Thermal design of a shell-and-tube heat exchanger for methanol cooling

Authors

  • Amaury Pérez Sánchez Universidad de Camagüey “Ignacio Agramonte Loynaz”, Facultad de Ciencias Aplicadas, Departamento de Ingeniería Química, Camagüey, Cuba
  • Elizabeth Ranero González Universidad de Camagüey “Ignacio Agramonte Loynaz”, Facultad de Ciencias Aplicadas, Departamento de Ingeniería Química, Camagüey, Cuba
  • Eddy Pérez Sánchez Empresa Servicios Automotores S.A., Dirección Comercial, Ciego de Ávila, Cuba
  • Norlem Liaño Abascal Universidad de Camagüey “Ignacio Agramonte Loynaz”, Facultad de Ciencias Aplicadas, Departamento de Ingeniería Química, Camagüey, Cuba
  • Cosette Gastamiza Sicilia Fábrica de Cervezas Tínima, Área de Envasado, Camagüey, Cuba

DOI:

https://doi.org/10.5377/nexo.v33i02.10807

Keywords:

Cost, Design, Evaluation, Shell-and-tube heat exchanger

Abstract

The heat transfer between fluids is an essential part of most chemical processes. In this work the thermal design of a shell-and-tube heat exchanger was carried out to cool a methanol stream from 60 to 30 °C, using water at 5 °C as a cooling agent. The designed equipment will have a shell diameter of 0.39 m, a tube pitch of 0.0254 m, a baffle number of 26, a baffle spacing of 0.186 m, a number of tubes of 124, a surface over design (OS) of 26.25% and a calculated length (LC) of 3.71 m. The calculated pressure drops were 3,972.93 Pa and 3,099.59 Pa for water and methanol, respectively. The designed shell and tube heat exchanger is suitable for the service required, since the OS does not exceed 40%; it is true that Lc < LT; and the calculated values ​​of the pressure drops are not greater than the maximum allowable pressure drop for both streams. Finally, the designed equipment will have a preliminary cost of USD $ 41,800.

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Published

2020-12-31

How to Cite

Pérez Sánchez, A., Ranero González, E., Pérez Sánchez, E., Liaño Abascal, N., & Gastamiza Sicilia, C. (2020). Thermal design of a shell-and-tube heat exchanger for methanol cooling. Nexo Scientific Journal, 33(02), 753–776. https://doi.org/10.5377/nexo.v33i02.10807

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