Omphacite fabric variation in the Cabo Ortegal eclogite (NW Spain): Relationships with strain symmetry during high-pressure deformation

被引:69
作者
Abalos, B
机构
[1] Departamento de Geodinámica, Universidad del País Vasco, E-48080 Bilbao
关键词
D O I
10.1016/S0191-8141(97)00001-1
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Petrostructural study of Cabo Ortegal eclogite tectonites provides an insight into the relationships between omphacite lattice-preferred orientation and the fundamental deformation parameters, in particular strain symmetry. Microstructural evidence is consistent with a tectonic origin of eclogite fabrics by coeval pyroxene plastic deformation and recrystallization under eclogite-facies metamorphic conditions. Omphacite shape fabrics and garnet spatial distributions are anisotropic and representative of the fields of either apparent flattening or constriction. Omphacite lattice-preferred orientations are dominated by [010]-axis maxima normal to the foliation (S-type or flattening fabrics), by [001]-axis maxima parallel to the lineation (L-type or constriction) or correspond to other fabric patterns described in the literature. Omphacite crystallographic fabrics are consistently asymmetric with respect to the structural framework defined by foliation and lineation. This suggests that nan-coaxial deformation components (either simple or general shear) accompanied eclogite fabric development in addition to any flattening or constriction strain paths, and permit shear-sense determination These petrostructural features were acquired in the course of eo-Hercynian ductile deformation (probably during deep subduction) under 1.5 - 1.7 GPa confining pressure, temperatures above 600-700 degrees C, low differential stress (< 15-20 MPa) and slow strain rate (10(-12) - 10(-15) s(-1)). (C) 1997 Elsevier Science Ltd.
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页码:621 / 637
页数:17
相关论文
共 77 条
[41]   ELASTIC PROPERTIES OF ECLOGITE XENOLITHS FROM DIATREMES OF EAST COLORADO PLATEAU AND THEIR IMPLICATION TO UPPER MANTLE STRUCTURE [J].
KUMAZAWA, M ;
HELMSTAEDT, H ;
MASAKI, K .
JOURNAL OF GEOPHYSICAL RESEARCH, 1971, 76 (05) :1231-+
[42]  
LALLEMANT HGA, 1978, TECTONOPHYSICS, V48, P1, DOI DOI 10.1016/0040-1951(78)90083-5
[43]  
LALLEMANT HGA, 1970, GEOL SOC AM BULL, V81, P2203, DOI DOI 10.1130/0016-7606(1970)81[2203:SROOAM]2.0.CO
[44]  
2.
[45]   SIMULATION OF FABRIC DEVELOPMENT IN PLASTIC-DEFORMATION AND ITS APPLICATION TO QUARTZITE - MODEL [J].
LISTER, GS ;
PATERSON, MS ;
HOBBS, BE .
TECTONOPHYSICS, 1978, 45 (2-3) :107-158
[46]  
LORIMER GW, 1972, NATURE-PHYS SCI, V239, P108, DOI 10.1038/physci239108a0
[47]   DEVELOPMENT OF SHAPE AND LATTICE PREFERRED ORIENTATIONS - APPLICATION TO THE SEISMIC ANISOTROPY OF THE LOWER CRUST [J].
MAINPRICE, D ;
NICOLAS, A .
JOURNAL OF STRUCTURAL GEOLOGY, 1989, 11 (1-2) :175-189
[48]  
MANCKTELOW NS, 1990, STEREOPLOT COMPUTER
[49]   VORTICITY AND NON-COAXIALITY IN PROGRESSIVE DEFORMATIONS [J].
MEANS, WD ;
HOBBS, BE ;
LISTER, GS ;
WILLIAMS, PF .
JOURNAL OF STRUCTURAL GEOLOGY, 1980, 2 (03) :371-378
[50]  
Nicolas A., 1987, COMPOSITION STRUCTUR, V16, P111, DOI [10.1029/GD016p0111, DOI 10.1029/GD016P0111]