基于知识图谱的个体冷却服装研究进展  

Research Progress of Individual Cooling Clothing Based on Knowledge Graph

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作  者:张文京 张昭华[1,2] ZHANG Wenjing;ZHANG Zhaohua(College of Fashion and Design,Donghua University,Shanghai 200051,China;Key Laboratory of Modern Fashion Design and Technology,Ministry of Education,Donghua University,Shanghai 200051,China)

机构地区:[1]东华大学服装与艺术设计学院,上海200051 [2]东华大学现代服装设计与技术教育部重点试验室,上海200051

出  处:《纺织科技进展》2025年第2期5-11,共7页Progress in Textile Science & Technology

基  金:教育部人文社会科学规划项目(23YJAZH209);中央高校基本科研业务项目(2232024B-03)。

摘  要:为了理清国内外制冷服相关领域的发展脉络和研究前沿,并预测未来发展趋势。以来自Web of Science核心合集的1265篇文献和来自CNKI数据库的1031篇文献为对象,借助Cite Space软件进行文献计量学和可视化分析。结果表明,国内外近5年有关制冷服研究热度较高,文献来源较多的期刊为APPLIED ENERGY,中美两国贡献较多,且合作紧密。主要领域为建筑能源,近年研究热点为热舒适和节能,研究前沿为相变材料、数值模拟、机器学习和生理参数。未来制冷服的设计和优化将会以提高热舒适性和节能性等为研究目标,引入新兴研究方法、材料技术和评价指标。To clarify the development trajectory and research frontiers in the field of cooling garments both domestically and internationally,and to predict future trends,1265 documents from the Web of Science Core Collection and 1031 documents from the CNKI database were analyzed by using bibliometric and visualization tools provided by CiteSpace software.The results indicate a high level of research activity on cooling garments over the past five years,with numerous publications in the journal of APPLIED ENER-GY.The United States and China have made significant contributions to this field and maintain close collaborative relationships.The primary research domain is building energy,with recent research focusing on thermal comfort and energy savings.Research frontiers include phase change materials,numerical simulation,machine learning,and physiological parameters.The future design and optimization of cooling garments will aim to enhance thermal comfort and energy efficiency by incorporating emerging research methods,material technologies,and evaluation metrics.

关 键 词:制冷服 知识图谱 Cite Space 文献计量学 可视化分析 

分 类 号:TS941.73[轻工技术与工程—服装设计与工程]

 

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