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Heat Transfer Blog Posts

Using the Inflow Boundary Condition in Nonisothermal Flow Simulations

March 15, 2018

Nonisothermal flow is a multiphysics problem, as it combines CFD and heat transfer analysis. Learn how to implement the Inflow boundary condition when simulating these types of scenarios.

Modeling Phase Change in a Thermosiphon

March 12, 2018

A guest blogger from Noumenon Multiphysics writes about modeling phase change in a thermosiphon, a device that has been keeping houses warm since the 1800s.

Advancing Additive Manufacturing with Sequential Simulations

March 7, 2018

In some ways, additive manufacturing is like sewing or weaving. We talk to a professor of additive manufacturing about how sequential simulations can be used to analyze and optimize the process.

Comparing Static and Dynamic Wall Heat Exchangers with Simulation

February 27, 2018

We compare the performance and efficiency of static and dynamic compact wall heat exchanger designs using fluid-structure interaction.

Simulating Natural Convection in Air with COMSOL Multiphysics®

February 7, 2018

From small electronic components to large buildings, natural convection is a transport phenomena found in engineering disciplines of all sizes. Here’s an example of natural convection in air.

Optimizing Thermophotovoltaic Designs with Heat Transfer Simulation

January 31, 2018

Thermophotovoltaic (TPV) systems, known for their flexible fuel choice options, immovable parts, and potential for efficient power generation, can be optimized with heat transfer modeling.

How to Model Moisture Flow in COMSOL Multiphysics®

January 24, 2018

Learn how to model moisture flow in COMSOL Multiphysics®, which you can apply to industrial examples such as building envelopes and food packaging.

Keynote Video: Modeling the Multiphysics Behavior of Nuclear Fuel

November 6, 2017

A laboratory engineer discusses using multiphysics simulation to understand the complex and challenging behavior of nuclear fuel. Watch his presentation and get a quick summary here.


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