See How Multiphysics Simulation Is Used in Research and Development
Engineers, researchers, and scientists across industries use multiphysics simulation to research and develop innovative product designs and processes. Find inspiration in technical papers and presentations they have presented at the COMSOL Conference. Browse the selection below or use the Quick Search tool to find a specific presentation or filter by application area.
View the COMSOL Conference 2023 Collection
Introduction Computer simulations are widely used for the interpretation and inversion of electromagnetic measurements in well logging. Until recently, simulated logs have been computed with approximate 1D or 2D models. By using the COMSOL® RF Module installed on a cluster, we show that ... Read More
In this paper, the mechanism of charging process was simulated and analyzed. The simulation was conducted using COMSOL Multiphysics® software, based on the laminar two-phase flow level-set interface coupling with the electrostatic interface. Meanwhile, different parameters (such as the ... Read More
It is a complex problem to calculate the photonic crystal fiber model, and the methods of plane wave expansion, Hermite-Guasssian function and beam propagation have been analyzed. Finally the multipole method is adopted for solving problem. The hexagonal air holes in cladding have been ... Read More
扬声器的失真问题一直受电声业界的关注,尤其是谐波失真,它是影响扬声器重放声音音质的主要因素之一。 本文提出了一种基于 COMSOL Multiphysics® 软件预测扬声器谐波失真的仿真分析方法。该方法需建立包括磁场、振动系统和声场等多个物理场的扬声器的全模型,给扬声器加载一单频电压信号,用瞬态分析的方法可求解得到该频率激励下的扬声器的多个重要物理量随时间的变化函数,如流经音圈的电流I(t)、音圈的受力F(t)、振动系统表面上任意点的位移x(t),以及声场中任意点的声压P(t)等。给扬声器加载一个时间长度为0.1s的单频电压信号,仿真分析所得的防尘帽顶点的位移曲线 ... Read More
Plasma Arc Welding (PAW) is one of the important arc welding processes commonly used in electronics, medical, automotive and aerospace industries due its high accuracy, finishing, and ability of welding any hard materials. It is an extension of Tungsten Inert Gas welding (TIG or GTAW). ... Read More
There has been considerable interest in the electrostatic chucks (ESCs) in recent years. Wafer cooling by means of gas at the backside of wafers plays an important role in electrostatic chucks and it uses an electrostatic potential to secure the wafer. In this study, the correlation of ... Read More
本研究利用COMSOL软件进行超高频换能器的声场仿真和数据提取。首先,利用COMSOL固体力学模块和AC/DC中的静电模块对压电材料铌酸锂进行多物理场压电效应的建模。然后,利用压力声学频率模块和声结构边界多物理场进行压电材料振动产生声场的分布研究。其中对压电材料的二维轴对称的几何建模中利用了圆形分层拟合的球压聚焦,并通过调整坐标系改变压电材料的极化方向贴合于实际情况。此仿真预期得到球压后的超声换能器的聚焦特性,其中包括焦点位置(绝对声压最高点),横向分辨率(绝对声压横向分布的-6dB 半高度带宽值)和纵向分辨率(绝对声压纵向分布的-3dB宽度值) ... Read More
模型通过锂电池模块、传热模块、CFD模块的耦合实现。锂电池与传热采用弱耦合形式实现,而传热及流体采用强耦合形式实现。电芯产热与散热满足能量守恒定律。 根据三电极实测数据分别修正不同倍率充电条件电芯全电池电压、正参电压、负参电压,确定电芯动力学参数,完成模型的标定。热源包括正负极柱以及连接片焊接处产生的欧姆热,极组所产生的电化学热。流体属性及入口、出口的边界条件根据特定需求来设置。流体采用湍流中K-ε类型,流体对网格的要求比较高,流体网格需要加密并设置为流体静力学物理场来增加模型的收敛性,模型计算量较大,故采用分离式求解器。充电策略因为以时间作为阶梯充电倍率的转换依据 ... Read More
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,提出了一种基于变换光学算法的微波薄壁加热模型计算优化方法。利用变换光学算法将薄壁区域空间扩大,通过改变薄壁区域内的介质参数来与原模型进行空间映射,从而避免网格剖分过程中的薄壁问题出现,这样可以在同样的网格剖分设置下减少整个模型的网格数量,节省计算时间,减少计算机内存资源的占用。通过相应的公式推导,在二维模型中实现了薄壁变换光学算法的计算 ... Read More
Abstract: As a environmentally friendly thermal energy harvesting device, thermoelectric generator (TEG) can convert heat into electricity directly. Therefore, researchers have made great efforts to detailed explanation the principium including established many steady-state models to ... Read More