How to Simulate Transient Exhaust Systems

Date Published:
Author(s):
Tim Viola

Exhaust systems are still a primary heat source in passenger vehicle underbody and underhood thermal systems.  The Exhaust Stream part type in TAITherm provides a quick and easy way to simulate exhaust system temperatures and predict the amount of radiation that will then heat surrounding components. This webinar will demonstrate using the Exhaust Stream in TAITherm to perform a transient heat transfer analysis.

Modeling Passenger Compartments with TAITherm and GT-SUITE

Date Published:
Author(s):
Jon Juszkiewicz, Dan Marsh

Webinar by ThermoAnalytics and Gamma Technologies discussing an exciting new technology developed for modeling the passenger compartment. This approach is significantly more accurate than those used today for system-level models and is suitable for both steady and transient predictions at faster than real-time speeds.This new approach incorporates industry-leading technology from Gamma Technologies and ThermoAnalytics for the solution of the refrigerant loop (1D flow), the passenger compartment (3D flow, radiation, convection, and conduction) and human thermal comfort.

All Things Battery Webinar

Date Published:
Author(s):
Scott Peck

Watch this webinar to learn how our TAITherm software is used to simulate battery thermal design issues at the cell level, pack level, as well as system integration issues. Scott, one of our Senior Research Engineers, will show you how the battery models in TAITherm provide you with flexible tools to optimize your battery design and analysis process.

Simulation-based sensor modeling and at-range target detection characterization with MuSES

SPIE Volume Number: 9452
Date Published:
Author(s):
Corey D. Packard, Nicholas E. Saur, Allen R. Curran, Peter L. Rynes

Heated Seat Simulation Study for Thermal Seat Comfort Improvement

SAE Document Number: 2015-01-1391
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Author(s):
Scott Allen Ziolek – Hyundai, Joshua Pryor – ThermoAnalytics, Tony Schwenn – ThermoAnalytics, Adam Steinman – Gentherm

Simulating Physiological Response with a Passive Sensor Manikin and an Adaptive Thermal Manikin to Predict Thermal Sensation and Comfort

SAE Document Number: 2015-01-0329
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Author(s):
Mark Hepokoski – ThermoAnalytics, Allen Curran – ThermoAnalytics, Richard Burke – Measurement Technology NW, John Rugh – National Renewable Energy Laboratory, Larry Chaney – National Renewable Energy Laboratory, Clay Maranville – Ford

The Development of Exhaust Surface Temperature Models for 3D CFD Vehicle Thermal Management Simulations Part 2 - Exhaust Acoustic Silencer Configurations

SAE Document Number: 2014-01-0646
Date Published:
Author(s):
Kristian Haehndel - BMW Group, Anthony Jefferies - BMW Group, Markus Schlipf - BMW Group, Torsten Frank - BMW Group, Frieder Christel - BMW Group, Sylvester Abanteriba - BMW Group

The Development of Turbine Volute Surface Temperature Models for 3D CFD Vehicle Thermal Management Simulations: Part 3: Exhaust Radial Turbine Volute Systems

SAE Document Number: 2014-01-0648
Date Published:
Author(s):
Steve De Vos - BMW Group, Kristian Haehndel - BMW Group, Torsten Frank - BMW Group, Frieder Christel - BMW Group, Sylvester Abanteriba - BMW Group

Automotive Vehicle Body Temperature Prediction in a Paint Oven

SAE Document Number: 2014-01-0644
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Author(s):
Yu Hsien Wu - Chrysler Group LLC, Sreekanth Surapaneni - Chrysler Group LLC, Kumar Srinivasan - Chrysler Group LLC, Paul Stibich - Chrysler Group LLC

A Numerical Investigation of Dampening Dynamic Profiles for the Application in Transient Vehicle Thermal Management Simulations

SAE Document Number: 2014-01-0642
Date Published:
Author(s):
Kristian Haehndel - BMW Group, Angus Pere - BMW Group, Torsten Frank - BMW Group, Frieder Christel - BMW Group, Sylvester Abanteriba - BMW Group