A multifractal method based on Spacematrix type units for analysing cross-scale characteristics of urban morphology

IF 3.6 1区 艺术学 0 ARCHITECTURE
Chenyang Zhang, Dian Shao, Junyan Yang, Xinzhe Liu
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引用次数: 0

Abstract

The urban morphological system, developed over multiple phases, exhibits complex cross-scale characteristics, with significant scale discrepancies among morphological elements at the same hierarchical level, which suggests that the cross-scale sliding model holds the potential to reveal additional characteristics of urban morphology. This paper introduces a multifractal method that integrates Spacematrix morphological classification for the analysis of detailed urban building data within defined boundaries. Using the Nanjing Old City in China as a case study, the results reveal a dense yet balanced urban form, showing annular differentiation characterized by fragmented fringe belts at the macro level and a uniform mixture of diverse land use types and building types at the micro level. The typical scale invariance and multifractality are not consistently observed across single-type analyses. The study identifies height uniformization and spaciousness differentiation in the scaling of urban morphology, attributing the multifractal mechanism to the interweaving and transformation of multiple types across scales. This enhanced multifractal approach improves spatial mapping capabilities, aiding in the elucidation of the formation mechanisms of urban morphology.
基于空间矩阵型单元的多重分形方法分析城市形态的跨尺度特征
城市形态系统的发展经历了多个阶段,呈现出复杂的跨尺度特征,在同一等级水平上,形态要素之间存在显著的尺度差异,这表明跨尺度滑动模型具有揭示城市形态其他特征的潜力。本文介绍了一种结合空间矩阵形态分类的多重分形方法,用于分析限定边界内的详细城市建筑数据。以中国南京老城为例,研究结果揭示了密集而平衡的城市形态,宏观上表现为破碎的边缘带,微观上表现为不同土地利用类型和建筑类型的均匀混合。典型的尺度不变性和多重分形在单类型分析中不一致地观察到。研究发现,城市形态在尺度上存在高度均匀化和空间分异,多重分形机制是多种类型在尺度上的交织和转化。这种增强的多重分形方法提高了空间制图能力,有助于阐明城市形态的形成机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.20
自引率
2.90%
发文量
430
审稿时长
30 weeks
期刊介绍: Frontiers of Architectural Research is an international journal that publishes original research papers, review articles, and case studies to promote rapid communication and exchange among scholars, architects, and engineers. This journal introduces and reviews significant and pioneering achievements in the field of architecture research. Subject areas include the primary branches of architecture, such as architectural design and theory, architectural science and technology, urban planning, landscaping architecture, existing building renovation, and architectural heritage conservation. The journal encourages studies based on a rigorous scientific approach and state-of-the-art technology. All published papers reflect original research works and basic theories, models, computing, and design in architecture. High-quality papers addressing the social aspects of architecture are also welcome. This journal is strictly peer-reviewed and accepts only original manuscripts submitted in English.
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