Journal Article

·2019

Exergoeconomic optimisation of an air cooled heat exchanger with copper oxide nanoparticles

Nader Javani YTU

International Journal of Exergy

Abstract

In the current study, the effect of suspended CuO nanoparticles in a fluid on the exergoeconomic and thermoeconomic properties of an air-cooled heat exchanger (ACHE) is investigated. Particle swarm optimisation algorithm is employed for multi-objective optimisation where the exergy efficiency and effectiveness versus total annual cost (TAC) are considered as two sets of objective functions for exergoeconomic and thermoeconomic optimisation, respectively. For both cases, the results are compared with the base fluid, which has no nanoparticles. Results show that nanoparticles have no meaningful effect on the exergoeconomic improvement of ACHE while a significant improvement is observed for the thermoeconomic optimisation. Also, it is shown that CuO nanoparticle added into the base fluid can decreases the heat exchanger total annual cost and increase the heat exchanger effectiveness.

Keywords

Exergy Heat exchanger Particle swarm optimization Exergy efficiency Materials science Nanoparticle Process engineering Thermodynamics Environmental science Computer science Engineering Nanotechnology Physics Algorithm

Subject Areas

Advanced Thermodynamics and Statistical Mechanics ·Statistical and Nonlinear Physics ·Physical Sciences
Heat Transfer and Optimization ·Mechanical Engineering ·Physical Sciences
Solar-Powered Water Purification Methods ·Renewable Energy, Sustainability and the Environment ·Physical Sciences

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