Numerical Analysis of Impact of Relative Humidity on Crossflow Heat Exchangers with Staggered Configuration at Maximum Operating Temperature
Arshan Ahmed (),
Atta ul Mannan Hashmi,
Fahad Rafi Butt,
Shahbaz Ghani and
Imran Akhtar
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Arshan Ahmed: Department of Mechanical Engineering, NUST College of Electrical and Mechanical
Atta ul Mannan Hashmi: Department of Mechanical Engineering, NUST College of Electrical and Mechanical
Fahad Rafi Butt: Research Associate, Digital Pakistan Lab, NUST College of Electrical and Mechanical Engineering, National University of Sciences and Technology, Islamabad, Pakistan.
Shahbaz Ghani: Department of Mechanical Engineering, NUST College of Electrical and Mechanical
Imran Akhtar: Department of Mechanical Engineering, NUST College of Electrical and Mechanical
International Journal of Innovations in Science & Technology, 2022, vol. 3 special Issue: 4, issue 4, 84-95
Abstract:
Heat exchangers are employed in numerous applications of industry, automotive and air conditioning systems. The efficacy of heat exchangers depends upon various factors e.g., Reynolds number (Re) of the fluids, geometry of heat exchanging surfaces, and the Prandtl number of the cooling air. In this paper, the working of a crossflow heat exchanger with elliptical tubes is simulated numerically for 5000
Keywords: Heat transfer; relative humidity; Nusselt number; Prandtl number; Reynolds number (search for similar items in EconPapers)
Date: 2022
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Persistent link: https://EconPapers.repec.org/RePEc:abq:ijist1:v:3:y:2022:i:4:p:84-95
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