![]() Watch the archived webinar to see COMSOL Multiphysics 5.1 in action. ![]() With the help of infinite elements, porous domains are permitted to be unbounded. You can also easily combine porous media and turbulent flow in your fluid flow simulations. The latest COMSOL software version brings you 20 demo apps and many new features and functionality updates to numerous products. In addition, version 5.1 of COMSOL Multiphysics includes a new interface for modeling high Reynolds number dispersed two-phase flow. Today marks the release of COMSOL Multiphysics version 5.1. There is also a new tool for coil geometry analysis, which makes it possible to simulate coils with non-constant cross sections. A new optical material library has been added and includes 1,400 different materials. Updates to mechanical simulations include hygroscopic swelling and nonlinear materials for membranes. If a simulation has an infinite domain, such as for propagation of acoustic, RF, microwave, optical, and elastic waves, you are now able to visualize fields outside of the computational mesh. COMSOL Server, used for managing and distributing apps, allows users to run apps on multiple computers, thus distributing heavy workloads with ease.Īdditionally, this software version introduces a useful Part Library for quick geometry set-up of some common parts. The wavelength, polarization, material properties, wave periodicity, and radius can be changed. The Application Builder further offers enhanced efficiency through better file handling, searches for strings and keywords, table sorting, and more. An app that computes diffraction efficiencies for the transmitted and reflected waves (m 0) and the first and second diffraction orders (m ☑ and ☒) as functions of the angle of incidence for a wire grating on a dielectric substrate. Anyone with a COMSOL Multiphysics 5.1 license can open and inspect tutorials and demo apps, even without the add-on products required for specific models. You can now also configure your apps to send simulation reports by email when the results are ready. In COMSOL Multiphysics version 5.1, the Model Builder and Application Builder are more closely integrated, making it easier to turn your models into apps. In this archived webinar, we introduce you to the software and share highlights from the release of version 5.1. These instructional videos then take you through each step of the. This application allows the user to calculate the stress and deformation in a reinforced concrete beam. As Microsoft stopped the official support on Windows 7 and 8, we can’t guarantee any official. Please don’t forget to optimise your computer for DJing. We can’t guaranty a fluid experience on older computers. A new interface for turbulent dispersed two-phase flow is introduced with version 5.1. Geomechanics Module New App: Parameterized Concrete Beam. Storage : 16GB of free space on a Solid State Drive (SSD) A 2016 or later computer is recommended for the Best DJUCED experience. To start, we guide you through the COMSOL Multiphysics ® user interface, explaining the purpose and use of each aspect. The Euler-Euler Model, Turbulent Flow Interface. Various battery pack design parameters (packing type, number of batteries, configuration, geometry), battery material properties, and operating conditions can be varied.COMSOL Multiphysics version 5.1 improves your simulation experience with 20 new demo apps and many new features and functionality enhancements across the product suite. Watch this self-guided series of tutorial videos to learn how to use the COMSOL Multiphysics ® software from the comfort of your desk. The app may then be used to compute a battery pack temperature profile based on the thermal mass and generated heat associated with the voltage losses of the battery. Parameter estimation of various parameters such as the ohmic overpotential, the diffusion time constant, and the dimensionless exchange current can be performed by the app. It is a tool for investigating the dynamic voltage and thermal behavior of a battery pack, using load cycle and SOC vs OCV dependence experimental data. ![]()
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