中国天台山地区生态文化遗产保护综合研究

IF 2.6 1区 艺术学 Q2 CHEMISTRY, ANALYTICAL
Yanxuan Zhao, Hui Wu, Yingjia Fan, Hexian Jin, Yifan Wang, Lei Lu
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引用次数: 0

摘要

本研究深入分析了中国东部天台山地区的生态文化遗产,评估了其现状,并探索了其保护和建设的有效机制。研究运用遥感技术、核密度分析和最小累积阻力模型,全面评价了该地区的环境特征及其在历史和现代保护工作中的作用。研究结果表明了生态文化遗产在不同保护区(如恢复区、控制建设区和核心保护区)的独特分布模式。此外,研究还强调了宗教信仰和宗族制度在保护传统知识和习俗方面的重要性,以及当地社区参与对保护战略的重要影响。这项研究为在具有重要宗教意义的地区实施生态文化遗产保护和发展提供了新的理论和实践支持,强调了采取保护措施的必要性以及生态与文化实践之间的协同策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Integrated study on the conservation of ecocultural heritage in the Tiantai Mountain area, China

Integrated study on the conservation of ecocultural heritage in the Tiantai Mountain area, China

This study deeply analyzes the ecocultural heritage of the Tiantai Mountain area in Eastern China, assesses its current status and explores effective mechanisms for its conservation and construction. Employing remote sensing technology, kernel density analysis and Minimum Cumulative Resistance Model, the study comprehensively evaluated the environmental characteristics of the region and its role in historical and modern conservation efforts. The results demonstrate the unique distribution patterns of ecocultural heritage in various conservation zones, such as restoration, controlled construction and core conservation zone. Furthermore, the study highlights the importance of religious beliefs and clan systems in the preservation of traditional knowledge and practices, with significant impacts of local community participation on conservation strategies. This research provides new theoretical and practical support for the implemention of ecocultural heritage conservation and development within religiously significant areas, highlights the need for conservation measures and synergistic strategies between ecological and cultural practices.

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来源期刊
Heritage Science
Heritage Science Arts and Humanities-Conservation
CiteScore
4.00
自引率
20.00%
发文量
183
审稿时长
19 weeks
期刊介绍: Heritage Science is an open access journal publishing original peer-reviewed research covering: Understanding of the manufacturing processes, provenances, and environmental contexts of material types, objects, and buildings, of cultural significance including their historical significance. Understanding and prediction of physico-chemical and biological degradation processes of cultural artefacts, including climate change, and predictive heritage studies. Development and application of analytical and imaging methods or equipments for non-invasive, non-destructive or portable analysis of artwork and objects of cultural significance to identify component materials, degradation products and deterioration markers. Development and application of invasive and destructive methods for understanding the provenance of objects of cultural significance. Development and critical assessment of treatment materials and methods for artwork and objects of cultural significance. Development and application of statistical methods and algorithms for data analysis to further understanding of culturally significant objects. Publication of reference and corpus datasets as supplementary information to the statistical and analytical studies above. Description of novel technologies that can assist in the understanding of cultural heritage.
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