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Overview and Mathematical Analysis of Heat Transfer in Boiling

Osama Mohammed Elmardi Suleiman Khayal1, Fathelrahman Ahmed Elmahi2, Awadalla Ahmed3 and Ahmed Ali Mustafa Mohammed4

1,2,3,4Department of Mechanical Engineering, Faculty of Engineering and Technology, Nile Valley University, Atbara – Sudan and Elsheikh Abdallah Elbadri University, Berber – Sudan

Email: osamamm64@gmail.com

Abstract

Boiling heat transfer plays a vital role across numerous industries, facilitating effective heat transfer via the liquid-to-vapor phase change. Its significance is especially pronounced in power generation and chemical processing, where it impacts both design and safety considerations. Gaining a comprehensive understanding of this process can enhance energy efficiency in heating and cooling systems. This phenomenon is essential not only for large power plants but also for small electronic devices, enabling engineers to optimize thermal energy management and foster innovation. Improving boiling heat transfer in power facilities can lead to substantially greater steam generation efficiency, resulting in increased electricity production.

Keywords: Pool Boiling; Forced Convection Boiling; Sub – Cooled or Local Boiling; Boiling Regimes; Interface Evaporation; Nucleate Boiling.


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