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Chaotic topography, mantle flow and mantle migration in the Australian-Antarctic discordance

机译:澳大利亚-南极不协调中的混沌地形,地幔流动和地幔迁移

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Oceanic crust formed over the past 30 million years at the Australian-Antarctic discordance (AAD) is characterized by chaotic sea-floor topography, reflecting a weak magma supply from an unusually cold underlying mantle. During the past 3-4 million years, however, a source of increased magma supply, coinciding with the known Indian-Pacific mantle isotopic boundary, has propagated into the eastern AAD, displacing the chaotic terrain and replacing it with normal sea floor. Pacific mantle reached the eastern boundary of the AAD at least 7 million years ago, but it was not until 3-4 million years ago that lavas derived from Pacific mantle were first erupted within the AAD. This long hiatus, combined with the ridge-transform geometry across the AAD boundary, constrains the locus of mantle migration to a narrow, relatively shallow region, directly beneath the spreading axis of the Southeast Indian ridge.
机译:在过去的三千万年中,澳大利亚-南极不和谐(AAD)形成的洋壳的特征是海床地貌混乱,反映出异常寒冷的地幔提供的岩浆供应不足。然而,在过去的3-4百万年中,与已知的印度-太平洋地幔同位素边界相吻合的岩浆供应增加源已经扩散到了AAD东部,取代了混乱的地形并将其替换为正常的海床。太平洋地幔至少在700万年前就到达了AAD的东部边界,但是直到3-4百万年前,源自太平洋地幔的熔岩才首次在AAD内喷发。这种长裂隙与跨AAD边界的山脊变换几何形状相结合,将地幔的迁移轨迹限制在一个狭窄,相对较浅的区域,就在印度洋山脊的扩展轴的正下方。

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