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Physical and biological dynamic coastal processes and their role in coastal recovery (BLUE-coast)

Physical and biological dynamic coastal processes and their role in coastal recovery (BLUE-coast)
物理和生物动态海岸过程及其在海岸恢复中的作用(蓝色海岸)
批准号:
NE/N015894/2
负责人:
Alejandro Souza
金额:
$21.3万
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2019
资助国家:
英国
项目状态:
已结题
起止时间:
2019 至 --

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中文摘要
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英文摘要
The BLUE-coast consortium addresses NERC highlight topic B, Coastal morphology: coastal sediment budgets and their role in coastal recovery. This project will adopt a holistic and multidisciplinary approach, combining the expertise of biologists, coastal engineers, geologists, geomorphologists and oceanographers with complementary experimental (field and laboratory) and numerical skills, to understand what processes control the coastal system dynamics and answer the relevant scientific questions. BLUE-coast will explicitly address uncertainties in the prediction of medium-term (years) and long -term (decadal and longer) regional sediment budgets and better understand morphological change and how the coast recovers after sequences of events, such as storms by: (i) improving representation of both transportable and source material within the coastal zone within models; (ii) establishing how transportable material is mediated by the ecological system using exemplar habitats representative of the UK coastal zone; (iii) assessing sensitivities of this mixed-sediment physical and biological system to possible changes in external forcing, including the combined impact of multiple variables and sequences of events, with the goal of understanding the internal dynamics of the system (e.g. nonlinearities, critical thresholds, tipping points, precursors and antecedent conditions) in parallel with assessments of behavioural uncertainties, and (iv) reduce uncertainties in medium to long -term prediction of regional sediment budgets and morphological change.Project Overview: the scope of the Highlight Topic sets a requirement for quantitative knowledge on both physical and biological dynamic coastal processes in order to improve hydrodynamic model predictions of regional sediment budgets and morphological change. To deliver an integrated, holistic and cost effective response, our main activities will combine (i) a detailed study of representative shelf sea landscapes that spans the full variety of organism-sediment conditions typically observed in temperate coasts, with (ii) in situ validation studies of key processes, and (iii) manipulative laboratory and field experiments aimed at unambiguously identifying causal relationships and establishing generality, and (iv) integration of new understanding of controls and effects on coastal morphodynamics at regional scales and under environmental forcing. By undertaking a substantial element of in situ observation and process studies, we will directly quantify the effect of antecedent conditions on coastal erosion and recovery, the effect of biota on mediating sediment fluxes and pathways and the effect of event sequencing on coastal erosion and recovery, across a range of geographically significant sediment habitats. These data will act as calibration and validation datasets for existing and innovative numerical models that will be able to simulate the coastal morphological consequences of key biological and physical drivers, alone and in combination. We will gain mechanistic understanding and achieve generality by performing carefully controlled experiments, generating different flow regimes using flumes, tracking changes during natural events using state-of-the-art field measurement technology and, in the laboratory, using intact sediments and sediment communities exposed to anticipated future conditions (warming, ocean acidification, nutrient loading). As it is not feasible to quantify all the relevant morphodynamic processes at high spatial resolution across the entire UK coast, our approach is to address the principal objectives through 4 interdisciplinary workpackages that follow a logical progression of scientific themes.
期刊论文(7)
专著(0)
科研奖励(0)
会议论文
DOI: 10.1016/j.csr.2020.104320
发表时间: 2021-02
期刊: Continental Shelf Research
影响因子: 2.3
作者: [P. Thorne;I. D. Lichtman;D. Hurther]
通讯作者: P. Thorne;I. D. Lichtman;D. Hurther
In-situ Observations of Infragravity Response during Extreme Storms on Sand and Gravel Beaches
沙砾海滩极端风暴期间的次重力响应现场观测
DOI: 10.2112/si95-074.1
发表时间: 2020
期刊: Journal of Coastal Research
影响因子: --
作者: [Billson O]
通讯作者: Billson O
Biological-physical interactions are fundamental to understanding and managing coastal dynamics.
生物物理相互作用是理解和管理沿海动态的基础。
DOI: 10.1098/rsos.230155
发表时间: 2023-07
期刊: ROYAL SOCIETY OPEN SCIENCE
影响因子: 3.5
作者: [Solan, Martin, Spencer, Tom, Paterson, David M., Unsworth, Christopher A., Christie, Elizabeth K., Blight, Andrew J., Brown, Jenny, Brooks, Helen, Lichtman, I. Dougal, Wei, Xiaoyan, Li, Xiaorong, Thorne, Pete, Leyland, Julian, Godbold, Jasmin A., Thompson, Charlie, Williams, Megan E., Plater, Andrew, Moller, Iris, Amoudry, Laurent O.]
通讯作者: Amoudry, Laurent O.
DOI: 10.1029/2022gl099082
发表时间: 2022-07
期刊: Geophysical Research Letters
影响因子: 5.2
作者: [Xiaoyan Wei;M. Williams;Jennifer M. Brown;P. Thorne;L. Amoudry]
通讯作者: Xiaoyan Wei;M. Williams;Jennifer M. Brown;P. Thorne;L. Amoudry
7
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      NE/J005444/1
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      Research Grant
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      $39.05万
    • 财政年份:
      2012
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      2023
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    过表达CX45联合HCN4基因转染对起搏细胞自律性的影响
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      81170174
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      面上项目
    • 资助金额:
      50.0万元
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      2011
    • 负责人:
      周亚峰
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    美洲大蠊药材养殖及加工过程中化学成分动态变化与生物活性的相关性研究
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      81060329
    • 项目类别:
      地区科学基金项目
    • 资助金额:
      26.0万元
    • 批准年份:
      2010
    • 负责人:
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    慢病毒转染嵌合体HCN1+4拼接基因构建生物起搏细胞
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      81070139
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      面上项目
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      2010
    • 负责人:
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