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Energy saving potential of a fresh air pre-cooling system using radiative sky cooling

Dikai Xu1Sébastien Boncoeur2Gang Tan3Jingtao Xu4Hua Qian1,5Dongliang Zhao1,5( )
School of Energy and Environment, Southeast University, Nanjing, Jiangsu 210096, China
Pôle Universitaire Leonard de Vinci, 12 Avenue Léonard de Vinci, Courbevoie 92400, France
Department of Civil and Architectural Engineering, University of Wyoming, Laramie, WY 82071, USA
Ningbo Ruiling Advanced Energy Materials Institute Co., Ltd, Ningbo 315500, China
Engineering Research Center of Building Equipment, Energy, and Environment, Ministry of Education, China
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Abstract

To achieve required indoor air quality, fresh air supply in buildings should meet relevant standards and regulations. However, the handling of fresh air introduced a cooling load that takes up a large portion of building energy consumption, especially in tropical and subtropical areas. A proper way should be employed to reduce the cooling load of fresh air. Radiative sky cooling, which is the process that an object cools itself by emitting thermal radiation to outer space without any energy input, is a cost-effective and eco-friendly technology. In this work, a fresh air pre-cooling system using radiative sky cooling is proposed to reduce fresh air cooling load. The system, consisting of filters, a radiative air-cooling system, an air handling unit (AHU), fans, etc., is installed on the rooftop of the modeled building. Six cities in low-latitude areas are selected and investigated. Results show that with the radiative air-cooling system installed, annual cooling energy consumption of the modeled building can be reduced by around 10% in most cities. For arid areas, e.g., Abu Dhabi, the system has even better performance with 19.34% annual cooling energy saving.

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Building Simulation
Pages 167-178

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Cite this article:
Xu D, Boncoeur S, Tan G, et al. Energy saving potential of a fresh air pre-cooling system using radiative sky cooling. Building Simulation, 2022, 15(2): 167-178. https://doi.org/10.1007/s12273-021-0802-y

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Received: 17 December 2020
Revised: 24 February 2021
Accepted: 02 April 2021
Published: 19 July 2021
© Tsinghua University Press and Springer-Verlag GmbH Germany, part of Springer Nature 2021