Exergy and sustainability-based optimisation of flat plate solar collectors by using a novel mathematical model

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Inderscience Publishers

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info:eu-repo/semantics/openAccess

Özet

A novel mathematical model was used to estimate optimum tilt and azimuth angles, considering exergoeconomic and sustainability aspects. This approach made the solar collector’s performance evaluation independent of experimental precision. The optimal angles of 41.191°, 10.038° for Izmir maximised the total surface radiation, exergetic efficiency, exergetic sustainability index, and minimised the destruction and cost rates due to the enhanced useful exergy stream. However, for thermal efficiency maximisation, useful collected solar energy and total surface radiation competed, leading to lower tilt and azimuth angles (0, –0.008). A multi-objective optimisation process chose the pair (0, 259.428) to maximise first law efficiency and exergoeconomic factor. Copyright © 2023 Inderscience Enterprises Ltd.

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exergoeconomic factor, flat plate solar collector, non-dominated genetic sorting algorithm, single and multi-objective optimisation, tilt and azimuth angle

Kaynak

International Journal of Exergy

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42

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2

Künye

Tiktaş, A., Gunerhan, H., & Hepbasli, A. (2023). Exergy and sustainability-based optimisation of flat plate solar collectors by using a novel mathematical model. International Journal of Exergy, 42(2), 192-215.

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