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Titlebook: Geological Setting, Palaeoenvironment and Archaeology of the Red Sea; Najeeb M.A. Rasul,Ian C.F. Stewart Book 2019 Springer Nature Switzer

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發(fā)表于 2025-3-21 19:37:14 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Geological Setting, Palaeoenvironment and Archaeology of the Red Sea
編輯Najeeb M.A. Rasul,Ian C.F. Stewart
視頻videohttp://file.papertrans.cn/384/383329/383329.mp4
概述Provides a summary of recent research studies from the Red Sea.Includes studies from related fields on the littoral zone.Documents the development of knowledge on the Red Sea, from historical informat
圖書封面Titlebook: Geological Setting, Palaeoenvironment and Archaeology of the Red Sea;  Najeeb M.A. Rasul,Ian C.F. Stewart Book 2019 Springer Nature Switzer
描述.This book gathers invited contributions from active researchers to provide an up-to-date overview of the geological setting of the Red Sea. It discusses aspects ranging from historical information to modern research in the Red Sea, and presents findings from rapidly advancing, emerging fields. This semi-enclosed young ocean basin provides a unique opportunity to study the development of passive continental margins in order to examine the current status of that region. In addition to studies on the Sea itself, it includes those from related fields on the littoral zone. The book is of interest to geoscientists and non-specialists alike..
出版日期Book 2019
關(guān)鍵詞Geological Setting of the Red Sea; Passive Continental Margins; Development of the Read Sea margin; Geo
版次1
doihttps://doi.org/10.1007/978-3-319-99408-6
isbn_ebook978-3-319-99408-6
copyrightSpringer Nature Switzerland AG 2019
The information of publication is updating

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,Timing of Extensional Faulting Along the Magma-Poor Central and Northern Red Sea Rift Margin—Transi despite evidence for asymmetric extension and hyperextended crust (Zabargad Island). An in-depth analysis of the timing, spatial distribution, and nature of Red Sea volcanism and its relationship to late Cenozoic extensional faulting should shed light on some of the misconceptions. Voluminous Eocen
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Oceanization Starts at Depth During Continental Rupturing in the Northern Red Sea,ks recovered in the same area both from an oil well below a thick evaporitic-sedimentary sequence, and from a layered mafic complex exposed on the Brothers Islets. These new data provide constraints on the composition, depth of emplacement and age of early syn-rift magma intrusions into the deep cru
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Rifting and Salt Deposition on Continental Margins: Differences and Similarities Between the Red Seimentary basins formed during the Gondwana breakup. The interpretation of these seismic profiles integrated with gravity and magnetic potential field data suggest alternative models for the birth of oceanic basins that evolve from an earlier phase of intracontinental rift, salt deposition and contin
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Plate Motions Around the Red Sea Since the Early Oligocene,early Oligocene) and can be represented by two kinematic stages, characterized by distinct directions of extension and different duration. Deformation associated with rifting was accommodated through the reactivation of the inherited Proterozoic structures. We show that the first stage was character
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Hydrothermal Prospection in the Red Sea Rift: Geochemical Messages from Basalts,measuring chlorine (Cl) excess in erupted lavas. The Red Sea Rift provides a unique opportunity to study assimilation of hydrothermally altered crust at an ultra-slow spreading ridge (maximum 1.6?cm?yr. full spreading rate) by Cl, due to its saline seawater (40–42‰, cf. 35‰ in open ocean water), the
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,Salt Formation, Accumulation, and Expulsion Processes During Ocean Rifting—New Insight Gained from lt Walls’ and ‘Salt Ridges’), associated?with topographical lows (Deeps), suggest that the Red Sea currently?produces new volumes of brines and solid salts underground. The salt?producing zone is focused around the central rifting axis and?represents about 15% of the entire Red Sea area. The brines
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