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Articles

Revisiting radiant cooling: condensation-free heat rejection using infrared-transparent enclosures of chilled panels

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Pages 152-159 | Received 16 Aug 2018, Accepted 09 Dec 2018, Published online: 31 Jan 2019

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Kian Wee Chen, Eric Teitelbaum, Forrest Meggers, Jovan Pantelic & Adam Rysanek. (2021) Exploring membrane-assisted radiant cooling for designing comfortable naturally ventilated spaces in the tropics. Building Research & Information 49:5, pages 483-495.
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A. Leroy, B. Bhatia, J. Sircar & E.N. Wang. (2022) Thermal transport in solar-reflecting and infrared-transparent polyethylene aerogels. International Journal of Heat and Mass Transfer 184, pages 122307.
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James Riffat, Cagri Kutlu, Emmanuel Tapia-Brito, Yuehong Su & Saffa Riffat. (2022) A preliminary experimental study of a novel incorporation of chilled ceiling with phase change materials and transparent membrane cover. International Journal of Low-Carbon Technologies 17, pages 258-265.
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Ziwen Zhong, Jianlei Niu, Wei Ma, Shuhuai Yao, Meng Yang & Zuankai Wang. (2021) An experimental study of condensation on an aluminum radiant ceiling panel surface with superhydrophobic treatment. Energy and Buildings 252, pages 111393.
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E Teitelbaum, D Aviv, M Hou, J Li, A Rysanek & F Meggers. (2021) Validation of radiant and convective heat transfer models of photonic membrane using non-invasive imaging of condensation pattern. Journal of Physics: Conference Series 2069:1, pages 012100.
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R. He, Y. Liao, J. Huang, T. Cheng, X. Zhang, P. Yang, H. Liu & K. Liu. (2021) Radiant air-conditioning with infrared transparent polyethylene aerogel. Materials Today Energy 21, pages 100800.
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Francesca Romana d’Ambrosio Alfano, Giorgio Ficco, Andrea Frattolillo, Boris Igor Palella & Giuseppe Riccio. (2021) Mean Radiant Temperature Measurements through Small Black Globes under Forced Convection Conditions. Atmosphere 12:5, pages 621.
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Yifan Wu, Hongli Sun, Mengfan Duan, Borong Lin & Hengxin Zhao. (2021) Dehumidification-adjustable cooling of radiant cooling terminals based on a flat heat pipe. Building and Environment 194, pages 107716.
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Ke Du, Huijun Wu, Gongsheng Huang, Xinhua Xu & Yanchen Liu. (2021) Condensation-free radiant cooling with double-skin infrared-transparent membranes. Building and Environment 193, pages 107660.
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Francesca Romana d’Ambrosio Alfano, Marco Dell'isola, Giorgio Ficco, Boris Igor Palella & Giuseppe Riccio. (2021) On the measurement of the mean radiant temperature by means of globes: An experimental investigation under black enclosure conditions. Building and Environment 193, pages 107655.
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Eric Teitelbaum, Kian Wee Chen, Forrest Meggers, Hongshan Guo, Nicholas Houchois, Jovan Pantelic & Adam Rysanek. (2020) Globe thermometer free convection error potentials. Scientific Reports 10:1.
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Yongqiang Luo, Tian Yan & Nan Zhang. (2020) Study on dynamic thermal characteristics of thermoelectric radiant cooling panel system through a hybrid method. Energy 208, pages 118413.
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Muhammed A. Hassan & Omar Abdelaziz. (2020) Best practices and recent advances in hydronic radiant cooling systems – Part II: Simulation, control, and integration. Energy and Buildings 224, pages 110263.
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Eric Teitelbaum, Kian Wee ChenDorit AvivKipp BradfordLea RuefenachtDenon SheppardMegan TeitelbaumForrest MeggersJovan Pantelic & Adam Rysanek. (2020) Membrane-assisted radiant cooling for expanding thermal comfort zones globally without air conditioning. Proceedings of the National Academy of Sciences 117:35, pages 21162-21169.
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Eric Teitelbaum, Prageeth Jayathissa, Clayton Miller & Forrest Meggers. (2020) Design with Comfort: Expanding the psychrometric chart with radiation and convection dimensions. Energy and Buildings 209, pages 109591.
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Nicholas Houchois, Eric Teitelbaum, Kian Wee Chen, Sean Rucewicz & Forrest Meggers. (2019) The SMART sensor: fully characterizing radiant heat transfer in the built environment. Journal of Physics: Conference Series 1343:1, pages 012073.
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Eric Teitelbaum, Prageeth Jayathissa, Clayton Miller & Forrest Meggers. (2019) Design with Comfort: Enhancing the psychrometric chart with radiation and convection dimensions. Energy and Buildings.
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