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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Lateral variation in crustal structure along the Lesser Antilles arc from petrology of crustal xenoliths and seismic receiver functions
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Lateral variation in crustal structure along the Lesser Antilles arc from petrology of crustal xenoliths and seismic receiver functions

机译:从地壳XenoLiths和地震接收器功能的岩石学沿着较小的安妥尔斯弧形的地壳结构的横向变化

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We reconstruct crustal structure along the Lesser Antilles island arc using an inversion approach combining constraints from petrology of magmatic crustal xenoliths and seismic receiver functions. Xenoliths show considerable island-to-island variation in xenolith petrology from plagioclase-free ultramafic lithologies to gabbros and gabbronorites with variable proportions of amphibole, indicative of changing magma differentiation depths. Xenoliths represent predominantly cumulate compositions with equilibration depths in the range 5 to 40 km. We use xenolith mineral modes and compositions to calculate seismic velocities (v(p), v(s)) and density at the estimated equilibration depths. We create a five layer model of crustal structure for testing against receiver functions (RF) from island seismic stations along the arc. Lowermost layer (5) comprises peridotite with physical characteristics of mantle xenoliths from Grenada. Uppermost layer (1) consists of 5 km of volcaniclastics and sediments, whose physical properties are determined via a grid inversion routine. The three middle layers (2) to (4) comprise igneous arc crust with compositions corresponding to the xenoliths sampled at each island. By inversion we obtain a petrological best-fit for the RF on each island to establish the nature and thicknesses of layers (2) to (4).
机译:使用岩石地壳XenoLiths和地震接收器功能的岩石学的反转方法来重建沿较小的安妥尔斯岛岛弧形的地壳结构。 Xenoliths显示了从普拉斯替代铜岩石岩石岩石岩石岩石的相当大的岛屿到岛屿变异,从普拉斯替代岩石岩石和加布布雷岩,具有可变比例的锥形态,指示改变岩浆分化深度。 Xenoliths主要代表累积的组合物,其平衡深度在5至40公里的范围内。我们使用Xenolith矿物模式和组合物在估计的平衡深度下计算地震速度(V(P),V(S)和密度。我们创建了五层模型的地壳结构模型,用于测试沿弧沿岛地震站的接收器功能(RF)。最下层(5)包括来自格林纳达的岩石Xenoliths的物理特征的恒星。最上层(1)由5千米的火山增生和沉积物组成,其物理性质通过电网反演程序确定。三个中间层(2)至(4)包括导弧外壳,其与对应于在每个岛上采样的Xenoliths的组合物。通过反转,我们获得每个岛上的RF的岩浆物质最适合,以建立层(2)至(4)的性质和厚度。

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