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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 >Fine-scale segmentation of volcanic/hydrothermal systems along fast-spreading ridge crests
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Fine-scale segmentation of volcanic/hydrothermal systems along fast-spreading ridge crests

机译:沿快速扩展的脊顶的火山/热液系统的精细分段

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Fine-scale (3rd and 4th order) segments of the mid-ocean ridge (MOR) are morphologically defined units of crustal accretion with enigmatic origins. At fast-spreading centers, 3rd order segments are bounded by discontinuities in the structure of the axial high. Most 3rd order segments are 20+/-10 km long, and terminate at ridge axis discontinuities (RADs) exhibiting 0.2-3 km lateral offsets and/or greater than or equal to20 m axial depth increases. Nested within 3rd order segments are shorter 4th order segments bounded by smaller RADs. Along the fast-spreading East Pacific Rise (EPR) at 10degrees02'-9degrees08'N and 17degrees11'-42'S, spatial distributions of active high-temperature hydrothermal vents, biological communities, and lava flow morphology are known accurately from extensive near-bottom surveys and submersible dives along a total of seven 3rd order segments and twenty-four 4th order segments. The cumulative northern and southern EPR data show that 3rd order segments (but not 4th order segments) consistently exhibit apparently higher rates of lava effusion near segment middles in comparison to segment ends, supporting the hypothesis that each 3rd order segment is a discrete, centrally fed volcanic system, or "volcanic segment". Spatial analyses of the cumulative hydrothermal data reveal a striking increase in abundance of hydrothermal features within the middle portions of 3rd order segments. Approximately 60% of ongoing high-temperature focused flow is concentrated within the middle 40% of 3rd order segments, and twice as many biological communities are found at mid-segment in comparison to segment ends. The two independent data sets-volcanic and hydrothermal-both indicate that magmatic heat sources are focused beneath the central portions of 3rd order segments.. and that magmatic/hydrothermal systems are spatially and temporally segmented at 3rd order length and time scales. We propose that 3rd order segmentation arises from processes controlling melt supply to the middle-to-lower crust: and, that 4th order segmentation largely arises from more rapid/frequent upper crust processes of crack formation and dike intrusion. Future work is needed to test the applicability of our results along portions of the fast-spreading EPR notched by fault-bounded axial troughs, and in areas farther south where spreading rate reaches a maximum. (C) 2004 Elsevier B.V. All rights reserved.
机译:大洋中脊(MOR)的精细尺度(三阶和四阶)部分是形态学上确定的具有神秘起源的地壳增生单位。在快速扩展的中心,三阶线段受到轴向高点结构的不连续性的限制。大多数三阶线段的长度为20 +/- 10 km,终止于出现横向偏移0.2-3 km和/或轴向深度增加大于或等于20 m的山脊轴间断点(RADs)。嵌套在3阶分段中的是较短的4阶分段,这些分段由较小的RAD限制。沿着北纬10°02'-9'08'和17°11'-42'S迅速蔓延的东太平洋上升(EPR),可以通过广泛的近底调查准确地知道活跃的高温热液喷口,生物群落和熔岩流形态的空间分布。潜水共有7个三阶和24个四阶。北部和南部的EPR累积数据显示,与分段末端相比,三阶分段(而非四阶分段)在分段中间附近始终表现出明显更高的熔岩喷出率,支持了每个三阶分段是离散的,集中馈入的假设火山系统或“火山段”。累积热液数据的空间分析显示,三阶分段中部的热液特征量显着增加。正在进行的高温聚焦流中约有60%集中在3阶片段的中间40%,与片段末端相比,在中间片段中发现了两倍的生物群落。火山和热液这两个独立的数据集均表明,岩浆热源集中在三阶分段的中央部分之下。并且,岩浆/热液系统在空间和时间上按三阶长度和时间尺度进行了分段。我们提出三阶分段是由控制熔体向中下地壳供应的过程引起的;而四阶分段主要是由裂纹形成和堤防侵入的较快/频繁的上壳过程引起的。需要做进一步的工作来测试我们的结果在沿断层界定的轴向波谷切开的快速扩展的EPR部分中以及在扩展率达到最大的更南部地区的适用性。 (C)2004 Elsevier B.V.保留所有权利。

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