HCSEJan 11, 2022

Multi-physics integration platform MuPIF: Application for composite material design

arXiv:2201.04130v1
Originality Synthesis-oriented
AI Analysis

This provides a versatile engineering tool for composite material design in aerospace applications, though it appears incremental as an application of an existing platform.

The paper presents the MuPIF distributed multi-physics simulation platform, demonstrating its application in designing a composite airplane frame for the H2020 Composelector project, showing it can simulate real industrial tasks and integrate into Business Decision Support Systems.

This paper presents the design of the MuPIF distributed, multi-physics simulation platform and its performance in the context of the H2020 Composelector project. The description of MuPIF's model and data interfaces provides implementation and operational details that illustrate how MuPIF is a highly versatile and robust tool for various engineering applications. Its distributed design and the integration of models in a workflow allows MuPIF to simulate real industrial tasks. The design of a composite airplane frame for the Composelector project, focusing on innovative design of composite materials and structures, demonstrates MuPIF's capabilities and ability to be integrated into Business Decision Support Systems.

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