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Analysis of Shell and Tube Heat Exchanger
Details
Heat exchanger is a device that is used to transfer thermal energy between two or more fluids. To design and analysis a shell and tube heat exchanger with continuous helical baffles to improve the shell side performance of shell and tube heat exchanger Considering same flow area for both new helical design and the existing design (i.e.) conventional segmental baffle to compare the both result. However, the traditional shell and tube heat exchangers with segmental baffles has many disadvantages such as low heat transfer coefficient due to the segmental baffle arrangement, large back mixing, fouling, high leakage flow, and large cross-flow. Especially, segmental baffles bring on significant pressure drop across the exchanger when changing the direction of flow. With the help of research facilities and industries have shown much better performance of helical baffle heat exchangers as compared to the conventional ones. This results in relatively high value of shell side heat transfer coefficient, low pressure drop, and low shell side fouling, reduced bypass effects, and prevention from flow-induced vibration.
Autorentext
Mr. M. Mathanbabu is Doctoral research scholar at Anna University, Tamilnadu, India. He also serving as Junior Research fellow in Defense Research and Development Organization (DRDO) under Government college of Engineering, Bargur, Tamilnadu, India. He did his UG in Mechanical Engineering and PG in thermal engineering Anna University.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786204746258
- Genre Mechanical Engineering
- Sprache Englisch
- Anzahl Seiten 84
- Herausgeber LAP LAMBERT Academic Publishing
- Größe H220mm x B150mm x T6mm
- Jahr 2022
- EAN 9786204746258
- Format Kartonierter Einband
- ISBN 6204746251
- Veröffentlichung 21.02.2022
- Titel Analysis of Shell and Tube Heat Exchanger
- Autor Mathanbabu M , Pandian M , Davis Hans S J
- Untertitel Design and Analysis of Helical Baffles based Shell and Tube Heat Exchanger to Increase Rate of Heat Transfer
- Gewicht 143g