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Tier 2 Hub in Materials and Molecular Modelling

Tier 2 Hub in Materials and Molecular Modelling
材料和分子建模二级中心
批准号:
EP/P020194/1
负责人:
Scott Woodley
金额:
$509.68万
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 --

项目摘要

项目成果

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中文摘要
翻译
该提案汇集了一个合作伙伴联盟,以创建国家材料和分子建模(MMM)二级中心。材料对英国经济有着巨大的影响:根据前大学和科学国务大臣的说法,英国生产和加工材料的企业每年的营业额约为1700亿英镑,占英国GDP的15%。在几乎所有现代技术的核心,包括能源生产、储存和供应、运输、电子设备、国防和安全、医疗保健以及环境,材料都对效率、可靠性和成本产生了实际限制。MMM是物理学家、化学家、工程师、材料科学家、生物学家、地质学家、以及更多使用HPC来实现对科学和工业具有重要意义的变革性发现的人。近年来,MMM的预测能力显著提高。MMM可以为物理现象背后的过程和机制提供基本的见解,并已成为当代材料研究不可或缺的元素。可以毫不夸张地说,MMM正在改变新材料技术的开发方式,作为实验研究的指南,有助于加快进展和节省资源。这是一个迅速扩大的领域,英国一直处于世界领先地位。该领域的快速发展对HPC产生了前所未有的需求,特别是对于中型高容量模拟,许多材料科学代码都进行了很好的优化。由于EPSRC在促进HPC研究增长方面的成功,ARCHER Tier 1服务面临越来越大的压力,该中心将支持和支持MMM社区。MMM二级中心的建立将重新平衡这个关键工程和物理科学社区的生态系统,促进有效利用适当的系统,加快科学时间。它将与ARCHER Tier 1服务紧密集成,通过实现能力工作的更大集中来优化ARCHER提供的价值和影响。该中心将利用UCL的Grace HPC设施的设计,以确保高效,可靠和及时的交付,易于访问和使用是至关重要的。UCL Research Computing Group在HPC、支持MMM社区使用的代码和应用程序、专业IT服务交付以及通过科学和工程南方联盟(Science and Engineering South Consortium)等成员进行协作方面拥有丰富的经验。与ARCHER、其相关高端计算(HEC)联盟、其他可能的Tier 2设施、博士培训中心、已经确定了亨利罗伊斯爵士研究所、英国催化中心和其他计算网络。这将确保材料中心补充和增强国家电子研究格局,利用英国在MMM相关研究方面的其他大量投资。我们将建立在托马斯青年中心,伦敦中心的材料理论和模拟的跟踪记录,在社区,行业参与和培训方面,以确保该中心减轻了新进入该领域的障碍,并为整个英国MMM社区服务。
英文摘要
This proposal brings together a consortium of partners to create a national Tier 2 Hub for materials and molecular modelling (MMM). Materials have an enormous impact on the UK economy: according to the former Minister of State for Universities and Science, UK businesses that produce and process materials have a turnover of around £170 billion per annum and represent 15% of UK GDP. At the heart of almost every modern technology, including energy generation, storage and supply, transportation, electronic devices, defence and security, healthcare, and the environment, it is materials that place practical limits on efficiency, reliability and cost.MMM is an inherently interdisciplinary 'field' of physicists, chemists, engineers, materials scientists, biologists, geologists, and more who use HPC to enable transformative discoveries of importance to science and industry. The predictive capability of MMM has increased significantly in recent years. MMM can provide fundamental insights into the processes and mechanisms that underlie physical phenomena and has become an indispensable element of contemporary materials research. It is no exaggeration to state that MMM is changing how new materials-based technologies are developed, acting as a guide for experimental research, helping to speed up progress and save resources. It is a rapidly expanding field and one in which the UK has consistently been world-leading. The rapid growth of the field has created an unprecedented need for HPC, particularly for medium-sized high-capacity simulations for which many materials science codes are well-optimised. This Hub will support and enable the MMM community at a time when the ARCHER Tier 1 service is under increasing pressure owing to the success of EPSRC in fostering the growth of HPC research. The establishment of a Tier 2 Hub for MMM will rebalance the ecosystem for this key engineering and physical sciences community, facilitating effective use of the appropriate system to speed up the time to science. It will be strongly integrated with the ARCHER Tier 1 service, optimising the value and impact delivered by ARCHER by enabling a greater concentration of capability jobs.The Hub will leverage the design of UCL's Grace HPC facility to ensure efficient, reliable and timely delivery, with ease of access and use being of paramount importance. The UCL Research Computing Group has considerable experience in HPC and in supporting codes and applications used by the MMM community, in professional IT service delivery, and in collaborative working through membership of e.g. the Science and Engineering South Consortium.Strategies for working with ARCHER, its relevant high-end computing (HEC) consortia, other possible Tier 2 facilities, Centres for Doctoral Training, the Sir Henry Royce Institute, the UK Catalysis Hub, and other computational networks have been identified. This will ensure that the Materials Hub complements and enhances the national e-research landscape, leveraging other substantial UK investments in MMM-related research. We will build on the track record of the Thomas Young Centre, The London Centre for the Theory and Simulation of Materials, in terms of community, industry engagement and training to ensure that this Hub eases the barriers for new entrants to the field and serves the UK MMM community as a whole.
期刊论文(10)
专著(0)
科研奖励(0)
会议论文
DOI: 10.3389/fchem.2018.00455
发表时间: 2018
期刊: Frontiers in chemistry
影响因子: 5.5
作者: [Ablitt C, Mostofi AA, Bristowe NC, Senn MS]
通讯作者: Senn MS
DOI: 10.1103/physrevx.8.021038
发表时间: 2018-05-10
期刊: PHYSICAL REVIEW X
影响因子: 12.5
作者: [Acharya, Swagata, Weber, Cedric, Van Schilfgaarde, Mark]
通讯作者: Van Schilfgaarde, Mark
A UNIFIED DYNAMIC SIMILITUDE OF SOLID CONTINUUM AND ITS APPLICATION IN AEROELASTIC STRUCTURES
固体连续体统一动力模拟及其在气动弹性结构中的应用
DOI: --
发表时间: 2022
期刊: Proceedings of the International Forum of Aeroelasticity and Structural Dynamics 2022, IFASD 2022
影响因子: --
作者: [Adetoro O.B.]
通讯作者: Adetoro O.B.
Evening out the spin and charge parity to increase T$_c$ in unconventional superconductor Sr_{2}RuO_{4}
平衡自旋和电荷宇称以提高非常规超导体 Sr_{2}RuO_{4} 中的 T$_c$
DOI: 10.48550/arxiv.1811.05143
发表时间: 2018
期刊:
影响因子: --
作者: [Acharya S]
通讯作者: Acharya S
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