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Research Article

Infrared-transparent bubble wrap assisted high-intensity radiant cooling

Xudong Wei1Huijun Wu1( )Ke Du1Jiaan Gu1Gongsheng Huang2Xinhua Xu3
School of Civil Engineering and Transportation, Guangzhou University, Guangzhou 510006, China
Department of Architecture and Civil Engineering, City University of Hong Kong, Hong Kong, China
Department of Building Environment & Energy Engineering, Huazhong University of Science & Technology, Wuhan 430074, China
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Abstract

Covering the radiant cooling surface with infrared-transparent membrane effectively improves the condensation resistance and cooling capacity of radiant cooling. However, the air layer structure formed by the infrared-transparent and double-layer hollow membranes is easy to destroy, resulting in condensation problems. Inspired by the hollow structure of natural bamboo, an infrared-transparent bubble wrap assisted radiant cooling panel (BWRCP) aiming at improving the strength and cooling capacity was proposed by using the infrared-transparent bubble wrap consisting of infrared-transparent membrane and air-filled pores to layer the radiant cooling panel. Both experimental investigation and numerical calculation of the cooling capacity of the infrared-transparent bubble wrap assisted radiant cooling system were carried out. Experimental results showed that the cooling capacity of BWRCP at condensation-free condition was 93.54 W/m2, which was 33% higher than traditional radiant cooling without covering infrared-transparent bubble wrap. Numerical results showed that the air-contact surface temperature of the infrared-transparent bubble wrap was higher than the dew point temperature. It provides condensation-free operation in the thermal environment of 26 ℃ and 45%–80% RH. Therefore, compared with traditional radiant cooling, BWRCP significantly improves the cooling capacity at condensation-free condition. It demonstrated a novel structure design and operation guidance for the high-performance radiant cooling technology.

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Building Simulation
Pages 47-63

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Cite this article:
Wei X, Wu H, Du K, et al. Infrared-transparent bubble wrap assisted high-intensity radiant cooling. Building Simulation, 2025, 18(1): 47-63. https://doi.org/10.1007/s12273-024-1205-7

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Received: 23 August 2024
Revised: 02 October 2024
Accepted: 16 October 2024
Published: 29 November 2024
© Tsinghua University Press 2024