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Predicted velocity and density structure of the exhuming Papua New Guinea ultrahigh‐pressure terrane

机译:巴布亚新几内亚超高压地层的预测速度和密度结构

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New electron backscatter diffraction measurements show that the Papua New Guinea (PNG) ultrahigh‐pressure (UHP) terrane is dominated by rocks with weakly oriented quartz and feldspar and less abundant strongly oriented hornblende, clinopyroxene, and mica. Velocities measured at high pressures (600 MPa) show that VP is 5.8–6.3 km/s for gneiss samples, 6.5–7.7 km/s for amphibolite, and 7.7–8.2 km/s for eclogite and VS is 3.4–3.9 km/s for gneiss, 4.0–4.4 km/s for amphibolite, and 4.5–4.6 km/s for eclogite. Velocities and anisotropies calculated from mineral crystal preferred orientations (CPOs) are equivalent to within 5% of the measured values. The highest seismic anisotropy for the PNG terrane is in amphibolite at 8% and 7% for VP and VS, respectively. Calculations of seismic velocities at depth based on predicted mineral assemblages indicate that the exhuming UHP terrane is of dominantly mafic composition below ~20 km depth. Anisotropy in the PNG terrane is expected to be quite low and is controlled by the orientation of the foliation. If observable, changes in anisotropy across the exhuming body may be used to differentiate among the different proposed mechanisms of UHP exhumation.
机译:新的电子背散射衍射测量结果表明,巴布亚新几内亚(PNG)超高压(UHP)地层以石英和长石取向较弱,角闪石,斜辉石和云母含量较低的强取向岩为主。在高压(600 MPa)下测得的速度显示,片麻岩样品的VP为5.8–6.3 km / s,角闪石样品的VP为6.5–7.7 km / s,榴辉岩的VP为7.7–8.2 km / s,VS为3.4–3.9 km / s对于片麻岩,角闪石为4.0–4.4 km / s,对榴辉岩为4.5–4.6 km / s。由矿物晶体的择优取向(CPO)计算出的速度和各向异性等于测量值的5%之内。 PNG地层的最高地震各向异性在角闪石中,VP和VS分别为8%和7%。根据预测的矿物组合计算出的深部地震速度表明,在〜20 km深度以下,挖掘出的UHP地层以镁铁质为主。预计PNG地形中的各向异性非常小,并且受叶向的控制。如果可以观察到,可以通过整个掘尸体的各向异性变化来区分建议的超高压掘尸机制。

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