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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 >Unspiked K-Ar dating of the Honolulu rejuvenated and Ko'olau shield volcanism on O'ahu, Hawai'i
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Unspiked K-Ar dating of the Honolulu rejuvenated and Ko'olau shield volcanism on O'ahu, Hawai'i

机译:夏威夷瓦胡岛上火奴鲁鲁的无名K-Ar年代恢复活力,科奥劳盾构火山活动

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Many mantle plume volcanoes undergo rejuvenated volcanism after a period of construction and erosion of their shield. The cause of this renewed volcanism has been enigmatic and various models have been proposed. However, the lack of geochronological data has hindered evaluation of these models. Unspiked K-Ar ages on groundmass in 41 samples from 32 vents of Honolulu VoIcanics and eight samples of underlying Ko'olau Volcanics were determined in order to reveal the temporal distribution of rejuvenated vents and the length of the hiatus between the end of shield and start of rejuvenated volcanism. The new geochronological results show that Ko'olau shield volcanism ended at 2.1 Ma and that rejuvenated volcanism started at 0.8 Ma, resulting in a 1.3 million year hiatus in volcanic activity. Two distinct pulses were found for Honolulu volcanism at 0.800.35 and similar to 0.1 Ma. During the first pulse, the eruption frequency increased with time and there was no spatial pattern in vent distribution, although three vents along a NNE-SSW trend produced similar compositions and may have been coeval. Volcanism apparently waned from 0.35-0.12 Ma, with only one eruption. The second pulse occurred along two rifts that trend N-S and NE-SW. Although the ages for the 10 dated flows are indistinguishable at around 0.1 Ma, lavas from the two rifts have distinct compositions: weakly alkalic vs. melilite nephelinite. The first, more widely distributed pulse of volcanism is probably related to secondary melting downstream from the Hawaiian plume stem, which may be related to lithospheric thinning. The second pulse, focused along two rifts, may be related to decompressional melting as the shield passed over the flexural arch. (c) 2005 Elsevier B.V. All rights reserved.
机译:经过一段时间的建造和盾构的侵蚀,许多地幔柱火山经历了复兴的火山活动。火山重新爆发的原因是令人迷惑的,并且已经提出了各种模型。但是,缺乏年代学数据阻碍了对这些模型的评估。确定了檀香山火山的32个喷口和地下Ko'olau火山的41个样品在地面上未加标的K-Ar年龄,目的是揭示恢复活力的喷口的时间分布以及盾牌末端与起点之间的裂隙长度。复兴的火山活动。新的年代学结果表明,科奥劳盾构火山活动始于2.1 Ma,而复兴的火山活动始于0.8 Ma,导致130万年的火山活动中断。檀香山火山活动在0.800.35处发现了两个不同的脉冲,与0.1 Ma相似。在第一个脉冲期间,喷发频率随时间增加,并且在喷口分布中没有空间模式,尽管沿着NNE-SSW趋势的三个喷口产生了相似的成分,并且可能是同代的。火山活动显然从0.35-0.12 Ma减弱,只有一次喷发。第二次脉冲沿两次裂谷发生,向N-S和NE-SW方向发展。尽管10次过时的流的年龄在0.1 Ma左右是无法区分的,但两次裂谷的熔岩具有不同的成分:弱碱性的火山岩和闪闪发光的霞石。火山爆发的第一个更广泛分布的脉冲可能与夏威夷羽状茎杆下游的二次熔融有关,这可能与岩石圈变薄有关。沿两次裂口聚焦的第二个脉冲可能与屏蔽层越过弯曲拱形时的减压融化有关。 (c)2005 Elsevier B.V.保留所有权利。

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