Sehen Sie, wie die Multiphysik-Simulation in Forschung und Entwicklung eingesetzt wird

Ingenieure, Forscher und Wissenschaftler aus allen Branchen nutzen die Multiphysik-Simulation, um innovative Produktdesigns und -prozesse zu erforschen und zu entwickeln. Lassen Sie sich von Fachbeiträgen und Vorträgen inspirieren, die sie auf der COMSOL Conference präsentiert haben. Durchsuchen Sie die untenstehende Auswahl, verwenden Sie die Schnellsuche, um eine bestimmte Präsentation zu finden, oder filtern Sie nach einem bestimmten Anwendungsbereich.


Sehen Sie sich die Kollektion für die COMSOL Conference 2023 an

Transport Phenomenax

Modeling of the Ladle Furnace Preheating with a Graphite Heating Rod

Sergey Semenov1, Patrick Namy1, Magnus Sievers2, Bernd Friedrich2, Veronika Djupvik3, Kjell Blandhol3
1SIMTEC, Grenoble, France
2IME Process Metallurgy and Metal Recycling, RWTH Aachen University, Aachen, Germany
3Elkem Technology, Kristiansand, Norway

This work, which is done in the framework of the SisAl Pilot EU project, presents the use of the COMSOL Multiphysics® software for simulating ladle furnace preheating. The SisAl Pilot project aims at optimising the silicon production in Europe by recycling materials and using a carbon ... Mehr lesen

3-Dimensional Analysis of Coupled Heat and Mass Transfer in a Thermochemical Heat Storage System

Elham Abohamzeh1, Seyed Ehsan Hosseinizadeh2, Georg Frey1
1Automation and Energy Systems, Saarland University, 66123 Saarbrücken, Germany
2

1 Problem Description Most studies for investigating heat and mass transfer phenomena in sorption storage systems use 1D or 2D numerical models. These are inadequate for analyzing processes in more complex geometries used in current prototypes. We present here a 3D model for the ... Mehr lesen

Analysis and Comparison of Modeling Approaches for Heat Pipes

L. Fromme1, N. Peick1, L. M. Sommer1
1Hochschule Bielefeld – University of Applied Sciences and Arts (HSBI), Faculty of Engineering and Mathematics, Bielefeld, Germany

A novel injection molding tool temperature control system based on heat pipes is being researched at the Bielefeld University of Applied Sciences and Arts (HSBI). This temperature control technology offers great potential for improving product quality and saving energy in the production ... Mehr lesen

Modelling of Desaturation/Resaturation of Geological Repository Barriers Considering Gas Generation

A. Narkuniene1, P. Poskas1, R. Kilda1
1Lithuanian Energy Institute, Kaunas, Lithuania

Geological repository for highly radioactive waste disposal is a system of engineered and natural barriers. The objective of this system is to contain and isolate waste and protect the environment and humans from ionizing radiation. For the evaluation of performance of engineered ... Mehr lesen

Uncertainty Quantification and Propagation in Multiphysics Modeling of the PVT Growth of SiC Crystal

Zaher Ramadan1, R. Hammer2, Z. Rajabzadeh1, L. Romaner3
1Department of Materials Science, Montanuniversität Leoben, Roseggerstraße 12, 8700 Leoben, Austria.
2EEMCO, Ebner-Platz 1, 4060 Leonding, Austria
31) Department of Materials Science, Montanuniversität Leoben, Roseggerstraße 12, 8700 Leoben, Austria.

The wide bandgap semiconductor silicon carbide (SiC) has drawn increasing attention in recent years as a promising material for high-power, high-frequency, and high-temperature operating devices. These outstanding properties of SiC make it a good candidate to replace silicon in many ... Mehr lesen

3D CFD Simulation of a PEM Fuel Cell Electrochemistry

Moseen Aloor1, Anna S Bansode1
1Tata Consultancy Services, Bangalore, India

Fuel cells are considered one of the most promising alternatives to conventional energy sources due to their high energy efficiency and only water from the exhaust. Accurate modeling of the fuel cell electrochemistry is crucial to optimize fuel cell performance. In this study, we ... Mehr lesen

High Fidelity Multiphase Modelling of Hydrogenics in Zero Gap Alkaline Water Electrolyzer

S M Prasanth1
1Indian Institute of Science IISc Bangalore

Electrolytic hydrogen production stands as a beacon of promise within the realm of sustainable energy technologies, owing to its remarkable potential for yielding hydrogen with high energy efficiency and enabling long-term energy storage. Among the gamut of hydrogen production ... Mehr lesen

Improved CFD Simulation of Free Radical Polymerization in a Flow Microreactor with Additional Reaction Steps

Dhiraj Kumar Garg1, nilay.patel@snu.edu.in1
1Shiv Nadar Institution of Eminence

The complete modelling of free radical polymerization (FRP) in a flow microreactor is dependent upon various transport processes - mass, momentum and heat transfer alongwith chemical reaction. And top of that, all processes are coupled to each other thus making modelling and simulation ... Mehr lesen

Non-uniform magnetic field-induced performance alteration of a topology-optimized PBMR

Debdeep Bhattacharjee1, Arnab Atta1, Suman Chakraborty2
1Department of Chemical Engineering, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal, India
2Department of Mechanical Engineering, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal, India

Packed bed microreactors (PBMR) and ferrofluids are independently enormously used in a broad range of applications in the healthcare sector. In a PBMR, one of the primary factors for controlling the reaction rate is the bed porosity which immediately affects the catalyst distribution and ... Mehr lesen

Beyond the limits of mass transfer: How pillar electrodes influence electrochemical reactors

Michiel De rop1, Jonas Hereijgers1, Tom Breugelmans1
1University of Antwerp, Antwerp, Belgium

Electrochemistry is inherent a surface process, requiring the transport of reagents towards the electrode surface. In electrochemical reactors this typically results in mass transfer limitation problems, limiting the yield and efficiency of the reactor. While the academic community is ... Mehr lesen