Speaker
Description
It is well established that nearly 70% of product innovation relates back to the development of new materials or to the combination of existing materials in a new fashion [1]. In specific use cases ICME and Materials Modelling have proved to be able to critically speedup this process. However, despite the great promises and early successes, the adoption of ICME in industry is still somewhat limited. Recent reports identified data management, interoperability, and integration of experimental and modelling data at various time and length-scales as key enablers for the realisation of ICME’s full potential [2, 3].
In this presentation, we will show how the seamless integration of an information management system, GRANTA MI [4] and a powerful workflows and process integration platform, OptiSLang [5], can be used to enable ICME. Data management, workflows, connections, and optimization capabilities are combined to support materials simulation workflows definition, deployment, initiation, execution, results retrieval/analysis. We will show how a variety of commercial and open-source tools, and platforms, can be easily connected to the platform with various low- or no- code options and how full provenance is built and maintained. The main concepts behind the solution and pertinent details will be demonstrated by mean of relevant multiscale ICME use cases which will integrate various simulation tools.
[1] Why Do I Need Multiscale Modelling?, NAFEMS,https://www.nafems.org/publications/resource_center/bm_jan_18_10/ 2018
[2] Vision 2040: A Roadmap for Integrated, Multiscale Modeling and Simulation of Materials and Systems, https://ntrs.nasa.gov/search.jsp?R=20180002010, 2018
[3] The EMMC Roadmap for Materials Modelling and Digitalisation of the Materials Sciences, EMMC, Zenodo, http://doi.org/10.5281/zenodo.4272033, 2020.
[4] https://www.ansys.com/products/materials
[5] https://www.ansys.com/products/platform/ansys-optislang
| Speaker Country | United Kingdom |
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