Source Journal of Chinese Scientific and Technical Papers
Included as T2 Level in the High-Quality Science and Technology Journals in the Field of Architectural Science
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Volume 56 Issue 6
Jun.  2026
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Article Contents
ZHANG Liheng, WANG Zijian, CHEN Zhiyu, HOU Xinyu, GUO Lixia. Emotional Gravity and Behavioral Pathways: Simulation of Spatial Cognitive Behavior in the Historic District of Hohhot City in the Digital Media Context[J]. INDUSTRIAL CONSTRUCTION, 2026, 56(6): 25-34. doi: 10.3724/j.gyjzG26012703
Citation: ZHANG Liheng, WANG Zijian, CHEN Zhiyu, HOU Xinyu, GUO Lixia. Emotional Gravity and Behavioral Pathways: Simulation of Spatial Cognitive Behavior in the Historic District of Hohhot City in the Digital Media Context[J]. INDUSTRIAL CONSTRUCTION, 2026, 56(6): 25-34. doi: 10.3724/j.gyjzG26012703

Emotional Gravity and Behavioral Pathways: Simulation of Spatial Cognitive Behavior in the Historic District of Hohhot City in the Digital Media Context

doi: 10.3724/j.gyjzG26012703
  • Received Date: 2026-01-27
    Available Online: 2026-07-06
  • Online digital information is increasingly influencing individuals’ spatial cognitive processes and has become an important medium for perceiving urban images. This study took the historic district of Hohhot as the research object, aimed to simulate the influence of virtual space on cognitive behavioral choices by identifying elements of image perception and cognitive emotions, so as to effectively determine optimal experiential paths and modes within physical space. Based on online videos and textual information, public perceptions of physical space were extracted to identify spatial experience hotspots, analyze emotional tendencies and behavioral choice weights, and simulate perceptual paths of urban image elements under multiple weighting scenarios. The results indicate that features derived from online video and textual data effectively reveal the clustered distribution patterns of image perception spaces; the frequency of image-related mentions and emotional characteristics provide a basis for determining behavioral choice weights; and the simulated paths within historic urban areas exhibit behavioral characteristics of “main corridor movement-alley attraction-node stopping-plaza diffusion”. The analytical framework of “image hotspot extraction-emotional perception analysis-cognitive path simulation” provides a basis for delineating spatial renewal areas and optimizing experiential design.
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