研讨会报告:探索夏威夷附近的深海地壳

IF 1.6 Q3 GEOSCIENCES, MULTIDISCIPLINARY
S. Umino, G. Moore, B. Boston, R. Coggon, L. Crispini, S. D’Hondt, Michael O. Garcia, T. Hanyu, F. Klein, N. Seama, D. Teagle, M. Tominaga, M. Yamashita, M. Harris, B. Ildefonse, I. Katayama, Y. Kusano, Yohey Suzuki, E. Trembath-Reichert, Yasuhiro Yamada, N. Abe, Nan Xiao, F. Inagaki
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引用次数: 3

摘要

摘要半个多世纪以来,探索海洋地壳的完整序列,从海底穿过莫霍洛维不连续(Moho),一直到最上层的地幔,一直是科学海洋钻探中最具挑战性的任务之一。这样一项科技成就将使人类对地球上最大的河流有深刻的认识,并扩大我们对地球深处及其地球动力学行为的基本认识。洋中脊中新洋壳的形成及其随后数百万年的老化,导致了俯冲、弧火山作用和一些成分进入地幔的再循环,构成了地球上物质和能量的主要地质循环。虽然以前的科学海洋钻探已经在年老(> 110 Ma)和年轻(< 20 Ma)的海洋地壳中取了一些钻孔,但我们的采样仍然相对较浅(< 2 km)到完整地壳中),并且不具有平均海洋地壳的代表性。迄今为止,没有一个洞能穿透超过100米的完整平均年龄的海洋地壳,记录了海水-玄武岩交换的长期历史(60至90 Myr)。此外,海洋地壳深处海底生物圈的性质、范围和演化仍然知之甚少。为了解决这些根本性的重大科学问题,一个名为“探索夏威夷深海地壳”的国际研讨会汇集了来自16个国家的106名科学家和工程师,他们代表了各个学科的各个方面,包括岩石学家、地球物理学家、地球化学家、微生物学家、地球动力学建模师和钻井/测井工程师。研讨会的目的是制定一个完整的国际海洋发现计划(IODP)提案,利用钻探研究船Chikyu在夏威夷北拱门的海洋地壳上钻一个2.5公里深的洞。该钻孔将为成熟(~ 80 Ma)海洋地壳的累积辉长岩提供样品,形成于~ 3.5 cm a−1的半扩张速率。在该地点海底以下约5.5公里处观察到莫霍反射,研讨会得出结论,在夏威夷北部拱门上拟议的2.5公里深的科学钻探将提供一个重要的“先导孔”,为未来地幔钻探的设计提供信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Workshop report: Exploring deep oceanic crust off Hawai`i
Abstract. For more than half a century, exploring a complete sequence of the oceanic crust from the seafloor through the Mohorovičić discontinuity (Moho) and into the uppermost mantle has been one of the most challenging missions of scientific ocean drilling. Such a scientific and technological achievement would provide humankind with profound insights into the largest realm of our planet and expand our fundamental understanding of Earth's deep interior and its geodynamic behavior. The formation of new oceanic crust at mid-ocean ridges and its subsequent aging over millions of years, leading to subduction, arc volcanism, and recycling of some components into the mantle, comprise the dominant geological cycle of matter and energy on Earth. Although previous scientific ocean drilling has cored some drill holes into old (> 110 Ma) and young (< 20 Ma) ocean crust, our sampling remains relatively shallow (< 2 km into intact crust) and unrepresentative of average oceanic crust. To date, no hole penetrates more than 100 m into intact average-aged oceanic crust that records the long-term history of seawater–basalt exchange (60 to 90 Myr). In addition, the nature, extent, and evolution of the deep subseafloor biosphere within oceanic crust remains poorly unknown. To address these fundamentally significant scientific issues, an international workshop “Exploring Deep Oceanic Crust off Hawai`i” brought together 106 scientists and engineers from 16 countries that represented the entire spectrum of disciplines, including petrologists, geophysicists, geochemists, microbiologists, geodynamic modelers, and drilling/logging engineers. The aim of the workshop was to develop a full International Ocean Discovery Program (IODP) proposal to drill a 2.5 km deep hole into oceanic crust on the North Arch off Hawai`i with the drilling research vessel Chikyu. This drill hole would provide samples down to cumulate gabbros of mature (∼ 80 Ma) oceanic crust formed at a half spreading rate of ∼ 3.5 cm a−1. A Moho reflection has been observed at ∼ 5.5 km below the seafloor at this site, and the workshop concluded that the proposed 2.5 km deep scientific drilling on the North Arch off Hawai`i would provide an essential “pilot hole” to inform the design of future mantle drilling.
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来源期刊
Scientific Drilling
Scientific Drilling GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
2.50
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12
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27 weeks
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