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
A microwave heating model coupled with heat, mass, and momentum transfer is needed to fully understand the ... 扩展阅读
Cancer causes significant human deaths. Radiofrequency ablation is an encouraging procedure for cancer ... 扩展阅读
Fusion is a form of nuclear energy which has impressive advantages from the point of view of fuel reserves, ... 扩展阅读
Induction furnaces are employed for vacuum distillation process to recover heavy metals after electro ... 扩展阅读
This paper presents the fast computational and modeling of multiconductor transmission lines interconnect in ... 扩展阅读
Electromagnetic sounding measurements utilize magnetic induction to constrain the interior geophysical ... 扩展阅读
Partial differential equations (PDEs) govern many phenomena in nature. Solving optimization problems which ... 扩展阅读
Electromagnetic radiofrequency (RF) sources are widely used to heat up cutaneous and subcutaneous tissues. ... 扩展阅读
Over the last decade, plasmonic nanoparticles (PNPs) have received growing interest as exogenous contrast ... 扩展阅读
在微波加热的多物理场仿真中,如果被加热物体的几何区域太小或者太薄,会造成整个模型网格剖分困难、网格数量多且计算消耗内存大等问题。本文针对微波加热时薄壁容器的网格剖分困难,网格数量大,且占用计算机内存资源多的问题 ... 扩展阅读
