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赤道地区冷的大洋地幔带。

A Cold Suboceanic Mantle Belt at the Earth's Equator.

出版信息

Science. 1993 Jul 16;261(5119):315-20. doi: 10.1126/science.261.5119.315.

Abstract

An exceptionally low degree of melting of the upper mantle in the equatorial part of the mid-Atlantic Ridge is indicated by the chemical composition of mantle-derived mid-ocean ridge peridotites and basalts. These data imply that mantle temperatures below the equatorial Atlantic are at least approximately 150 degrees C cooler than those below the normal mid-Atlantic Ridge, suggesting that isotherms are depressed and the mantle is downwelling in the equatorial Atlantic. An equatorial minimum of the zero-age crustal elevation of the East Pacific Rise suggests a similar situation in the Pacific. If so, an oceanic upper mantle cold equatorial belt separates hotter mantle regimes and perhaps distinct chemical and isotopic domains in the Northern and Southern hemispheres. Gravity data suggest the presence of high density material in the oceanic equatorial upper mantle, which is consistent with its inferred low temperature and undepleted composition. The equatorial distribution of cold, dense upper mantle may be ultimately an effect of the Earth's rotation.

摘要

从中大西洋脊赤道部分地幔源区中洋脊橄榄岩和玄武岩的化学组成可以看出,上地幔的熔融程度极低。这些数据表明,赤道大西洋下方的地幔温度至少比正常中大西洋脊下方的温度低 150 摄氏度左右,这表明等深线被压低,地幔在赤道大西洋向下流动。东太平洋隆起的零年龄地壳抬升的赤道最小值表明太平洋也存在类似的情况。如果是这样,那么一个海洋上地幔冷赤道带将分离出更热的地幔区,并可能在北半球和南半球形成不同的化学和同位素区。重力数据表明,海洋赤道上地幔中存在高密度物质,这与其推断的低温和未亏损的组成一致。冷的、密集的上地幔的赤道分布可能最终是地球自转的结果。

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