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Heat Transfer Analysis of Reinforced Concrete Walls in ANSYS and ABAQUS: A Comparative Study
This paper presents a comparison of the numerical results from heat transfer analysis of reinforced concrete (RC) walls under standard fire exposure. A three-dimensional (3D) finite element (FE) model was constructed using the FE modeling software ABAQUS and ANSYS to compare the simulation results of thermal analysis and cross-sectional temperature distribution of two RC walls. The predicted temperature distribution of the two FE models was verified using published experimental data. Results from the numerical analysis show that both models created using the two FE software can reasonably predict the nodal temperatures and temperature distribution through the wall. The results also indicated that ANSYS was slightly more sensitive to mesh size which resulted in higher predicted temperatures at the colder face of the wall.
Heat Transfer Analysis of Reinforced Concrete Walls in ANSYS and ABAQUS: A Comparative Study
This paper presents a comparison of the numerical results from heat transfer analysis of reinforced concrete (RC) walls under standard fire exposure. A three-dimensional (3D) finite element (FE) model was constructed using the FE modeling software ABAQUS and ANSYS to compare the simulation results of thermal analysis and cross-sectional temperature distribution of two RC walls. The predicted temperature distribution of the two FE models was verified using published experimental data. Results from the numerical analysis show that both models created using the two FE software can reasonably predict the nodal temperatures and temperature distribution through the wall. The results also indicated that ANSYS was slightly more sensitive to mesh size which resulted in higher predicted temperatures at the colder face of the wall.
Heat Transfer Analysis of Reinforced Concrete Walls in ANSYS and ABAQUS: A Comparative Study
Assad, Maha (author) / Hawileh, Rami A. (author) / Abdalla, Jamal A (author) / Abed, Farid (author)
2022-02-21
1818701 byte
Conference paper
Electronic Resource
English
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