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Coupling of Transient Analysis of Thermal Flow and Thermal Stress for T Pipe
Technical Paper
2006-01-0589
ISSN: 0148-7191, e-ISSN: 2688-3627
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English
Abstract
Fluid Structure Interface (FSI) analyses were fast in development during recent years with the constantly advancing progress of computer technology. MpCCI (Mesh based parallel Code Coupling Interface) is a typical product of FSI. MpCCI has been developed at the Fraunhofer-Institute SCAI in order to provide an application-independent interface for the coupling of different simulation codes. Although FSI includes both flow induced displacement and thermal flow induced thermal stress, latter has received less attention.
In this paper, temperature results of a transient thermal fluid analysis in a T pipe are used as loads for a nonlinear plastic thermal stress analysis of the pipe. In the nonlinear plastic analysis, linear proximity is used for both plastic region and elastic region. That is to say, 2-line kinematicl hardening law is used to express the stress strain characteristic of the pipe. At the same time, different numbers of load are used and the results are compared.
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Citation
Fan, Q., "Coupling of Transient Analysis of Thermal Flow and Thermal Stress for T Pipe," SAE Technical Paper 2006-01-0589, 2006, https://doi.org/10.4271/2006-01-0589.Also In
SAE 2006 Transactions Journal of Passenger Cars: Mechanical Systems
Number: V115-6; Published: 2007-03-30
Number: V115-6; Published: 2007-03-30
References
- Fan Qinyin etc. Coupled Analysis of Thermal Flow and Thermal Stress of an Engine Exhaust Manifold SAE technical paper 2004-01-135
- Fan Qinyin A Research on Coupled Transient Analysis of Thermal Flow and Thermal Stress SAE technical paper 2005-01-0516
- Matsushima etc. An Automatic Mesh Generator Based CFD System to be used as a Design Tool SAE technical paper 2001-01-0037
- Theory Manual of ANSYS9.0
- Solver Reference of User's Guide of SC/Tetra Version 5.0