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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Submarine sliver in North Kona: A window into the early magmatic and growth history of Hualalai Volcano, Hawaii
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Submarine sliver in North Kona: A window into the early magmatic and growth history of Hualalai Volcano, Hawaii

机译:北科纳海底银条:了解夏威夷华拉莱火山早期岩浆和生长历史的窗口

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摘要

Two manned submersible dives examined the Hualalai Northwest rift zone and an elongate ridge cresting at 3900 mbsl during a 2002 JAMSTEC cruise. The rift zone flank at dive site S690 (water depth 3412-2104 m) is draped by elongated and truncated pillow lavas. These olivine-rich tholeiitic lavas are compositionally indistinguishable from those examined further south along the bench, except that they span a wider range in dissolved sulfur content (200-1400 ppm). The elongate ridge investigated in dive S692, located at the base of the bench, is a package of distinct lithologic units containing volcaniclastic materials, glassy pillow breccias, and lava blocks; these units contain a range of compositions including tholeiitic basalt, transitional basalt, and hawaiite. The textures, compositions, and stratigraphic relationships of materials within the elongate ridge require that a variety of transport mechanisms juxtaposed materials from multiple eruptions into individual beds, compacted them into a coherent package of units, and brought the package to its present depth 10 km from the edge of the North Kona slump bench. Sulfur-rich hawaiite glasses at the base of the elongate ridge may represent the first extant representatives of juvenile alkalic volcanism at Hualalai. They are geochemically distinct from shield tholeiite and post-shield alkalic magmas, but may be related to transitional basalt by high-pressure crystal fractionation of clinopyroxene. Tholeiitic glasses that compose the majority of the exposed outcrop are similar to Mauna Kea tholeiites and other Hualalai tholeiites, but they differ from younger basalts in having greater incompatible element enrichments and higher CaO for a given MgO. These differences could arise from small extents of partial melting during the transition from alkalic to shield stage magmatism. Low sulfur contents of most of the volcaniclastic tholeiites point to early emergence of Hualalai above sea level relative to the development of the midslope slump bench.
机译:在2002年JAMSTEC航行期间,两次载人潜水器检查了Hualalai西北裂谷带和3900 mbsl的细长脊顶。潜水地点S690(水深3412-2104 m)的裂谷带侧面是细长的和截断的枕头熔岩。这些富含橄榄石的高熔岩熔岩与沿台阶进一步向南检查的熔岩在成分上没有区别,只是它们的溶解硫含量范围更广(200-1400 ppm)。位于板凳底部的S692潜水中研究的细长脊是一整套独特的岩性单元,其中包含火山碎屑材料,玻璃状角砾岩和熔岩块。这些单元包含一系列成分,包括高辉石玄武岩,过渡玄武岩和夏威夷岩。细长脊中材料的质地,组成和地层关系要求多种运输机制将来自多次喷发的材料并置到单独的床中,将它们压实成一个连贯的单元包装,并将包装带到距其最近的深度10公里北科纳坍塌长凳的边缘。细长脊底部的富含硫的夏威夷玻璃可能是瓦拉莱少年碱性火山作用的第一个现存代表。它们在地球化学上与盾构辉绿岩和盾构后的碱性岩浆不同,但可能通过斜辉石的高压晶体分级与过渡玄武岩有关。构成大部分裸露露头的乳状玻璃与冒纳凯阿火山乳和其他华拉莱硬岩相似,但是它们与年轻的玄武岩不同,对于给定的MgO,其具有更大的不相容元素富集度和更高的CaO。这些差异可能是由于从碱性到屏蔽阶段的岩浆作用过渡过程中部分熔融程度较小而引起的。大多数火山碎屑冲孔岩中的硫含量较低,这表明相对于中坡坍塌台阶的发展,华拉来早早出现在海平面上。

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