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大洋中脊玄武岩化学成分与距大陆距离之间的相关性。

A correlation between mid-ocean-ridge basalt chemistry and distance to continents.

作者信息

Humler Eric, Besse Jean

机构信息

Laboratoire des Geosciences Marines, IPGP-Université Denis Diderot, 4, Place Jussieu, 75252 Paris Cedex 05, France.

出版信息

Nature. 2002 Oct 10;419(6907):607-9. doi: 10.1038/nature01052.

DOI:10.1038/nature01052
PMID:12374976
Abstract

To fully understand the structure and dynamics of the Earth's convecting mantle, the origins of temperature variations within the mantle need to be resolved. Different hypotheses have been proposed to account for these temperature variations: for example, heat coming from the decay of radioactive elements or heat flowing out of the Earth's core. In addition, theoretical studies suggest that the thermal properties of continental masses can affect mantle convection, but quantitative data that could allow us to test these models are scarce. To address this latter problem, we have examined the chemistry of mid-ocean-ridge basalt--which reflects the temperature of the source mantle--as a function of the distance of the ridge from the closest continental margin. No correlation is observed for oceanic ridges close to subduction zones or hotspots; subduction zones probably inhibit thermal transfer between the mantle beneath continents and ocean, whereas hotspots influence the major-element chemistry of ridge basalts, which makes their interpretation with respect to mantle temperature more difficult. However, we do observe a significant correlation for mid-oceanic basalts from the Atlantic and Indian oceans. From this, we conclude that the location of continental masses relative to active ridges influences the large-scale thermal structure of the mantle and we estimate that the mantle cools by 0.05 to 0.1 degrees C per kilometre from the continental margins.

摘要

为了全面了解地球对流地幔的结构和动力学,需要解决地幔内部温度变化的起源问题。人们提出了不同的假说来解释这些温度变化:例如,来自放射性元素衰变的热量或从地核流出的热量。此外,理论研究表明,大陆块体的热性质会影响地幔对流,但能够让我们检验这些模型的定量数据却很稀少。为了解决后一个问题,我们研究了大洋中脊玄武岩的化学成分(它反映了源地幔的温度)与洋中脊到最近大陆边缘距离的函数关系。对于靠近俯冲带或热点的洋中脊,未观察到相关性;俯冲带可能会抑制大陆下方地幔与海洋之间的热传递,而热点会影响洋中脊玄武岩的主元素化学组成,这使得根据其推断地幔温度变得更加困难。然而,我们确实观察到来自大西洋和印度洋的大洋中脊玄武岩存在显著相关性。据此,我们得出结论,大陆块体相对于活动洋中脊的位置会影响地幔的大规模热结构,并且我们估计地幔从大陆边缘起每千米降温0.05至0.1摄氏度。

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