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April 11, 2026Buildings0 citationsOpen Access

Low-Carbon Design Strategies for the Renewal of Memorial Spaces in Traditional Settlements: A Case Study of Tangyue Village in Huizhou, China

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ZXZhenlin XieHefei University of TechnologyRYRenhang YinHefei University of TechnologyYYYang YangHefei University of Technology

Key Points

  • The study aims to explore strategies for renewing memorial spaces in Tangyue Village with a focus on low-carbon solutions.
  • Conducted semi-structured interviews and behavioral observations to identify user needs.
  • Applied the Fuzzy Kano model for classifying user requirements.
  • Developed a multi-level evaluation system for sustainability indicators.
  • Employed the DEMATEL approach along with the entropy weight method for prioritization.
  • Utilized DepthmapX for space syntax simulations to assess design impacts.
  • Identify key design priorities such as organization of spaces and use of low-carbon materials.
  • Rainwater harvesting and spatial accessibility emerged as essential features.
  • Optimized designs significantly improved spatial accessibility, permeability, and vitality.
  • Overall low-carbon performance was enhanced through proposed strategies.

Abstract

Tangyue Village in Huizhou, China, is renowned for its monumental Bao-family archway complex and well-preserved ancestral halls, which host and memorial activities embodying rich clan traditions and regional cultural identity. However, these traditional spaces face contemporary challenges, including functional obsolescence, high energy consumption, and limited sustainability. Focusing on the memorial spaces of Tangyue Village, this study explores low-carbon design strategies for their renewal by developing a comprehensive research framework that integrates multi-stakeholder demand analysis, weighting evaluation, case-based design, and performance verification. Initially, user needs were identified through semi-structured interviews and behavioral observations, followed by the application of the Fuzzy Kano (FKANO) model to classify and filter these requirements. Subsequently, a multi-level evaluation system was established, encompassing low-carbon performance, spatial functionality, cultural continuity, and community participation. The Decision-Making Trial and Evaluation Laboratory (DEMATEL) approach combined with the entropy weight method was then employed to determine the relative importance of each indicator. The results indicate that the organization of memorial spaces, the application of low-carbon materials, rainwater harvesting, and spatial accessibility represent key design priorities. Space syntax simulations conducted via DepthmapX further demonstrate that the optimized design significantly improves spatial accessibility, permeability, and vitality while enhancing the overall low-carbon performance. Ultimately, this study proposes practical low-carbon renewal strategies for memorial spaces in traditional settlements, offering a systematic approach that balances cultural heritage preservation with environmental sustainability.

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Cite This Study

Xie et al. (2026) studied this question.

synapsesocial.com/papers/69d9e62078050d08c1b765ffhttps://doi.org/10.3390/buildings16081475
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