Heat Transfer Blog Posts
How to Model the Electromagnetic Heating of Underground Cables
Underground power cables are beneficial in many ways, but they are also subject to overheating. To design better cables, we can model their electromagnetic heating in COMSOL Multiphysics.
Finding the Best Coal Arrangement for Even Heat in a Grill
Pizza on the grill? It’s actually quite delicious. Here, we use heat transfer modeling to determine how the grill’s coals should be arranged for even heating.
Introduction to Modeling Natural Convection in COMSOL Multiphysics®
Electronics cooling, indoor climate systems, and environmental transport problems all rely on natural convection. Get an introduction to modeling this phenomenon in COMSOL Multiphysics®.
Optimize 3D Printers by Modeling the Glass-Transition Temperature
Interested in 3D printing? Find out how researchers from Bangladesh and the United States analyzed a 3D printer head via heat transfer simulation.
Study Sensor Performance in Rapid Thermal Annealing with Simulation
Rapid thermal annealing (RTA) is one step in the process of producing semiconductors. You can optimize RTA conditions by studying the phenomena involved via modeling.
Why Is Ice Slippery Enough for Skiing and Skating?
The original theory for why ice is slippery involves the concept of pressure melting. However, the true answer involves more research, debate, and thought.
Why Doesn’t the Ice Cream in a Baked Alaska Melt?
The ice cream in a baked Alaska stays frozen, even when placed in a hot oven. How is this possible? We investigate this mysterious dessert with heat transfer simulation.
Analyze a Vacuum Dryer’s Speed with Multiphysics Modeling
Vacuum drying is often used to dry heat-sensitive materials such as food and pharmaceuticals. Here, we showcase a model that simulates the vacuum drying of a wet cake.