Microstructures and lattice fabrics in the Hilti mantle section (Oman Ophiolite): Evidence for shear localization and melt weakening in the crust-mantle transition zone?

被引:45
作者
Dijkstra, AH
Drury, MR
Frijhoff, RM
机构
[1] Univ Leicester, Dept Geol, Leicester LE1 7RH, Leics, England
[2] Univ Utrecht, Vening Meinesz Sch Geodynam, Utrecht, Netherlands
[3] Nederlandse Aardolie Maatschappij, Assen, Netherlands
关键词
Oman; ophiolite; Shear localization; Peridotite; lattice fabrics; microstructures; deformation mechanics;
D O I
10.1029/2001JB000458
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
[1] Experimental studies have shown that olivine aggregates with greater than or equal to4% melt are significantly weaker than melt-free aggregates. However, questions remain as to the importance of melt weakening in nature. In several studies, melt weakening has been invoked to explain patterns of mantle flow in the Oman Ophiolite. In this paper, we reinvestigate evidence for melt weakening in the Hilti mantle section using structural and microstructural methods. The average olivine grain size increases with depth below the crust-mantle boundary. This is related to a change from equigranular-to-porphyroclastic microstructures at shallow levels to coarse porphyroclastic microstructures at depth. A strong foliation and high degree of recrystallization in the upper part of the mantle section are interpreted as the strong imprint of localized deformation at stresses of similar to4-10 MPa. Lattice orientation data show that the high-strain peridotites have recorded top-to-the-west shear; reversed shear senses were found deeper in the section. Since there is petrographic evidence for melt in the high-strain zone, strain localization was probably caused by a melt-related weakening mechanism. High melt contents required for melt weakening suggest that melt accumulated just below the crust-mantle boundary. We conclude that melt weakening is probably related to enhancement of grain boundary rather than intragranular deformation processes. Effective viscosities <2 10(16) Pa.s may locally exist in the uppermost mantle beneath ridges if melt weakening occurs. Although our results agree with those of previous studies in the Hilti Massif, we conclude that both the previously published active flow model and a ridge compression model can account for them.
引用
收藏
页数:18
相关论文
共 84 条
[1]  
BAI Q, 1997, DEFORMATION ENHANCED, P40
[2]   MANTLE CRUST TRANSITION ZONE AND ORIGIN OF WEHRLITIC MAGMAS - EVIDENCE FROM THE OMAN OPHIOLITE [J].
BENN, K ;
NICOLAS, A ;
REUBER, I .
TECTONOPHYSICS, 1988, 151 (1-4) :75-85
[3]   Plate tectonic reconstructions of the Juan Fernandez microplate: Transformation from internal shear to rigid rotation [J].
Bird, RT ;
Naar, DF ;
Larson, RL ;
Searle, RC ;
Scotese, CR .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1998, 103 (B4) :7049-7067
[4]   NATURE OF THE MOHO TRANSITION ZONE IN THE OMAN OPHIOLITE [J].
BOUDIER, F ;
NICOLAS, A .
JOURNAL OF PETROLOGY, 1995, 36 (03) :777-796
[5]   EPR microplates, a model for the Oman ophiolite [J].
Boudier, F ;
Nicolas, A ;
Ildefonse, B ;
Jousselin, D .
TERRA NOVA, 1997, 9 (02) :79-82
[6]   SHEAR ZONES, THRUSTS AND RELATED MAGMATISM IN THE OMAN OPHIOLITE - INITIATION OF THRUSTING ON AN OCEANIC RIDGE [J].
BOUDIER, F ;
CEULENEER, G ;
NICOLAS, A .
TECTONOPHYSICS, 1988, 151 (1-4) :275-296
[7]   MANTLE FLOW PATTERNS AT AN OCEANIC SPREADING CENTER - THE OMAN PERIDOTITES RECORD [J].
CEULENEER, G ;
NICOLAS, A ;
BOUDIER, F .
TECTONOPHYSICS, 1988, 151 (1-4) :1-26
[8]  
CEULENEER G, 1992, GEOPH MONOG SERIES, V71, P123
[9]   Constraints on melt in the lower crust and Moho at the East Pacific Rise, 9°48′N, using seafloor compliance measurements [J].
Crawford, WC ;
Webb, SC ;
Hildebrand, JA .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1999, 104 (B2) :2923-2939
[10]   Influence of deformation on melt topology in peridotites [J].
Daines, MJ ;
Kohlstedt, DL .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1997, 102 (B5) :10257-10271