The Indo-Australian plate is found south of the Eurasian and the Philippine Seaplates. It is generally oceanic, being submerged by Indian and Pacific Oceans, but it holds two gigantic land masses – the island continent of Australia and Indian subcontinent. Recent researches, however, show that these two land masses are moving independently of each other, thus, may actually be parts of separate plates.
The Philippine Sea plate is found east of the Eurasian plate. It is the bedrock of the major islands of the Philippines, Indonesia, Taiwan, and the Marianas.
Formation of Island Arcs
Below these plates is the mantle, a very hot section of the Earth where rocks are at the point of or is actually melting. These hot and molten rocks stream steadily making the plates above it move about. The plates move or rotate almost unnoticeably and at times collide against each other. Upon collision, the heavier plate slide beneath the lighter plate and is dipped against the hot mantle of the earth. This event is called subduction.
The subducting plate carries with it some crust sediments down into the subduction zones. The heat of the mantle melts the edges of the down-turned plate and the sediments it carried. The molten plate is called magma.
The magma, being light, is pushed up against the crust. As it tries to escape to the surface, it sometimes creates violent explosions. As it progressed, belt of volcanoes were formed on above the dominant plate. When the subduction occurred underwater, like when an oceanic plate descends beneath another oceanic plate, the belt of volcanoes formed results in island arcs. The Philippines is an assembly of several island arcs.
The Philippine Island Arc System
The territory of the Philippines is composed of many island arcs formed by several incidents of subduction. The island arcs are collectively called Philippinesisland arc system. Each major Philippine island had a complex natural history.
With the exception of Palawan, Mindoro and Romblon, most of the Philippine islands are considered to have been parts of island arcs formed at the southern edge of the Philippine Sea plate millions of years ago. As part of the Philippine Sea plate, the islands moved northward as the plate rotated clockwise. These roving islands, known as the Philippine Mobile Belt, eventually collided with the Sundaland. The collision resulted, among others, in a series of subductions around Philippine archipelago.
On the western border, are the subductions along trenches of Manila, Negros, Sulu and Celebes where the plates of the South China Sea, Sulu Sea and Celebes Sea are subducting beneath the Philippine Sea plate. These eastward subductions resulted in the emergence of the island arcs of Luzon, Negros, Sulu-Zamboanga and Cotabato.
On the eastern frontier, are the subductions along East Luzon trough and Philippine trench. These westward subductions resulted in the formations of the eastern island arcs of Northern Sierra Madre, Southern Sierra Madre-Polillo-Catanduanes and the East Philippine arc. In time, some of these arcs merged together forming big islands like Luzon and Mindanao.
The Luzon arc is a complex belt of volcanoes extending from the CoastalRange of southeastern Taiwan through the volcanic islands north of Luzon, the Luzon Central Cordillera, and the Western Luzon arc, ending at Marinduque Island. The arc has been active since the Oligocene period to the present.
The Negros arc consists of two overlapping arcs of different ages. The combined arc system extends 400 km and includes eastern Panay. The arc system is terminated against the Philippine fault in the north and abuts the Sulu-Zamboanga arc to the south. Cretaceous basement includes marine sedimentary rocks and pillow basalts, exposed in southeast Negros and serpentinized ultramafic rocks in northeastern Masbate. In the older western arc, Eocene to Oligocene andesitic to dacitic volcanic and clastic rocks host a Miocene dacitic diatreme complex at Bulawan in southwest Negros and middle Miocene dioritic intrusions in northeast Masbate. In the younger eastern arc, middle Miocene to Pliocene andesite flow breccias, volcaniclastic rocks and conglomerates are overlain by late Pliocene andesitic volcanic rocks and Quaternary andesite to basalt stratovolcanoes. The two arcs are the product of subduction beneath Negros but the polarity of the older arc is not clear; it has been interpreted to be situated above a west-or east-dipping subduction zone.
The younger arc is probably the product of east-dipping subduction at theNegros trench, which currently appears to be inactive or almost so and associated with a slab that extends to a depth of about 100 km.
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