北贝鲁特(港区)新生代地质:生物地层学、沉积学和构造史。

Germaine Noujaim Clark, Marcelle BouDagher-Fadel
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引用次数: 1

摘要

最近在贝鲁特港区(约5平方公里)周围的考古发掘中暴露的露头和基岩的生物地层学和沉积学揭示了该地区的地质和构造历史,这反过来又是了解该地区碳氢化合物和水文地质潜力的关键。研究的露头剖面和新发现的基岩的关键位置(Site 2)位于东贝鲁特(Achrafieh)的北部山麓悬崖上。碳酸盐岩的露头剖面为始新世层,上覆有整合的中新世层。对露头附近斜坡的挖掘发现了上新世早期碳酸盐/硅塑性砂海岸线的基岩部分,其底部和顶部是海滩-岩石结构。岸线剖面的上新世早期年龄由浮游有孔虫组合确定,包括Sphaeroidinellopsis subdehiscens、Sphaeroidinella dehiscens和Orbulina universa。遗址2的始新世碳酸盐扩大了先前报道的港口地区始新世露头的覆盖范围。它们形成了薄层状、白垩白色石灰岩的准层序,其中包括黎巴嫩最年轻的鱼类化石矿床(Bregmaceros filamentosus)。通过与Porticulasphaera tropicalis、Globigerinatheka barri、Dentoglobigerina委内瑞拉、Globigerina praebulloides、Turborotalia centralis和Borelis sp等浮游有孔虫组合的联系,确定矿床的年代为早Priabonian。中中新世碳酸盐整合在早Priabonian上,准层序包括gloigerinoides trilobus、Orbulina universa和Borelis melo。在其他地方,在港区,保存完好的始新世灰岩也被整合的朗吉安-塞拉瓦里安中新世碳酸盐岩准层序覆盖。港区中东部发育中新世/上新世较年轻的泥质灰岩层,并包裹有Truncorotalia crasformis、Globorotalia inflata和Orbulina universa组合。港区古隆起构造块体的3个标志是西南角的陆梯/巴尔顿海相台地、东北侧的下上新世岸线碳酸盐岩剖面和东北角的全新世海相砾岩隆起滩。这些古海岸线的位置相距不到2公里,表明北贝鲁特自古近纪以来台地逐渐缩小。这项研究巩固了该地区地质的复杂性,有助于了解潜在的地质,这将是未来区域考古、油气和水文地质勘探所需要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Insights into the Cenozoic geology of North Beirut (harbour area): biostratigraphy, sedimentology and structural history.

Insights into the Cenozoic geology of North Beirut (harbour area): biostratigraphy, sedimentology and structural history.

Insights into the Cenozoic geology of North Beirut (harbour area): biostratigraphy, sedimentology and structural history.

Insights into the Cenozoic geology of North Beirut (harbour area): biostratigraphy, sedimentology and structural history.

The biostratigraphy and sedimentology of the outcrops and bedrock recently exposed in archaeological excavations around the harbour area of Beirut (~5 km²) unlock the geological and structural history of that area, which in turn are key to understanding the hydrocarbon and hydrogeological potential of the region. A key location (Site 2) of a studied outcrop section and newly uncovered bedrock is on the northern foothill cliff of East Beirut (Achrafieh). The outcrop section of carbonates is of Eocene beds overlain by conformable Miocene beds. The excavation of the slope bordering the outcrop uncovered a bedrock section of an early Pliocene shoreline of carbonate/siliciclastic sands at its base and topped by a beach-rock structure. The early Pliocene age of the shoreline section is dated by an assemblage of planktonic foraminifera that includes Sphaeroidinellopsis subdehiscens, Sphaeroidinella dehiscens and Orbulina universa. The Eocene carbonates of Site 2 extend the coverage of the previously reported Eocene outcrops in the harbour area. They form a parasequence of thin-bedded, chalky white limestones that includes the youngest fossil fish deposits in Lebanon (Bregmaceros filamentosus). The deposits are dated as early Priabonian by their association with the planktonic foraminiferal assemblage of Porticulasphaera tropicalis, Globigerinatheka barri, Dentoglobigerina venezuelana, Globigerina praebulloides, Turborotalia centralis and Borelis sp. The Middle Miocene carbonates that conformably overlie the early Priabonian, parasequence include a planktonic foraminiferal assemblage of Globigerinoides trilobus, Orbulina universa and Borelis melo. Elsewhere, in the harbour area, the preserved Eocene limestones are also overlain by conformable Miocene carbonate parasequences of Langhian-Serravallian age. Younger argillaceous limestone beds of the Mio/Pliocene age occur in the eastern central part of the harbour area and enclose an assemblage of Truncorotalia crassaformis, Globorotalia inflata and Orbulina universa. The three markers of old and recently raised structural blocks in the harbour area are a Lutetian/Bartonian marine terrace in the south west corner, a lower Pliocene shoreline carbonate section in the north east side and a Holocene raised beach of marine conglomerates in the north east corner of the area. The locations of these paleo-shorelines, less than 2 km apart, indicate a progressive platform narrowing of North Beirut since the Paleogene. This study underpins the geological complexity of the region and contributes to understanding the underlying geology, which will be needed for future regional archaeological, hydrocarbon and hydrogeological exploration.

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