies in a fork of the rise between 22 and 27 degrees south. It was named for Easter Island but does not include it; Bird notes that the island now sits on the Nazca Plate. The Juan Fernandez Plate, about 410 by 270 km, lies in another fork between 32 and 35 degrees south, named for islands 2,800 km to the east. At the northern corner, Lonsdale (1988) found a microplate about 120 km wide where a simple triple junction of the Pacific, Cocos and Nazca Plates had been expected, and named it Galapagos after the nearest land.

Bird describes these microplates as plates of 100 to 500 km that appear in the middle of an ocean spreading system and rotate rapidly relative to their neighbors (Bird 2003).

Nazca Plate in numbers

Measured from its PB2002 outline, the Nazca Plate covers about 16.1 million km², or 3.2% of the Earth's surface. That makes it number 9 by area of the 52 plates in the model. It spans from 46°S to 7°N and from 114°W to 71°W.

Its edge is about 20,154 km long, mostly divergent: 37.8%divergent Divergent boundary. Plates pull away from each other and new crust forms between them. Source (7,611 km) , 35.7%convergent Convergent boundary. Plates move toward each other and crust is destroyed as one plate dives under another. Source (7,205 km) and 26.5%transform Transform boundary. Plates slide horizontally past each other. Crust is neither made nor destroyed. Source (5,338 km) .

Nazca Plate fact table

Nazca Plate at a glance, computed from PB2002
MeasureValue
Area 16.1 million km²
Share of Earth's surface 3.2%
Rank by area 9 of 52
Size group minor
Neighboring plates 10
Boundary length 20,154 km
divergent boundary 7,611 km (37.8%)
convergent boundary 7,205 km (35.7%)
transform boundary 5,338 km (26.5%)
Mean relative speed 79.2 mm/yr (7.9 cm/yr)
Fastest against Pacific

Key facts

  1. The Nazca Plate covers 16.1 million km², number 9 of 52 PB2002 plates by area. Bird (2003)
  2. It is a minor plate in our size split. See how many tectonic plates there are.
  3. It borders 10 plates. The longest shared edge is with the Pacific Plate, about 4,433 km.
  4. Its 20,154 km edge is mostly divergent (37.8%).
  5. Along its boundaries it moves a mean 7.9 cm/yr relative to its neighbors, fastest against the Pacific Plate. Bird (2003)

Neighboring plates Neighbors. Plates that share a boundary with this plate. Most plate movement happens along these narrow zones between plates. Source

The Nazca Plate shares a boundary with 10 plates in PB2002, longest shared edge first. The longest, about 4,433 km, is with the Pacific Plate; the shortest, about 282 km, is with the Galapagos Plate.

PlateShared edgeBoundary type
Pacific Plate 4,433 km divergent
South American Plate 4,297 km convergent
Antarctic Plate 3,956 km mixed, mostly transform
Cocos Plate 3,033 km mixed, mostly divergent
North Andes Plate 1,329 km convergent
Altiplano Plate 901 km convergent
Easter Plate 860 km mixed, mostly divergent
Juan Fernandez Plate 551 km mixed, mostly convergent
Panama Plate 512 km mixed, mostly transform
Galapagos Plate 282 km mixed, mostly divergent

Sources: USGS, This Dynamic Earth: Understanding plate motions ; USGS, This Dynamic Earth: Easter Island monolith ; Bird (2003), An updated digital model of plate boundaries . Areas, lengths and neighbors are computed from PB2002 (Bird 2003).

Glossary

Neighbors
Plates that share a boundary with this plate. Most plate movement happens along these narrow zones between plates. Source
Divergent boundary
Plates pull away from each other and new crust forms between them. Source
Convergent boundary
Plates move toward each other and crust is destroyed as one plate dives under another. Source
Transform boundary
Plates slide horizontally past each other. Crust is neither made nor destroyed. Source

All terms in the glossary

Notes

  1. Placed by point-in-polygon test on the PB2002 plate outlines (Bird 2003). USGS and Bird both place Easter Island on the Nazca Plate; neither states the plate of the Galapagos Islands.

Nazca Plate FAQ

How big is the Nazca Plate?
About 16.1 million km², or 3.2% of the Earth's surface, measured from its PB2002 outline. It ranks 9 of 52 plates by area.
Which plates border the Nazca Plate?
10 plates: Pacific Plate, South American Plate, Antarctic Plate, Cocos Plate, North Andes Plate, Altiplano Plate, Easter Plate, Juan Fernandez Plate, Panama Plate and Galapagos Plate.
What kind of plate boundaries does the Nazca Plate have?
Mostly divergent boundaries. 37.8% divergent, 35.7% convergent, 26.5% transform, of 20,154 km in total.
How fast does the Nazca Plate move?
Relative to its neighbors, a mean 79.2 mm/yr (7.9 cm/yr) along its boundaries in PB2002. The fastest boundary is with the Pacific Plate.

Computed from PB2002: Bird (2003).