Integrated Understanding of the Early Jurassic Earth System and Timescale (JET)
Integrated Understanding of the Early Jurassic Earth System and Timescale (JET)
批准号:
NE/N018478/1
负责人:
Conall MacNiocaill
金额:
$25.93万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2016
资助国家:
英国
项目状态:
已结题
起止时间:
2016 至 --
中文摘要
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英文摘要
We propose a large-scale, multi-faceted, international programme of research on the functioning of the Earth system at a key juncture in its history - the Early Jurassic. At that time the planet was subject to distinctive tectonic, magmatic, and solar system orbital forcing, and fundamental aspects of the modern biosphere were becoming established in the aftermath of the end-Permian and end-Triassic mass extinctions. Breakup of the supercontinent Pangaea was accompanied by creation of seaways, emplacement of large igneous provinces, and occurrence of biogeochemical disturbances, including the largest magnitude perturbation of the carbon-cycle in the last 200 Myr, at the same time as oceans became oxygen deficient. Continued environmental perturbation played a role in the recovery from the end-Triassic mass extinction, in the rise of modern phytoplankton, in preventing recovery of the pre-existing marine fauna, and in catalysing a 'Mesozoic Marine Revolution'. However, existing knowledge is based on scattered and discontinuous stratigraphic datasets, meaning that correlation errors (i.e. mismatch between datasets from different locations) confound attempts to infer temporal trends and causal relationships, leaving us without a quantitative process-based understanding of Early Jurassic Earth system dynamics.This proposal aims to address this fundamental gap in knowledge via a combined observational and modelling approach, based on a stratigraphic 'master record' accurately pinned to a robust geological timescale, integrated with an accurate palaeoclimatic, palaeoceanographic and biogeochemical modelling framework. The project has already received $1.5M from the International Continental Drilling Programme towards drilling a deep borehole at Mochras, West Wales, to recover a new 1.3-km-long core, representing an exceptionally expanded and complete 27 My sedimentary archive of Early Jurassic Earth history. This core will allow investigation of the Earth system at a scale and resolution hitherto only attempted for the last 65 million years (i.e. archive sedimentation rate = 5 cm/ky or 20 y/mm). We will use the new record together with existing data and an integrative modelling approach to produce a step-change in understanding of Jurassic time scale and Earth system dynamics.In addition to order of magnitude improvements in timescale precision, we will: distinguish astronomically forced from non-astronomically forced changes in the palaeoenvironment; use coupled atmosphere-ocean general circulation models to understand controls on the climate system and ocean circulation regime; understand the history of relationships between astronomically forced cyclic variation in environmental parameters at timescales ranging from 20 kyr to 8 Myr, and link to specific aspects of forcing relating to solar energy received; use estimated rates and timing of environmental change to test postulated forcing mechanisms, especially from known geological events; constrain the sequence of triggers and feedbacks that control the initiation, evolution, and recovery from the carbon cycle perturbation events, and; use Earth system models to test hypotheses for the origins 'icehouse' conditions. Thirty six project partners from 13 countries substantially augment and extend the UK-based research.
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DOI:
10.5194/sd-32-1-2023
发表时间:
2023-10
期刊:
Scientific Drilling
影响因子:
1.2
作者:
[S. Hesselbo;A. Al-Suwaidi;Sarah J. Baker;Giorgia Ballabio;C. Belcher;Andrew Bond;Ian Boomer;Remco Bos;C. Bjerrum;Kara Bogus;Richard Boyle;J. Browning;Alan R. Butcher;Daniel J. Condon;P. Copestake;S. Daines;Christopher Dalby;M. Damaschke;S. Damborenea;J. Deconinck;A. Dickson;I. Fendley;C. Fox;Ángela Fraguas;J. Frieling;Thomas A. Gibson;Tianchen He;Kat Hickey;L. Hinnov;T. P. Hollaar;Chunju Huang;A. J. Hudson;H. Jenkyns;E. Idiz;Mengjie Jiang;W. Krijgsman;Christoph Korte;Melanie J. Leng;T. Lenton;Katharina Leu;C. Little;C. MacNiocaill;M. Manceñido;T. Mather;E. Mattioli;Kenneth G. Miller;Robert J. Newton;Kevin N. Page;J. Pálfy;Gregory Pieńkowski;Richard J. Porter;S. Poulton;Alberto C. Riccardi;J. Riding;Ailsa Roper;M. Ruhl;Ricardo L. Silva;M. Storm;G. Suan;D. Szȕcs;Nicolas Thibault;Alfred Uchman;James N. Stanley;C. Ullmann;B. van de Schootbrugge;Madeleine L. Vickers;S. Wadas;Jessica H. Whiteside;P. Wignall;T. Wonik;Weimu Xu;C. Zeeden;Ke Zhao]
通讯作者:
S. Hesselbo;A. Al-Suwaidi;Sarah J. Baker;Giorgia Ballabio;C. Belcher;Andrew Bond;Ian Boomer;Remco Bos;C. Bjerrum;Kara Bogus;Richard Boyle;J. Browning;Alan R. Butcher;Daniel J. Condon;P. Copestake;S. Daines;Christopher Dalby;M. Damaschke;S. Damborenea;J. Deconinck;A. Dickson;I. Fendley;C. Fox;Ángela Fraguas;J. Frieling;Thomas A. Gibson;Tianchen He;Kat Hickey;L. Hinnov;T. P. Hollaar;Chunju Huang;A. J. Hudson;H. Jenkyns;E. Idiz;Mengjie Jiang;W. Krijgsman;Christoph Korte;Melanie J. Leng;T. Lenton;Katharina Leu;C. Little;C. MacNiocaill;M. Manceñido;T. Mather;E. Mattioli;Kenneth G. Miller;Robert J. Newton;Kevin N. Page;J. Pálfy;Gregory Pieńkowski;Richard J. Porter;S. Poulton;Alberto C. Riccardi;J. Riding;Ailsa Roper;M. Ruhl;Ricardo L. Silva;M. Storm;G. Suan;D. Szȕcs;Nicolas Thibault;Alfred Uchman;James N. Stanley;C. Ullmann;B. van de Schootbrugge;Madeleine L. Vickers;S. Wadas;Jessica H. Whiteside;P. Wignall;T. Wonik;Weimu Xu;C. Zeeden;Ke Zhao
MAGNETOSTRATIGRAPHY OF EARLY JURASSIC SEDIMENTS: TOWARDS A GLOBAL STANDARD MAGNETOCHRONOLOGICAL TIMESCALE
早侏罗世沉积物的磁地层学:走向全球标准磁年代学时间尺度
DOI:
--
发表时间:
2022
期刊:
影响因子:
--
作者:
[Mengjie Jiang]
通讯作者:
Mengjie Jiang
Reduced plate motion controlled timing of Early Jurassic Karoo-Ferrar large igneous province volcanism.
早期的侏罗纪Karoo-ferrar大型火山省火山的板板运动减少了。
DOI:
10.1126/sciadv.abo0866
发表时间:
2022-09-09
期刊:
Science advances
影响因子:
13.6
作者:
[]
通讯作者:
DOI:
10.1144/jgs2017-120
发表时间:
2018-04
期刊:
Journal of the Geological Society
影响因子:
2.7
作者:
[Weimu Xu;C. Mac Niocaill;M. Ruhl;H. Jenkyns;J. Riding;S. Hesselbo]
通讯作者:
Weimu Xu;C. Mac Niocaill;M. Ruhl;H. Jenkyns;J. Riding;S. Hesselbo
Doctoral Training Grant (DTG) to provide funding for 1 PhD studentship.
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批准号:NE/H526978/1
-
项目类别:Training Grant
-
资助金额:$3.85万
-
财政年份:2009
-
负责人:Conall MacNiocaill
-
依托单位:
Global Records of the Iceland Basin Geomagnetic Excursion
-
批准号:NE/G001391/1
-
项目类别:Research Grant
-
资助金额:$5.41万
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财政年份:2008
-
负责人:Conall MacNiocaill
-
依托单位:
国内基金
海外基金
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依托单位:
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批准号:
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依托单位:
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批准年份:2020
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负责人:国分隆文
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依托单位: