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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Power cable manufacturing is limited by the maximum length of cable that can be produced and stored on cable ... 扩展阅读
Today, low noise is a mandatory feature for power transformers to comply with customer specifications and ... 扩展阅读
High power CO2 lasers have been the workhorses for sheet metal cutting, welding and many more applications in ... 扩展阅读
A three-dimensional heterogeneous model of breast has been modeled with a spherical tumor of 1.5 cm. PID ... 扩展阅读
The study of the effects of magnetic field stimulation in biological systems require devices capable of ... 扩展阅读
Nearly seven lakh Indians die of cancer, while over 10 lakh are newly diagnosed with some form of the disease ... 扩展阅读
A new microwave cavity for the regeneration of DPF regeneration was proposed and COMSOL Multiphysics® FEM ... 扩展阅读
引言:微波干燥过程涉及多物理场的耦合,物理过程十分复杂。不仅有被加热物质的形态改变,还有气态、液态和固态三相的相互作用。为了更清楚地理解微波干燥过程,本模型将电磁场、多相流和物理变形用相应的方程耦合到一起建模分析 ... 扩展阅读
Terahertz radiation (THz) is defined to have frequencies from 0.1-10 THz (1 THz=1e12 Hz). This radiation lies ... 扩展阅读
A computer controlled microwave exposure system and specialized applicators were constructed for the purpose ... 扩展阅读