Title of article :
Up-dip partitioning of displacement components on the oblique-slip Clarence Fault, New Zealand
Author/Authors :
Nicol، نويسنده , , Andrew and Van Dissen، نويسنده , , Russell، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2002
Pages :
15
From page :
1521
To page :
1535
Abstract :
Active strike-slip faults in New Zealand occur within an obliquely-convergent plate boundary zone. Although the traces of these faults commonly delineate the base of mountain ranges, they do not always accommodate significant shortening at the free surface. Along the active trace of Clarence Fault in northeastern South Island, New Zealand, displaced landforms and slickenside striations indicate predominantly horizontal displacements at the ground surface, and a right-lateral slip rate of ca. 3.5–5 mm/year during the Holocene. The Inland Kaikoura mountain range occupies the hanging wall of the fault and rises steeply from the active trace to altitudes of ca. 3 km. The geomorphology of the range indicates active uplift and mountain building, which is interpreted to result, in part, from a vertical component of fault slip at depth. These data are consistent with the fault accommodating oblique-slip at depth aligned parallel to the plate-motion vector and compatible with regional geodetic data and earthquake focal-mechanisms. Oblique-slip on the Clarence Fault at depth is partitioned at the free surface into: (1) right-lateral displacement on the fault, and (2) hanging wall uplift produced by distributed displacement on small-scale faults parallel to the main fault. Decoupling of slip components reflects an up-dip transfer of fault throw to an off-fault zone of distributed uplift. Such zones are common in the hanging walls of thrusts and reverse faults, and support the idea that the dip of the oblique-slip Clarence Fault steepens towards the free surface.
Keywords :
transpression , Slip partitioning , Oblique-slip fault , New Zealand
Journal title :
Journal of Structural Geology
Serial Year :
2002
Journal title :
Journal of Structural Geology
Record number :
2225087
Link To Document :
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