| 建筑业高质量发展与生态韧性耦合协调度的时空分布格局与动态演进 |
| 摘要点击 478 全文点击 18 投稿时间:2025-02-05 修订日期:2025-04-02 |
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| 中文关键词 建筑业高质量发展 生态韧性 耦合协调度 时空演变特征 区域差异 动态演变趋势 |
| 英文关键词 high-quality development of the construction industry ecological resilience coupling coordination degree spatiotemporal evolution characteristics regional disparities dynamic evolution trends |
| DOI 10.13227/j.hjkx.20260226 |
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| 中文摘要 |
| 随着建筑业在高质量发展和生态韧性提升方面的持续推进,建筑业与生态韧性之间的耦合协调已成为实现可持续发展的关键问题. 基于2014~2023年中国30个省域的面板数据,运用组合赋权-TOPSIS法、耦合协调度模型、核密度估计、Daugm基尼系数和马尔可夫链模型,系统分析了建筑业高质量发展与生态韧性之间的时空耦合特征及区域差异. 结果表明:①研究期内,建筑业高质量发展与生态韧性耦合协调度总体呈上升趋势,但区域间存在显著差异. ②东部地区耦合协调度最高且增速领先,东北地区增速波动大,中西部地区增速低于全国平均水平. ③区域内差异逐渐缩小,区域间差距是两系统耦合协调的关键挑战. ④耦合协调度更倾向于保持原有状态,空间临近效应对耦合协调度的提升有显著作用. 研究深化了建筑业高质量发展与生态韧性耦合协调机制的理论认知,可为实现区域协调发展与可持续转型提供战略性理论依据与政策建议. |
| 英文摘要 |
| With the construction industry's continuous progress in high-quality development and ecological resilience enhancement, the coupling and coordination between these two dimensions have emerged as a critical issue for achieving sustainable development. Leveraging panel data from 30 Chinese provinces spanning 2014 to 2023, this study employs an integrated methodology combining the weighting-TOPSIS approach, a coupling coordination degree model, kernel density estimation, the Dagum Gini coefficient, and Markov chain analysis to systematically investigate the spatiotemporal coupling characteristics and regional disparities in the high-quality development of the construction industry and ecological resilience. The results indicate that: ①During the study period, the coupling coordination degree between high-quality development and ecological resilience exhibited an overall upward trend, albeit with significant regional heterogeneity. ②The eastern region demonstrated the highest level of coupling coordination, coupled with the most rapid growth rate, while the northeastern region experienced pronounced growth fluctuations. In contrast, the central and western regions lagged behind the national average in terms of growth. ③Intra-regional disparities gradually narrowed, whereas inter-regional differences remained a persistent challenge for the coupling coordination of the two systems. ④The coupling coordination degree displayed a tendency to maintain its existing state, with spatial proximity effects playing a significant role in enhancing coordination levels. This study advances the theoretical understanding of the coupling coordination mechanism between high-quality development and ecological resilience in the construction sector, offering strategic insights and policy recommendations for fostering regional coordinated development and sustainable transformation. |