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Maxwell Solution Analyze Maxwell Design Export Geometry from Maxwell Any geometry export option supported. File name Import Geometry into DesignModeler Can modify or defeature geometry as necessary in DM. 可修改 可修改 可修改 可修改 可修改 可修改 Ansoft/ANSYS Thermal Coupling Examples Agenda One-way Load Transfer Overview Applications General Procedure HFSS Example Maxwell Example Conclusions One-way Load Transfer One-way Load Transfer One-way Data Exchange Volumetric or surface losses mapped to ANSYS model Volumetric Losses Bus Bar Model Ansoft Maxwell Temperatures ANSYS Mechanical Types of Coupled Problems Electromagnetic-Thermal Coupling Maxwell Volumetric losses HFSS Volumetric and/or surface losses Electromagnetic-Structural Interaction Maxwell Volumetric force density (under concept validation work) Applications for Coupling with Electromagnetics Electric Machines Motors, generators, solenoids, etc. Power Distribution Bus bars, power switching gear, transformers RF and Microwave Components High-power connectors, terminations, couplers, filters, circulators, etc. IC Thermal Distribution Advanced Packaging, BGAs, Wire Bonds PCB Thermal Distribution and Dissipation Biomedical SAR, MRI Machines, RF Ablation Limitations One-way Load Transfer Does not allow for temperature dependent electromagnetic material properties Not applicable for certain multiphysics problems Induction heating General Procedure Ansoft/ANSYS Coupling – General Procedure Create and solve the electromagnetic application (HFSS / Maxwell) Export geometry from Ansoft to ANSYS Create the corresponding ANSYS thermal model Including the mesh Export (to file A) the ANSYS finite element mesh centroid (X, Y, Z) coordinates for all heat source objects (volumes and surfaces) Read in file A and map the applicable electromagnetic heat source densities into output file B Read in File B, solve thermal problem, post process the results Start End HFSS Example 9、 人的价值,在招收诱惑的一瞬间被决定。*** 10、低头要有勇气,抬头要有低气。***
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