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大地构造——Gregory A.DevisDD- 6-8 Subduction-IIIb
Gregory Davis Dizhi Daxue 6/8/2011
SUBDUCTION
EROSION …..
Why do some oceanic subduction
zones NOT have accretionary wedges?
• Climate factors — too little rainfall in
coastal areas to make much erosion (N.
Chile, South American Andes - next slide)
• For some island arcs, islands too small to
contribute much sediment to their trenches
• In most cases, there are no accretionary
wedges because the inner wall of the
trench is being eroded tectonically, not
being the site of sediment offscraping.
• This process is called subduction erosion.
In the two maps to the left,
note the correlation between
rainfall and trench sediment
thickness
As the oceanic plate approaches the
trench during subduction, it
bends elastically and develops
normal faults on the stretched ocean side
of the trench. The resulting horst and
graben fault structure is subducted along
with any sediments that fill the graben.
As the oceanic plate approaches the trench during
subduction, it bends elastically and develops normal
faults on the stretched ocean side of the trench. The
resulting horst and graben fault structure is subducted
along with any sediments that fill the graben.
N. Chile — little trench sediments; no accretionary wedge;
crystalline bedrock (some of it Precambrian) near the trench
From the Late Jurassic to the Early
Tertiary the Andean volcanic front
has shifted eastward due to subduction
erosion of the continental margin.
IZU-BONIN ARC
MARIANA ARC
MARIANA
TRENCH
seamounts
6-0
30-17 Ma
49-40 Ma
MARIANA ARC AND TRENCH
— No Accretionary Wedge
Mariana forearc
Mariana
volcanic
arc
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