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  • Rotation of irregular staurolite (cas 12182-56-8) porphyroblasts in a simple shear dominated shear zone controlled by initial growth orientation and aspect ratio
  • Add time:08/04/2019         Source:sciencedirect.com

    In a mica schist unit of the Bossòst dome (Central Pyrenees, Spain) idioblastic interkinematic staurolite (cas 12182-56-8) porphyroblasts with straight inclusion trails (Si) have rotated with respect to the main schistosity in the same sense by different amounts. Orientation data of 600 porphyroblasts were obtained from planes parallel to stretching lineation (xz), perpendicular to lineation (yz) and parallel to schistosity (xy). Interpenetrating growth twinning resulted in highly irregular shapes with aspect ratios (RA) ranging from 1 to 5. Initial random porphyroblast growth is inferred from variable length axis (LA)–Si angles. Maximum rotation of 120° is observed in blasts with Si oriented orthogonal to the mineral long axis, implying a shear strain of γ = 4.3 in simple shear flow. Absence of back rotation is indicative of dominant simple shear flow (WK ≥ 0.8–0.9). Elongated porphyroblasts (RA > 3) with Si parallel to LA have rotated very little, because they were already in a stable position when shearing commenced. Rotation of staurolite porphyroblasts was possible because decoupling between blasts and matrix was weak and no significant strain partitioning had developed. The wide variety of shapes with different aspect ratios formed by simple blasts and interpenetrating growth twins of staurolite are potential shear strain and vorticity gauges.

    ► In simple shear dominated flow porphyroblasts can rotate relative to one another. ► Porphyroblast rotation is dependent on aspect ratio and initial orientation. ► Rotated irregularly shaped staurolite can serve as shear strain and vorticity gauges.

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    Prev:Metamorphic P–T evolution of garnet-staurolite (cas 12182-56-8)-biotite pelitic schist and amphibolite from Keffi, north-central Nigeria: Geothermobarometry, mineral equilibrium modeling and P-T path
    Next: Lithium isotope fractionation between Li-bearing staurolite (cas 12182-56-8), Li-mica and aqueous fluids: An experimental study)

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