EarthMapped Convergent boundaries
World map of convergent plate boundariesAFRICANANTARCTICSOMALIINDIANAUSTRALIANEURASIANNORTH AMERICANSOUTH AMERICANNAZCAPACIFICARABIANSUNDACARIBBEANCOCOSOKHOTSKJUAN DE FUCAPHILIPPINE SEAAMURSCOTIAYANGTZE

Convergent Boundary Map

A convergent boundary is where two tectonic plates move toward each other, so one sinks under the other or both crumple into mountains.

Data source: PB2002 plate model, Bird (2003), converted by Hugo Ahlenius, Nordpil, ODC-By 1.0. Download: CSV .

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What is a convergent boundary?

At a convergent boundary Convergent boundary. Plates move toward each other and crust is destroyed as one plate dives under another. Source two plates move toward each other. Because Earth has not grown in size for hundreds of millions of years, USGS reasons, crust has to be destroyed at these boundaries about as fast as it is made at divergent ones. What happens depends on the kind of crust on each side.

Where ocean floor meets a continent, the denser oceanic plate sinks under it at a subduction zone Subduction zone. Where one plate sinks under another and back into the mantle, usually marked by a deep ocean trench. Source , leaving a trench Ocean trench. A long, narrow trough in the sea floor, 8 to 10 km deep, where one plate bends down under another. Source 8 to 10 km deep. The Nazca Plate sinking beneath South America at the Peru-Chile Trench built the Andes and their volcanoes. Where two ocean plates meet, one sinks under the other: the Pacific Plate meets the Philippine Sea Plate at the Mariana Trench, whose Challenger Deep reaches nearly 11,000 m, and the melting slab feeds a curved chain of volcanic islands, an island arc.

Where two continents meet, neither sinks easily. India ran into Asia about 50 million years ago and the crust piled up into the Himalayas and the Tibetan Plateau, which averages about 4,600 m high. PB2002 splits this type into subduction zones, oceanic convergent boundaries and continental convergent boundaries. See the subduction zones map for the first of these.

How the three types compare

The three plate boundary types, PB2002 totals
TypePlates moveCrustLength (km)Mean speed (mm/yr)
Divergent Apart Made 94,840 38.2
Convergent Together Destroyed or crumpled 91,765 44.7
Transform Side by side Neither made nor destroyed 73,959 34.9

Data source: PB2002 plate model, Bird (2003), converted by Hugo Ahlenius, Nordpil, ODC-By 1.0.

Key facts

  1. PB2002 maps 91,765 km of convergent boundary, 35% of all plate boundaries. Bird (2003)
  2. Subduction zones (SUB) make up 51,309 km, with a mean speed of 62.3 mm/yr.
  3. Oceanic convergent boundarys (OCB) make up 17,447 km, with a mean speed of 17.6 mm/yr.
  4. Continental convergent boundarys (CCB) make up 23,009 km, with a mean speed of 26.2 mm/yr.
  5. 99 pairs of plates meet along a convergent boundary. The longest shared stretch is between the North American and Pacific plates: 4,746 km.
  6. The fastest convergent step is between the Tonga and Pacific plates near 15°S, 173°W: 263.1 mm/yr (26.3 cm/yr).

Plate pairs on convergent boundaries

The plates that share the most convergent boundary, by length. Speed is the relative velocity across the boundary Relative plate velocity. How fast one plate moves compared with its neighbor across a boundary, in millimeters per year. Source , averaged over its length. Plate names link to their pages where we have one.

Top plate pairs by convergent boundary length
PlatesLength (km)Mean speed (mm/yr)Classes
North American and Pacific 4,746 62.3 SUB, CCB
Eurasian and Indian 4,324 47.0 CCB
Nazca and South American 4,297 77.7 SUB
Eurasian and African 3,317 6.2 OCB, CCB, SUB
Sunda and Australian 3,294 57.8 SUB
Pacific and Okhotsk 3,016 87.4 SUB
Arabian and Eurasian 2,897 35.3 OCB, CCB
Pacific and Australian 2,808 59.9 OCB, SUB, CCB
Indian and Australian 2,310 5.8 OCB
Kermadec and Pacific 2,306 78.4 SUB
Okhotsk and Amur 2,304 8.1 CCB, OCB
Philippine Sea and Sunda 2,244 100.9 SUB

Data source: PB2002 plate model, Bird (2003), converted by Hugo Ahlenius, Nordpil, ODC-By 1.0.

Longest convergent segments

A segment here is one unbroken run of the same boundary class between the same two plates. The location is the middle of the run.

Longest continuous convergent segments
PlatesClassLength (km)Mean speed (mm/yr)Near
North American and Pacific SUB 3,389 65.9 52°N, 167°W
Nazca and South American SUB 2,695 80.0 35°S, 73°W
Eurasian and Indian CCB 2,356 48.8 27°N, 86°E
Indian and Australian OCB 2,310 5.8 4°S, 86°E
Kermadec and Pacific SUB 2,306 78.4 33°S, 178°W
Okhotsk and Pacific SUB 2,223 85.7 47°N, 155°E
Sunda and Australian SUB 1,856 63.1 11°S, 112°E
Mariana and Pacific SUB 1,822 62.7 18°N, 148°E
Cocos and North American SUB 1,710 61.9 15°N, 97°W
African and Somali OCB 1,684 2.2 40°S, 36°E

Data source: PB2002 plate model, Bird (2003), converted by Hugo Ahlenius, Nordpil, ODC-By 1.0.

Speeds range from 0.4 mm/yr to 263.1 mm/yr along this type. For every boundary in one view see the plate boundaries map, compare with the other types: divergent and transform , or see how fast plates move on the plate motion map. All plates are on the tectonic plates map.

Print this map Plate boundaries worksheet. Label each boundary type, with an answer key

Glossary

Convergent boundary
Plates move toward each other and crust is destroyed as one plate dives under another. Source
Subduction zone
Where one plate sinks under another and back into the mantle, usually marked by a deep ocean trench. Source
Ocean trench
A long, narrow trough in the sea floor, 8 to 10 km deep, where one plate bends down under another. Source
Relative plate velocity
How fast one plate moves compared with its neighbor across a boundary, in millimeters per year. Source

All terms in the glossary

Convergent boundary FAQ

What happens at a convergent boundary?
Two plates move toward each other. Where at least one is ocean floor, the heavier plate usually sinks into the mantle at a subduction zone and a deep trench forms. Where two continents meet, neither sinks easily and the crust piles up into mountains.
What are the three kinds of convergent boundary?
Oceanic-continental, such as the Nazca Plate sinking under South America to build the Andes; oceanic-oceanic, such as the Mariana Trench and its island arc; and continental-continental, such as India pushing into Asia to raise the Himalayas.
What landforms form at convergent boundaries?
Deep ocean trenches, volcanic mountain ranges such as the Andes and the Cascades, chains of volcanic islands called island arcs, and high mountain belts such as the Himalayas.
Why are convergent boundaries linked to big earthquakes?
Where one plate grinds down under another, stress builds and is released in earthquakes, some very deep. USGS cites a magnitude 8.3 earthquake in Bolivia in 1994 at a depth of 636 km, on the plate sinking under South America.
How long are convergent boundaries in total?
About 91,765 km in PB2002, 35% of all plate boundaries, of which 51,309 km are subduction zones.

Sources: USGS, Understanding plate motions; USGS, The Himalayas; Bird (2003) for all lengths and speeds.