La Bibliothèque d'Applications présente des modèles construits avec COMSOL Multiphysics pour la simulation d'une grande variété d'applications, dans les domaines de l'électromagnétisme, de la mécanique des solides, de la mécanique des fluides et de la chimie. Vous pouvez télécharger ces modèles résolus avec leur documentation détaillée, comprenant les instructions de construction pas-à-pas, et vous en servir comme point de départ de votre travail de simulation. Utilisez l'outil de recherche rapide pour trouver les modèles et applications correspondant à votre domaine d'intérêt. Notez que de nombreux exemples présentés ici sont également accessibles via la Bibliothèques d'Applications intégrée au logiciel COMSOL Multiphysics® et disponible à partir du menu Fichier.
Electrochemical impedance spectroscopy (EIS) is a common technique in which a small oscillating perturbation is applied to an electrochemical system in order to investigate kinetic and transport properties. This example models EIS for a range of electrode reaction rates. Nyquist and Bode ... En savoir plus
The purpose of this app is to understand EIS, Nyquist, and Bode plots. The app lets you vary the bulk concentration, diffusion coefficient, exchange current density, double layer capacitance, and the maximum and minimum frequency. Electrochemical impedance spectroscopy (EIS) is a common ... En savoir plus
Highly alloyed stainless steel used in chlorinated seawater systems may be prone to corrosion under certain operating conditions. Conventional cathodic protection technique is less suitable for stainless steel due to unacceptable anode consumption rate and propensity to hydrogen ... En savoir plus
Silicon micromechanical resonators have long been used for designing sensors and are now becoming increasingly important as oscillators in the consumer electronics market. In this series of models, a surface micromachined MEMS resonator, designed as part of a micromechanical filter, is ... En savoir plus
An electrostatically actuated MEMS resonator is simulated in the time and frequency domains. The device is driven by an AC + DC bias voltage applied across a parallel plate capacitor. The dependence of the resonant frequency on DC bias is assessed, and frequency domain and pull-in ... En savoir plus
This model shows that the frequency response, i.e., admittance curve, of the SAW unit cell with IDT is in good agreement with the series resonance & antiresonance frequencies obtained from the eigenfrequency studies in the tutorial Surface Acoustic Wave Velocity Calculations from a ... En savoir plus
This model examines the behavior of a positive corona formed between concentric cylindrical conductors exposed to high applied voltages. The predicted current–voltage response closely matches the measurements. Rather than reproducing individual positive glow corona bursts, the setup ... En savoir plus
This model analyzes negative corona formation in a point-to-plane configuration driven by high applied voltages. The resulting I–V characteristics align well with experimental observations documented in the literature. The goal here is to capture the steady electrical characteristics ... En savoir plus
This model demonstrates isoelectric focusing (IEF) of seven ampholytes in a column. The model is in 1D and is solved in a time-dependent simulation. En savoir plus
This model example shows how to simulate basic electromagnetic interference (EMI) and electromagnetic compatibility (EMC) behavior in a printed circuit board (PCB). The model contains two analyses to evaluate radiated emissions from PCB traces, crosstalk between adjacent microstrip ... En savoir plus
