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 2024 论文
Electric vehicles (EVs) powered by rechargeable lithium-ion batteries (LIBs) have been developed as a ... 扩展阅读
Sustainable wastewater management has stimulated the exploration of innovative technologies, such as ... 扩展阅读
In this study, a three-dimensional (3-D) phase field model was developed to better understand the parameters ... 扩展阅读
The poster presents a methodology to account for thermal effects on battery cells to improve the typical ... 扩展阅读
使用COMSOL Multiphysics计算了硅基锂离子电池在不同硅颗粒大小,电池放电倍率及固体电解质界面几何均匀性三个条件下SEI的稳定性。仿真结果表明,当硅颗粒半径从800 nm减小到600 nm和400 nm时 ... 扩展阅读
为了实现锂电池电芯设计定向优化及评估析锂风险,如Fig.1所示,本工作利用COMSOL的“电池模块”中的“Lithium-ion battery”物理接口,基于Dolye等[1]的伪二维(P2D)模型 ... 扩展阅读
The most common cause of lithium ion battery failure is high temperature. Improper thermal management ... 扩展阅读
Lithium ion battery safety problem has attracted the whole world’s attention essentially after the explosion ... 扩展阅读
Vehicles with battery as energy storage fascinate more and more people. Meanwhile, more questions are ... 扩展阅读
Vibration-based Piezoelectric Energy harvesters convert ambient vibration energy into an applicable ... 扩展阅读