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。
使用左侧【快速搜索】工具查找您感兴趣的研究,或按照应用领域进行筛选。
查看 COMSOL 用户年会 2025 论文
Large underground mines (LUMs), which constitute over 60% of metal and nonmetal mining operations in the ... 扩展阅读
Spinal cord injury triggers an initial inflammatory response followed by scar tissue formation, hindering the ... 扩展阅读
The Reelwell Drilling Method (RDM) represents an innovative and energy-efficient approach to directional ... 扩展阅读
Fire resistance tests of building elements are essential for evaluating their ability to withstand fire ... 扩展阅读
Curing concrete is best achieved by keeping it nearly saturated at an appropriate temperature until all the ... 扩展阅读
Urban road tunnels offer a promising solution to extend existing road infrastructure while mitigating air ... 扩展阅读
The mechanism of plasmonic photocatalytic systems is still debated as the two major mechanistic pathways, i ... 扩展阅读
本研究成功开发出一种多级梯度结构的OMI纤维膜,其特点包括由外至内纤维直径逐层递减、每层具有双峰纤维直径分布、以及有机-无机复合功能化策略。这种独特结构实现了低压阻下的高效空气过滤,并确保了长期热稳定性 ... 扩展阅读
锂离子电池在便携式电子设备领域占据主导地位,并显著推动了电动汽车的商业化进程。当前全球研发重点集中于开发具有高能量密度、快速充放电能力、高功率输出、低成本及高安全性的电池系统。在材料选择中 ... 扩展阅读
In the rapid development cycle of sensor systems, minimizing time-to-market is crucial. However, designing a ... 扩展阅读
