Coordination Dynamics between Population Change and Built-Up Land Expansion in Mainland China during 2000–2020
Abstract
:1. Introduction
2. Material and Methods
2.1. Data Used and Pre-Processing
2.1.1. Population Data
- (1)
- GPWv4 data
- (2)
- LandScan data
- (3)
- WorldPop data
- (4)
- China gridded population (CASpop) data
- (5)
- Population census data
2.1.2. Geographic and Economic Data
- (1)
- China county boundaries
- (2)
- Land-cover data
- (3)
- Digital elevation data
- (4)
- Economic data
2.2. Methodology
2.2.1. Accuracy Assessment of Population Datasets
2.2.2. Analysis of Population Dynamics
- (1)
- Average annual growth rate of population (PAG)
- (2)
- Mann–Kendall trend analysis
2.2.3. Assessment of the Built-Up Land Dynamics
- (1)
- The dynamic degree of a land-cover type
- (2)
- Built-up land expansion differentiation index
2.2.4. Approach to Measuring Human–Land Coordination Dynamics
- (1)
- The human–land elastic coefficient (HLEC)
- (2)
- The change rate of the built-up area per capita
2.2.5. Calculation of Topographic Relief
3. Results
3.1. Accuracy Assessment of Population Datasets
3.2. Spatial and Temporal Characteristics of Population Evolution
3.3. Spatiotemporal Changes of Built-Up Land
3.4. Human–Land Coordination Dynamics and Its Relationship with Economy Development
3.5. The Controls of Human–Land Relationship
4. Discussions
4.1. Comparison of Methods for Evaluating Human–Land Relationship
4.2. Reasons for the Changing Dynamics of Human–Land Relationships in China
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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GPWv4 | LandScan | WorldPop | CASpop | |
---|---|---|---|---|
Versions | UN WPP-Adjusted Population Count, v4.11 | / | Unconstrained individual countries 2000–2020 UN adjusted | / |
Producing agency | CIESIN, Columbia University | Oak Ridge National Laboratory | University of Southampton | Chinese Academy of Sciences |
Temporal coverage | 2000, 2005, 2010, 2015, 2020 | 2000–2020 | 2000–2020 | 1990, 1995, 2000, 2005, 2010, 2015, 2019 |
Spatial resolution | 30 arc-seconds | 30 arc-seconds | 30 arc-seconds | 1 km |
Methodology | area weighting | dasymetric mapping | random forest | multi-factor weighting |
Auxiliary data | water masks | road network, slope, land cover, nighttime light data | land cover, digital elevation data, slope, net primary productivity, nighttime light data, etc. | land cover, nighttime light data, settlement density, etc. |
τ | p-Value | Trend Category (Z Value) | Trend Characteristics |
---|---|---|---|
p ≤ 0.01 | 3 | Extremely significant increase | |
0.01 < p ≤ 0.05 | 2 | Significant increase | |
0.05 < p ≤ 0.1 | 1 | Slight increase | |
p > 0.1 | 0 | No change | |
0.05 < p ≤ 0.1 | −1 | Slight decrease | |
0.01 < p ≤ 0.05 | −2 | Significant decrease | |
p ≤ 0.01 | −3 | Extremely significant decrease |
Categories | HLEC | BPR | Description | |||
---|---|---|---|---|---|---|
BR | PR | Relationship between the BR and PR | Coordination Status | |||
1 | HLEC > 1 | >0 | + | + | BR > PR | Uncoordinated |
2 | <0 | − | − | BR < PR | ||
3 | 0 < HLEC < 1 | <0 | + | + | BR < PR | Coordinated |
4 | >0 | − | − | BR > PR | ||
5 | HLEC < 0 | >0 | + | − | BR > PR | Uncoordinated |
6 | <0 | − | + | BR < PR | ||
7 | HLEC = 0 | >0 | / | − | BR > PR | Uncoordinated |
8 | <0 | / | + | BR < PR | ||
9 | HLEC = 1 | =0 | / | / | BR = PR | Coordinated |
10 | / | ± | ± | 0 | / | Uncoordinated |
2000 | 2010 | |||||
---|---|---|---|---|---|---|
r | RMSE (Person) | MBE (Person) | r | RMSE (Person) | MBE (Person) | |
GPWv4 | 0.960 | 130,954 | −15.2 | 0.887 | 232,953 | −16.2 |
LandScan | 0.907 | 176,829 | −15.4 | 0.847 | 264,578 | −15.7 |
WorldPop | 0.960 | 131,260 | −17.4 | 0.889 | 231,097 | −18.6 |
CASpop | 0.941 | 125,122 | 6.6 | 0.888 | 204,474 | 2.5 |
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Zhao, T.; Wang, W. Coordination Dynamics between Population Change and Built-Up Land Expansion in Mainland China during 2000–2020. Sustainability 2023, 15, 16059. https://doi.org/10.3390/su152216059
Zhao T, Wang W. Coordination Dynamics between Population Change and Built-Up Land Expansion in Mainland China during 2000–2020. Sustainability. 2023; 15(22):16059. https://doi.org/10.3390/su152216059
Chicago/Turabian StyleZhao, Tianqing, and Wen Wang. 2023. "Coordination Dynamics between Population Change and Built-Up Land Expansion in Mainland China during 2000–2020" Sustainability 15, no. 22: 16059. https://doi.org/10.3390/su152216059
APA StyleZhao, T., & Wang, W. (2023). Coordination Dynamics between Population Change and Built-Up Land Expansion in Mainland China during 2000–2020. Sustainability, 15(22), 16059. https://doi.org/10.3390/su152216059