了解多物理场仿真在基础研究和产品设计中的应用
各个行业的工程师和科研人员都在使用多物理场仿真来研发创新的产品设计和流程。他们在 COMSOL 用户年会上展示了丰富的技术论文和演示文稿,您可以从他们的研究成果中寻找灵感。
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查看 COMSOL 用户年会 2025 论文
We have developed a model for computing current and field distributions in multifilamentary superconducting ... 扩展阅读
An important attribute for numerical simulations is to provide accurate quantified solution values. Thus it ... 扩展阅读
INTRODUCTION: The Dirac equation is employed in particle physics and historically gave the first combined ... 扩展阅读
Recently, the advanced plasma tools have been using very high frequency power sources (>100 MHz) and their ... 扩展阅读
The detection of early corrosion is a key issue to mitigate the damage induced by metal corrosion. The ... 扩展阅读
For the complex 3D biocompatible metallic parts, with high level of customization, used in medical prosthesis ... 扩展阅读
Electromagnetic compatibility (EMC) is a growing issue in cars due to the increase in electrification of ... 扩展阅读
This paper presents a novel methodology towards the design, analysis, and the fabrication process involved in ... 扩展阅读
Three-dimensionally varying flattened Luneburg Lens structure whose axisymmetric invariance of material ... 扩展阅读
微波加热技术现已广泛应用于岩石工程和地下工程等领域,例如岩石粉碎、非常规油气开采等领域。国内外学者也对此进行了大量的研究,但是微波破岩机理尚不明确,特别是微波照射下不同矿物成分相互作用机理不明确。微波破岩是一个电磁-热 ... 扩展阅读
