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Impact of Window-to-Wall Ratio on Thermal Comfort and Energy Performance of Hybrid Cooling Systems

Dong Liu Runze Zhang Anjie Hu Na Liu Liu Tang Xiaozhou Wu Jun Wang

Fluid Dynamics & Materials Processing2025,Vol.21Issue(10):P.2579-2612,34.
Fluid Dynamics & Materials Processing2025,Vol.21Issue(10):P.2579-2612,34.DOI:10.32604/fdmp.2025.070407

Impact of Window-to-Wall Ratio on Thermal Comfort and Energy Performance of Hybrid Cooling Systems

Dong Liu 1Runze Zhang 1Anjie Hu 1Na Liu 1Liu Tang 2Xiaozhou Wu 3Jun Wang4

作者信息

  • 1. School of Civil Engineering and Architecture,Southwest University of Science and Technology,Mianyang,621010,China
  • 2. Sichuan Province Engineering Technology Research Center of Healthy Human Settlement,Chengdu,610065,China Sichuan University Engineering Design&Research Institute Co.,Ltd.,Chengdu,610065,China
  • 3. School of Civil Engineering,Dalian University of Technology,Dalian,116081,China
  • 4. Sichuan Province Engineering Technology Research Center of Healthy Human Settlement,Chengdu,610065,China College of Architecture and Environment,Sichuan University,Chengdu,610065,China
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摘要

关键词

Window-to-wall ratio/solar radiation/thermal comfort/energy consumption

分类

建筑与水利

引用本文复制引用

Dong Liu,Runze Zhang,Anjie Hu,Na Liu,Liu Tang,Xiaozhou Wu,Jun Wang..Impact of Window-to-Wall Ratio on Thermal Comfort and Energy Performance of Hybrid Cooling Systems[J].Fluid Dynamics & Materials Processing,2025,21(10):P.2579-2612,34.

基金项目

supported by the Open Fund(Nos.202303 and 202304)of the Sichuan Province Engineering Technology Research Center of Healthy Human Settlement (Nos.202303 and 202304)

Key Research and Development Program of Sichuan Province(2022YFG0138) (2022YFG0138)

supported by Postgraduate Innovation Fund Project by Southwest University of Science and Technology(25ycx1084). (25ycx1084)

Fluid Dynamics & Materials Processing

1555-256X

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