Physically-Based Simulation for Fluid and Solid Dynamics

Q4 Social Sciences
Chandrakala Arya, Asst. Professor
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引用次数: 0

Abstract

: The potential for physical-based fluid and solid-dynamics simulation to transform many branches of engineering and science makes this an important field of study. In this study, we survey the state-of-the-art of physically-based simulation for fluid and solid dynamics, discussing the many methods, tools, and approaches currently in use. We also offer a methodology for simulating the behavior of fluids and solids that combines a particle-based approach with a continuum-based approach. The simulation framework, particle-and continuum-based simulation, and their coupling are all parts of our proposed technique. Future directions for research are also discussed, such as machine learning, multiscale modeling, real-time simulations, coupled simulations, validation and verification techniques, and computational resources for physically-based simulations. The discipline of physically-based modeling for fluid and solid dynamics is expanding rapidly, and there are many areas where new discoveries could be made. Many branches of engineering and research stand to benefit greatly by tackling these problems and looking in new ways.
基于物理的流体和固体动力学模拟
基于物理的流体和固体动力学模拟有可能改变工程和科学的许多分支,这使它成为一个重要的研究领域。在这项研究中,我们调查了流体和固体动力学的物理模拟的最新进展,讨论了目前使用的许多方法、工具和方法。我们还提供了一种模拟流体和固体行为的方法,该方法结合了基于颗粒的方法和基于连续体的方法。仿真框架、基于粒子和连续体的仿真以及它们的耦合是我们所提出的技术的所有部分。讨论了未来的研究方向,如机器学习、多尺度建模、实时仿真、耦合仿真、验证和验证技术以及基于物理的仿真的计算资源。流体和固体动力学的基于物理的建模学科正在迅速发展,并且有许多领域可以做出新的发现。通过解决这些问题和寻找新的方法,工程和研究的许多分支都将受益匪浅。
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来源期刊
Turkish Online Journal of Qualitative Inquiry
Turkish Online Journal of Qualitative Inquiry Social Sciences-Social Sciences (miscellaneous)
自引率
0.00%
发文量
4
审稿时长
12 weeks
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