日本地球惑星科学連合2018年大会

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[EE] 口頭発表

セッション記号 S (固体地球科学) » S-CG 固体地球科学複合領域・一般

[S-CG54] ハードロック掘削 オマーンから海洋リソスフェア,島弧形成+

2018年5月21日(月) 13:45 〜 15:15 A09 (東京ベイ幕張ホール)

コンビーナ:高澤 栄一(新潟大学理学部地質科学科)、道林 克禎(名古屋大学大学院環境学研究科地球環境科学専攻地質・地球生物学講座岩石鉱物学研究室)、Peter B Kelemen (共同)、Damon A H Teagle (Ocean & Earth Science, National Oceanography Centre Southampton, University of Southampton, SO14-3ZH, Southampton, UK)、座長:Kelemen Peter(Columbia University)、森下 知晃(金沢大学)

14:15 〜 14:30

[SCG54-08] Fine-grained gabbroic layers in the lower and middle crustal sections of the Oman Ophiolite (Holes GT1A and GT2A), ICDP Oman Drilling Project

*星出 隆志1海野 進2草野 有紀3Kelemen Peter4Teagle Damon5高澤 栄一6Coggon Jude Ann5道林 克禎7Party The Oman Drilling Project Phase1 Science8 (1.秋田大学国際資源学部、2.金沢大学、3.産総研、4.Lamont-Doherty Earth Observatory、5.Southampton University、6.新潟大学、7.静岡大学、8.D/V CHIKYU)

キーワード:層状斑れい岩、中央海嶺、Sheeted sill model、Gabbro glacier model

Discussion on the formation of the lower oceanic crust has been focused around the sheeted sills and the gabbro glacier models. Holes GT1A and GT2A were drilled by the Oman Drilling Project (supported by ICDP, Deep Carbon Observatory, NSF, IODP, JAMSTEC, and the European, Japanese, German and Swiss Science Foundations) from the lower and middle crustal sections of the Samail Ophiolite, Oman (Wadi Gideah area, in the Wadi Tayin massif). One of the major objectives of the project is to clarify the formation model of the oceanic crust at mid-ocean ridges. The drilled cores were analyzed at the laboratory in the IODP drilling vessel “Chikyu” during the period of 15th July to 15th August, 2017.

Both Holes GT1A and GT2A are mainly composed of olivine gabbro and olivine-bearing gabbro, with minor amount of other lithologies. Igneous layering caused by modal and grain-size variations was observed in the both drilled cores.

Fine-grained (about 0.5 mm in size) gabbroic layers are interbedded into medium-grained gabbros in some sections of the GT1A (e.g., GT1A_45Z-1, 47Z-1, 47Z-2 and 48Z-3). The contact between them is microscopically sharp. Both the modal composition and grain size change discontinuously at the contact. In the contact boundary, an interfingering texture between clinopyroxene of the fine-grained olivine gabbro and olivine of the medium-grained olivine gabbro is observed. The original modal olivine contents of the fine-grained gabbroic layers are 4 to 5 vol%, generally much lower than those of the surrounding medium-grained olivine gabbros.
We also found similar fine-grained gabbroic layers in Hole GT2A. Some of the fine-grained gabbros contain much larger plagioclase crystals than the matrix crystals. The large plagioclase “phenocryst” commonly displays a distinct zoned structure. The fine-grained gabbroic layers may suggest repeated injections of basaltic liquids into the oceanic crust.