Plagioclase preferred orientation and induced seismic anisotropy in mafic igneous rocks

被引:35
|
作者
Ji, Shaocheng [1 ]
Shao, Tongbin [1 ]
Salisbury, Matthew H. [2 ]
Sun, Shengsi [3 ]
Michibayashi, Katsuyoshi [4 ]
Zhao, Weihua [5 ]
Long, Changxing [5 ]
Liang, Fenghua [6 ]
Satsukawa, Takako [7 ]
机构
[1] Ecole Polytech, Dept Genies Civil Geol & Mines, Montreal, PQ H3C 3A7, Canada
[2] Geol Survey Canada Atlantic, Bedford Inst Oceanog, Halifax, NS, Canada
[3] NW Univ Xian, Dept Geol, State Key Lab Continental Dynam, Xian 710069, Shangxi, Peoples R China
[4] Shizuoka Univ, Fac Sci, Dept Geosci, Shizuoka 4228017, Japan
[5] Chinese Acad Geol Sci, Inst Geomech, Beijing, Peoples R China
[6] Chinese Acad Geol Sci, Inst Geol, State Key Lab Continental Tecton & Dynam, Beijing, Peoples R China
[7] Macquarie Univ, Dept Earth & Planetary Sci, ARC Ctr Excellence Core Crust Fluid Syst CCFS & G, Sydney, NSW 2109, Australia
基金
加拿大自然科学与工程研究理事会;
关键词
mafic intrusions; plagioclase; seismic wave velocities; anisotropy; fabrics; Earth's crust; SOUTHWESTERN GRENVILLE PROVINCE; S-WAVE VELOCITIES; SHEAR ZONE; P-WAVE; CONTINENTAL-CRUST; PLASTIC-DEFORMATION; COMPRESSIONAL WAVES; NEUTRON-DIFFRACTION; FABRIC DEVELOPMENT; BUSHVELD COMPLEX;
D O I
10.1002/2014JB011352
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
Fractional crystallization and crystal segregation controlled by settling or floating of minerals during the cooling of magma can lead to layered structures in mafic and ultramafic intrusions in continental and oceanic settings in the lower crust. Thus, the seismic properties and fabrics of layered intrusions must be calibrated to gain insight into the origin of seismic reflections and anisotropy in the deep crust. To this end, we have measured P and S wave velocities and anisotropy in 17 plagioclase-rich mafic igneous rocks such as anorthosite and gabbro at hydrostatic pressures up to 650MPa. Anorthosites and gabbroic anorthosites containing >80vol% plagioclase and gabbros consisting of nearly equal modal contents of plagioclase and pyroxene display distinctive seismic anisotropy patterns: V-p(Z)/V-p(Y)1 and V-p(Z)/V-p(X)1 for anorthosites while 0.8<V-p(Z)/V-p(Y)1 and 0.8<V-p(Z)/V-p(X)1 for gabbros. Amphibolites lie in the same domain as gabbros, but show a significantly stronger tendency of V-p(X)>V-p(Y) than the gabbros. Laminated anorthosites with V-p(X)approximate to V-p(Y)<<V-p(Z) display a strong crystal preferred orientation (CPO) of plagioclase whose (010) planes and [100] and [001] directions parallel to the foliation. For the gabbros and amphibolites characterized by V-p(X)approximate to V-p(Y)>V-p(Z) and V-p(X)>V-p(Y)>V-p(Z), respectively, pyroxene and amphibole play a dominant role over plagioclase in the formation of seismic anisotropy. The Poisson's ratio calculated using the average P and S wave velocities from the three principal propagation-polarization directions (X, Y, and Z) of a highly anisotropic anorthosite cannot represent the value of a true isotropic equivalent. The CPO-induced anisotropy enhances and decreases the foliation-normal incidence reflectivity at gabbro-peridotite and anorthosite-peridotite interfaces, respectively.
引用
收藏
页码:8064 / 8088
页数:25
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