SedDARE-IB:伊比利亚及其大陆边缘沉积物数据开放存取库

IF 11.2 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Earth System Science Data Pub Date : 2024-07-03 DOI:10.5194/essd-2024-210
Montserrat Torne, Tiago Alves, Ivone Jiménez-Munt, Joao Carvalho, Conxi Ayala, Elsa Ramalho, Angela Gómez, Hugo Matias, Hanneke Heida, Abraham Balaguera, José Luis García-Lobón, Jaume Vergés
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引用次数: 0

摘要

摘要。每当地质学家和地球物理学家努力了解和再现一个地区的地质演变、岩性、岩石特性、地震反应和地质灾害时,沉积物都会为他们提供宝贵的信息。因此,对沉积序列的分析有助于解释沉积环境、海平面变化、气候变化以及认识沉积物的来源地区等。通过将沉积数据纳入地球物理建模,可提高此类解释的准确性和可靠性。为了帮助我们进一步了解伊比利亚的地质演变、地质资源和地质灾害,这项工作向科学界展示了 SedDARE-IB 数据库。该资料库包括伊比利亚半岛及周边西大西洋和地中海新近纪盆地的基新生代和顶古生代地层标志深度的可用数据,或巴伦西亚海槽和阿尔伯兰地中海盆地的声基底解释深度的可用数据。作为 SedDARE-IB 所含数据广泛适用性的一个例子,我们研究了沉积厚度如何影响特定盆地的 150 oC 等温线深度(地热勘探中常用)。计算得出的趋势表明,在测量到的地表热流和热传导率不变的情况下,150 摄氏度等温线随沉积厚度的增加而变浅,直至达到后者的临界阈值。SedDARE-IB 可在 https://doi.org/10.20350/digitalCSIC/16277(Torne 等人,2024 年)上免费获取,为科学界、工业界和教育界的各种应用提供了机会。
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SedDARE-IB: An open access repository of sediment data for Iberia and its continental margins
Abstract. Sediments provide valuable information for geologists and geophysicists whenever they strive to understand, and reproduce, the geological evolution, lithology, rock properties, seismic response, and geohazards of a region. The analysis of sedimentary sequences is thus useful to the interpretation of depositional environments, sea-level change, climate change, and to a recognition of the sediments' source areas, amongst other aspects. By integrating sedimentary data in geophysical modelling, such interpretations are improved in terms of their accuracy and reliability. To help our further understanding of Iberia's geological evolution, geological resources and geohazards, this work presents to the scientific community the SedDARE-IB data repository. This repository includes available data of the depth to the Base Cenozoic and Top Paleozoic stratigraphic markers for the Iberian Peninsula and surrounding Western Atlantic and Mediterranean Neogene basins, or to the acoustic basement as interpreted for the Valencia Trough and Alboran Mediterranean basins. As an example of the broad applicability of the data included in SedDARE-IB, we investigate how sediment thickness affects the depth to the 150 oC isotherm at specific basins, as commonly used in geothermal exploration. The calculated trend suggests that, given constant measured surface heat flow and thermal conductivity, the 150 oC isotherm becomes shallower as a function of sediment thickness, until a critical threshold value is reached for the latter.SedDARE-IB database has been built thanks to a Portuguese-Spanish collaboration promoting open data exchange among institutions and research groups. SedDARE-IB is freely available at https://doi.org/10.20350/digitalCSIC/16277 (Torne et al., 2024) bringing opportunities to the scientific, industrial, and educational communities for diverse applications.
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来源期刊
Earth System Science Data
Earth System Science Data GEOSCIENCES, MULTIDISCIPLINARYMETEOROLOGY-METEOROLOGY & ATMOSPHERIC SCIENCES
CiteScore
18.00
自引率
5.30%
发文量
231
审稿时长
35 weeks
期刊介绍: Earth System Science Data (ESSD) is an international, interdisciplinary journal that publishes articles on original research data in order to promote the reuse of high-quality data in the field of Earth system sciences. The journal welcomes submissions of original data or data collections that meet the required quality standards and have the potential to contribute to the goals of the journal. It includes sections dedicated to regular-length articles, brief communications (such as updates to existing data sets), commentaries, review articles, and special issues. ESSD is abstracted and indexed in several databases, including Science Citation Index Expanded, Current Contents/PCE, Scopus, ADS, CLOCKSS, CNKI, DOAJ, EBSCO, Gale/Cengage, GoOA (CAS), and Google Scholar, among others.
期刊最新文献
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