Numerical Simulation of the Contact Behaviour of Granular Matters with Heterogeneous surfaces
Numerical Simulation of the Contact Behaviour of Granular Matters with Heterogeneous surfaces
批准号:
2833043
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2023
资助国家:
英国
项目状态:
未结题
起止时间:
2023 至 --
中文摘要
颗粒材料是指一类天然和合成材料,由单个颗粒组成,当受到负载时,这些颗粒彼此相互作用。这些材料的行为与通常的固体不同,并表现出许多显著的特征,如双折射、各向异性、压力依赖性、密度依赖性和非线性弹性。颗粒材料的力学行为是许多领域长期感兴趣的主题,具有科学魅力和实际重要性,例如高价值制造,纳米技术,制药,岩土工程等。颗粒材料的整体响应高度依赖于组成颗粒的填充模式和相互作用,进一步与颗粒的特性密切相关。基于对颗粒材料中接触行为的理解的最新进展,已知表面不规则性在颗粒之间的能量和力的传递中起重要作用,并且决定了这种材料的宏观行为。学术界和工业界迫切需要新的模型,可以容纳表面粗糙度的力的计算,从而预测颗粒物质的性能。利兹大学是解决这一突破性问题的关键所在,因为它拥有两个世界级的“摩擦学”和“颗粒技术”研究所,汇集了表面粗糙度表征和接触建模与颗粒流和表征方面的顶级专业知识。这个项目将是一个很好的机会,高级别的学生参与这两个机构之间的联合项目。该项目将是一个计算项目,利用功能表面研究所最先进的建模能力和基于化学与过程工程学院可用的离散单元法的工业用商业模型。学生有机会与一个大财团(使用先进粉末工艺制造,https://www.it-cdt.co.uk/)中的一些学者和行业合作,并成为综合摩擦学博士培训中心的一部分。https://mapp.ac.uk/该学生还将成为世界领先的功能表面研究所的一员,与大约70名博士生和25名PDRA一起沿着工作,以促进该项目的传播。
英文摘要
Granular materials refer to a class of natural and synthetic materials consisting of individual particles that interact with each other when subjected to loading. These materials behave differently from usual solids and exhibit many salient features such as dilatancy, anisotropy, pressure dependence, density dependence, and nonlinear elasticity. The mechanical behaviour of granular materials is a subject of long-standing interest in many fields, with both scientific fascination and practical importance such as high value manufacturing, nano-technology, pharmaceuticals, geotechnics etc. The overall response of a granular materials is highly dependent on the packing patterns and interactions of the constituent particles which are, further, closely related to the characteristics of the particles. Based on recent advancements in the understanding of contact behaviour in granular materials, it is known that surface irregularities play significant roles in the transfer of energy and forces between particles and dictate macroscopic behaviours of such materials. Academic and industrial community desperately need new models that can accommodate surface roughness in the calculations of forces and therefore predict the performance of granular matter. Leeds University is a pivotal place to tackle this ground breaking issue since it has two world class institutes of "Tribology" and "Particle technology" to get together the top expertise in surface roughness characterisation and contact modelling with particle flow and characterisation. This project will be a great opportunity for a high class student to be involved in a joint project between these two institutes. The project will be a computational project utilising the state-of-the-art modelling capability at the institute of Functional Surfaces and the industrially used commercial model based on Discrete Element Method available in the School of Chemical and Process Engineering. There is an opportunity for the student to collaborate with a number of academics and industries in a big consortium (Manufacture using Advanced Powder Processes, https://mapp.ac.uk/ ) and also being part of a Centre for Doctoral training in Integrated Tribology https://www.it-cdt.co.uk/. The student will also be part of the world-leading Institute of Functional Surfaces working along with about 70 PhD students and 25 PDRAs to facilitate the dissemination of the project.
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国内基金
海外基金
Simulation and certification of the ground state of many-body systems on quantum simulators
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批准号:--
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项目类别:--
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资助金额:40万元
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批准年份:2020
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负责人:Abolfazl Bayat
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依托单位: