Paper Publications
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2024-04-13
16) Jianxin Yang, Tang, W., Gong, J., Shi, R., Zheng, M., Dai, Y*., 2023, Simulating urban expansion using cellular automata model with spatiotemporally explicit representation of urban demand, Landscape and Urban Planning 231:104640.
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2024-04-13
17) Jianxin Yang, Li, J., Xu, F., Li, S., Zheng, M., Gong, J*., 2022, Urban development wave: Understanding physical spatial processes of urban expansion from density gradient of new urban land, Computers, Environment and Urban Systems 97:101867.
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2024-04-13
18) 杨建新,刘 静,龚健,刘玉铃,朱江洪*. 不同空间聚类算法在识别优质集聚基本农田图斑中的应用及对比研究[J]. 中国土地科学, 2022, 36(1): 107-117. DOI: 10.11994/zgtdkx.20211227.150530
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2024-04-13
19) 戴云哲, 杨建新*, 龚健, 叶菁, 李靖业, 李云. AutoPaCA:耦合过程-模式的城镇空间增长模拟模型[J]. 地球信息科学学报, 2022, 24(1): 87-99. DOI:10.12082/dqxxkx.2022.210421
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2024-04-13
20) Xu, F., Chi, G., Zhang, Z., Jianxin Yang, 2023, How does quality regional growth affect land resources dependence in China? Evidence based on spatial Durbin panel models, Resources Policy 81:103402.
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2024-04-13
21) 潘越,龚健,杨建新,等.基于生态重要性和MSPA核心区连通性的生态安全格局构建 ——以桂江流域为例[J].中国土地科学,2022,36(4):86-95
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2024-04-13
22) Gao, Jing, Jian Gong, Jianxin Yang, Jingye Li, and Shichen Li. "Measuring Spatial Connectivity between patches of the heat source and sink (SCSS): A new index to quantify the heterogeneity impacts of landscape patterns on land surface temperature." Landscape and Urban Planning 217 (2022): 104260.
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2024-04-13
23) Li, Jingye, Jian Gong, Jean-Michel Guldmann, and Jianxin Yang. 2021. Assessment of Urban Ecological Quality and Spatial Heterogeneity Based on Remote Sensing: A Case Study of the Rapid Urbanization of Wuhan City. Remote Sensing 13, no. 21: 4440. https://doi.org/10.3390/rs13214440
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2024-04-13
24) Yang Jianxin, Gong Jian,Tang Wenwu, Liu Cheng. Patch-based cellular automata model of urban growth simulation: Integrating feedback between quantitative composition and spatial configuration. Computers, Environment and Urban Systems 2020, 79, 101402.
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2024-04-13
25) Yang Jianxin, Gong Jian, and Tang Wenwu. Prioritizing Spatially Aggregated Cost-Effective Sites in Natural Reserves to Mitigate Human-Induced Threats: A Case Study of the Qinghai Plateau, China. Sustainability, 2019, 11(5), 1346.
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