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April 18, 2026AIP Advances0 citationsOpen Access

Wind environment around Chinese ancient pavilions: Study of single-eave and double-eave four-corner pavilions

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LMLinyu MengCCChenguang CaoBLB Li

Key Points

  • This research aims to understand how wind affects single-eave and double-eave four-corner pavilions.
  • Utilized computational fluid dynamics for analysis
  • Focused on single-eave and double-eave pavilion structures
  • Examined wind loads on ridges and columns
  • Investigated the influence of second-floor height on wind environment
  • Ridges and columns of four-corner pavilions experience significant wind forces leading to potential damage.
  • The enclosed second-floor structure of double-eave pavilions reduces overall wind pressure.
  • Increased second-floor height affects wind dynamics around the pavilion structure.

Abstract

The protection and restoration of ancient pavilions, an important part of China’s cultural heritage, is essential. This article uses computational fluid dynamics to analyze the wind loads on single-eave and double-eave four-corner pavilions, with a focus on double-eave pavilions featuring elevated or enclosed second floors. Results indicate that the ridges and columns of the four-corner pavilions are subjected to notable wind forces, leading to severe damage and weathering. By contrast, the enclosed second-floor structure of the double-eave pavilion acts as a wind barrier, reducing wind pressure on other parts of the pavilion. Furthermore, considering the potential relevance of the double-eave four-corner pavilion structure for modern building design, this study also explores the impact of second-floor height on the wind environment around the pavilion.

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Cite This Study

Meng et al. (2026) studied this question.

synapsesocial.com/papers/69e3207940886becb653f815https://doi.org/10.1063/5.0315093
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