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基于CiteSpace的大跨度钢结构施工技术应用现状分析

Analysis of Current Application Status of Long-span Steel Structure Construction Technology Based on CiteSpace

  • 摘要: 为系统地把握大跨度空间钢结构施工技术领域的研究现状与脉络,本文以 CNKI 数据库2000年~2024年的2353篇相关文献为对象,采用CiteSpace可视化工具展开计量分析。经过研究发现:在年发文量方面,该领域年发文量从2000年14篇增至2024年208篇,演变轨迹与我国钢结构产业政策导向高度契合,呈现起步慢、增速高的趋势;在核心作者方面,295位核心作者发文占比达58.59%,已形成稳定的学术共同体;研究机构合作方面,施工单位发文占比90.58%,说明该领域技术协作网络以企业间交流为主;在研究热点方面,因为大跨空间钢结构施工方案的编制是保障施工安全与质量的核心环节,所以“施工方案”出现频率最高,以101次词频成为研究热点核心;在研究前沿方面,该领域前期研究对象以预应力等方面为主,中期表现为大跨空间钢结构的各种表现形式,现今正朝着数字化、智能化方向发展。

     

    Abstract: To systematically grasp the current research status and development trajectory of the field of large-span spatial steel structure construction technology, this paper conducts a quantitative analysis using the CiteSpace visualization tool on 2,353 relevant documents from the CNKI database spanning from 2000 to 2024. The research findings are as follows: In terms of annual publication volume, the number of publications in this field has increased from 14 in 2000 to 208 in 2024. The evolution trajectory is highly aligned with the policy orientation of China's steel structure industry, exhibiting a trend of slow initial growth and high subsequent growth rate. In terms of core authors, 295 core authors account for 58.59% of the publications, indicating the formation of a stable academic community. Regarding research institution collaboration, construction companies account for 90.58% of the publications, indicating that the technical collaboration network in this field is primarily based on inter-enterprise communication. In terms of research hotspots, as the preparation of construction schemes for large-span spatial steel structures is a core aspect to ensure construction safety and quality, the term "construction scheme" appears most frequently, with a frequency of 101, making it the core research hotspot. In terms of research frontiers, early research in this field primarily focused on prestressing and other aspects, while mid-term research exhibited various manifestations of large-span spatial steel structures. Currently, it is moving towards digitalization and intelligence.

     

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