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Fractal Characteristics of the Spatial Texture in Traditional Miao Villages in Qiandongnan, Guizhou, China

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  • Lei Gong

    (College of Architecture and Urban Planning, Guizhou University, Guiyang 550025, China)

  • Jianzhu Yang

    (College of Architecture and Urban Planning, Guizhou University, Guiyang 550025, China)

  • Chong Wu

    (College of Architecture and Urban Planning, Guizhou University, Guiyang 550025, China)

  • Hui Zhou

    (College of Architecture and Urban Planning, Guizhou University, Guiyang 550025, China)

Abstract

Traditional villages are the crystallization of the wisdom of human beings when living harmoniously with nature. The spatial texture of villages is complex, vague, and uncertain, making it difficult to describe with traditional Euclidean geometric spatial measurement methods. Based on the fractal theory, this study analyzes the texture of traditional Miao villages in Qiandongnan, Guizhou, China. It constructs an index system that is suitable for the fractal characteristics of traditional Miao villages. This study uses aggregation fractal dimension and capacity fractal dimension to reflect the spatial aggregation and complexity of the traditional villages, and employs the Analytic Hierarchy Process (AHP) to explore the influencing factors of spatial texture, thereby revealing the characteristics of the spatial texture of traditional villages and their relationship with the ecological environment in the process of continuous development. The research results show the following: (1) There is a significant coupling relationship among the capacity fractal dimensions of the research objects in the sampled villages, indicating that the village textures exhibit clear fractal characteristics. The villages, whether in terms of location selection or development degree, show a good fit with the surrounding environment, maintaining a relatively good original state. (2) Human factors have the greatest impact on the texture of the traditional villages, followed by natural and historical factors, economic policies, and social factors. This study provides specific development strategies for traditional Miao villages in Qiandongnan, Guizhou, offering a scientific basis for their sustainable development. It also explores a new approach for the study and conservation of the spatial morphology in traditional villages of ethnic minorities in China.

Suggested Citation

  • Lei Gong & Jianzhu Yang & Chong Wu & Hui Zhou, 2023. "Fractal Characteristics of the Spatial Texture in Traditional Miao Villages in Qiandongnan, Guizhou, China," Sustainability, MDPI, vol. 15(17), pages 1-23, September.
  • Handle: RePEc:gam:jsusta:v:15:y:2023:i:17:p:13218-:d:1232089
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    References listed on IDEAS

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    1. Chen, Yanguang, 2012. "Fractal dimension evolution and spatial replacement dynamics of urban growth," Chaos, Solitons & Fractals, Elsevier, vol. 45(2), pages 115-124.
    2. Hai-fan Wang & Shang-chia Chiou, 2019. "Study on the Sustainable Development of Human Settlement Space Environment in Traditional Villages," Sustainability, MDPI, vol. 11(15), pages 1-22, August.
    3. Yujie Jiang & Ni Li & Ziyue Wang, 2023. "Parametric Reconstruction of Traditional Village Morphology Based on the Space Gene Perspective—The Case Study of Xiaoxi Village in Western Hunan, China," Sustainability, MDPI, vol. 15(3), pages 1-33, January.
    4. Chen, Yanguang & Wang, Yihan & Li, Xijing, 2019. "Fractal dimensions derived from spatial allometric scaling of urban form," Chaos, Solitons & Fractals, Elsevier, vol. 126(C), pages 122-134.
    5. Anna Oliskiewicz-Krzywicka, 2021. "Demarcation Technique and Geometric Analysis of Village Boundaries Resulting from Delineation of Land Areas ( ujazd ) in the Middle Ages in the Wielkopolska Region (Poland)," Land, MDPI, vol. 10(6), pages 1-20, June.
    6. Lucien Benguigui & Daniel Czamanski & Maria Marinov & Yuval Portugali, 2000. "When and Where is a City Fractal?," Environment and Planning B, , vol. 27(4), pages 507-519, August.
    7. Xi Yang & Ke Song & Fuan Pu, 2020. "Laws and Trends of the Evolution of Traditional Villages in Plane Pattern," Sustainability, MDPI, vol. 12(7), pages 1-17, April.
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    Cited by:

    1. Le Feng & Lei Fan & Na Wang & Le Li & Ruohan Zhang & Ge Deng, 2024. "A Comparative Study on the Spatial Structure Characteristics of National-Level Traditional Villages in Liaoning, China," Sustainability, MDPI, vol. 16(17), pages 1-19, September.

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