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Analyzing the Spatio-Temporal Distribution and Network Structure of Ecotourism Flow in Zhangjiajie

doi: 10.3390/su14052496
Tourism flow is an important monitoring indicator for the industrial operation of ecotourism destinations, crucial in its planning, development, and marketing. Based on the travel journal data of popular tourism websites, this paper analyzed the spatial and temporal distribution, network structure, and the coupling characteristics between ecotourism flow and traffic accessibility in Zhangjiajie using standard deviation ellipse, social network analysis, kernel density estimation, and a spatial coupling model. The main results are as follows: (1) In terms of time distribution, the ecotourism flow in Zhangjiajie is mainly short-term tourism, with significant seasonal differences. (2) In terms of spatial structure, the ecotourism flow in Zhangjiajie presents a polygonal distribution of “core-edge”, forming a dense distribution area of Wulingyuan–Tianmen Mountain–Huanglongdong ecotourism flow. (3) In terms of spatial and temporal distribution, the connection intensity between the core area of ecotourism flow in Zhangjiajie and other scenic spots increases as the tourism length of stay increases. However, the radiation scope is mainly in the surrounding ecotourism scenic spots. (4) The coupling degree of ecotourism flow and traffic accessibility in Zhangjiajie is high, but the coupling coordination degree remains low on the whole. In addition, there is a serious mismatch between ecotourism flow and traffic accessibility in Zhangjiajie.
- Central South University of Forestry and Technology China (People's Republic of)
- College of Tourism Bulgaria
- Central South University of Forestry and Technology China (People's Republic of)
Environmental effects of industries and plants, ecotourism flow; spatial and temporal distribution; network structure; coupling coordination; Zhangjiajie, ecotourism flow, TJ807-830, TD194-195, Renewable energy sources, Environmental sciences, network structure, coupling coordination, GE1-350, Zhangjiajie, spatial and temporal distribution
Environmental effects of industries and plants, ecotourism flow; spatial and temporal distribution; network structure; coupling coordination; Zhangjiajie, ecotourism flow, TJ807-830, TD194-195, Renewable energy sources, Environmental sciences, network structure, coupling coordination, GE1-350, Zhangjiajie, spatial and temporal distribution
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