A Failure Mechanism Study of Boiler Water-Wall Tube using Numerical and Experimental Analysis

Author:

Asiri* Dr. Saeed,

Abstract

The aim of this study is to investigate the boiler tube failure mechanism using finite element analysis and experimental Analysis. The numerical software used is ANSYS steady-state thermal and static structural analysis. The independent variable for the analysis is temperature from flue gas and wall thickness of boiler tube. The scope of the study is to determine the temperature distribution, von mises stress, deformation and safety factor by implemented design of experiment. The material of boiler tube sketch in two dimensional for simulation is SA210 Grade C. this is standard requirements for the boiler made of seamless medium-carbon steel with superheater tubes according to ASTM. From the result and discussion, the potential of failure mechanism will determine upon independent variables. In addition, hoop stress or circumference stress will help to support the statement of failure of boiler tube.

Publisher

Blue Eyes Intelligence Engineering and Sciences Engineering and Sciences Publication - BEIESP

Subject

Electrical and Electronic Engineering,Mechanics of Materials,Civil and Structural Engineering,General Computer Science

Reference13 articles.

1. ASME. (2018, 05 12). Mechanical Properties for SA-210 Grade C. Retrieved from Total Materia: https://www.totalmateria.com/page.aspx?ID=Home&LN=EN

2. Basu, P., Kefa, C., & Jestin, L. (2000). Boilers and Burners Design and Theory. New York: Springer-Verlag

3. Convective Heat Transfer. (2018, 05 13). Retrieved from Engineering Tool Box: https://www.engineeringtoolbox.com/convective-heat-transfer-d_430.html

4. Metallurgical investigation of failed boiler water-wall tubes received from a thermal power station;Dhua;Engineering Failure Analysis,2010

5. Factors of Safety. (2018, 05 13). Retrieved from Engineering Tool Box: https://www.engineeringtoolbox.com/factors-safety-fos-d_1624.html

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