摘要
The uniform design method was adopted and the twenty-four groups of different geometric and physical pa-rameters were chosen. The finite element model was built. Comparisons between the simulation results and the test re-sults prove that the simulation results are correct. The distribution of the temperature field of the chimney foundationwas analyzed. The multivariate linear regression of the hightest tomperature was performed on the inner wall of thechimney foundation by the numerical calculated results. The fitting property of the highest temperature with six influ-ence factors was obtained. A simple method for the calculation of the temperature field of the chimney foundation wasprovided.
The uniform design method was adopted and the twenty-four groups of different geometric and physical parameters were chosen. The finite element model was built. Comparisons between the simulation results and the test results prove that the simulation results are correct. The distribution of the temperature field of the chimney foundation was analyzed. The multivariate linear regression of the hightest tomperature was performed on the inner wall of the chimney foundation by the numerical calculated results. The fitting property of the highest temperature with six influence factors was obtained. A simple method for the calculation of the temperature field of the chimney foundation was provided.