Journal of Jilin University(Earth Science Edition) ›› 2026, Vol. 56 ›› Issue (2): 557-567.doi: 10.13278/j.cnki.jjuese.20240197

Previous Articles     Next Articles

Rural Spatial Suitability Analysis and Landscape Ecological Risk Assessment from Perspective of “Production-Living-Ecology” Space: A Case Study of  Zhaojiayu Village, Jizhou District, Tianjin

Yi Liangpeng, Zhang Yuxin   

  1. Faculty of Geography, Tianjin Normal University, Tianjin 300387, China
  • Online:2026-03-26 Published:2026-04-15
  • Supported by:
    Supported by the National Natural Science Foundation of China (40940010)

Abstract:

Suitability analysis is conducive to the reasonable layout of rural production, living, and ecological space, and is of great significance for coordinating rural land planning in the implementation of rural revitalization strategy in China. On this basis, landscape ecological risk assessment further supports the sustainable and high-quality development of rural areas. From the perspective of production-living-ecology spatial framework, this study establishes a hierarchical evaluation index system for spatial suitability and constructs a landscape ecological risk assessment model at the village scale. The results of the case study in Zhaojiayu Village, Jizhou District, Tianjin, indicate that the most suitable highly suitable areas for ecological space are mainly concentrated in the eastern and southeastern parts of the village. For production space, the most and highly suitable areas are predominantly located in the northern part of the village, while low-suitability and unsuitable areas are mainly found in the south. Living space is primarily composed of most, high, and moderately suitable areas, distributed in the northern region. The landscape ecological risk, ecological space exhibits low risk, with woodland and shrub areas showing the lowest levels. Living space presents a moderate level of risk, while production space demonstrates high risk—particularly in areas designated for tourism production, where the risk is highest. Based on these findings, targeted spatial adjustments and improvements are proposed to support the development of ecological civilization in the village.

Key words: production-living-ecology space, analytic hierarchy process, rural area, spatial suitability, landscape ecological risk

CLC Number: 

  • F129.9
[1] Hu Feiyue, Xu Haoxiang, Deng Chengjian, Yang Shuduo. Susceptibility Evaluation of Karst Collapse Based on Deep Learning Models: A Case Study of  Guangzhou-Foshan-Zhaoqing Area [J]. Journal of Jilin University(Earth Science Edition), 2026, 56(2): 584-597.
[2] Feng Bo, Xie Yiping, Tian Hailong, Feng Guanhong, Yang Jingang.  Suitability Assessment of CO2 Geological Storage in Saline Aquifer for Central Depression of Southern Songliao Basin Based on GIS-MCDA [J]. Journal of Jilin University(Earth Science Edition), 2025, 55(6): 1981-2000.
[3] Wu Dongzhe, Jiang Qigang, Gu Zongrui, Zhang Sen, Fu Changliang.

Evaluation of Eco-Geological Environment Quality in Strait Coastal Areas Based on AHP:Taking Southwest Coastal Areas of Malaysia

of North Coast of Malacca Strait as an Example [J]. Journal of Jilin University(Earth Science Edition), 2024, 54(2): 619-632.

[4] Wang Zhe, Fu Yu, Zhu Jingsi, Cao Wengeng. Effect Assessment on Groundwater Recharge for Typical Rivers in North China [J]. Journal of Jilin University(Earth Science Edition), 2021, 51(3): 843-853.
[5] Gong Zhiqiang, Tian Xizhao, Liu Weijiang, Chen Jian, Kang Yang, Yang Guang, Dang Zhiwen. Pumping Treatment Technology to Pump out Contaminated Groundwater: Extraction Efficiency and Extraction Endpoint [J]. Journal of Jilin University(Earth Science Edition), 2020, 50(4): 1139-1150.
[6] Yu Weijiang, Jia Chao, Di Shengtong, Li Kang, Yuan Han. Groundwater Quality Assessment Based on Comprehensive Weight and Improved Matter-Element Extension Evaluation Model [J]. Journal of Jilin University(Earth Science Edition), 2019, 49(2): 539-547.
[7] Tian Min, Dong Chunmei, Lin Chengyan, Chai Xiaoying, Wang Lijuan. Productivity Evaluation Method of Single Sand Body Gas Reservoir in Sebei-2 Biogenic Gas Field, Qaidam Basin [J]. Journal of Jilin University(Earth Science Edition), 2017, 47(4): 1060-1069.
[8] Bao Xinhua, Zhang Yu, Li Ye, Wu Yongdong, Ma Dan, Zhou Guanghui. Evaluation of Development Selection for Enhanced Geothermal System in Songliao Basin [J]. Journal of Jilin University(Earth Science Edition), 2017, 47(2): 564-572.
[9] Xiong Deming, Zhang Mingfeng, Wu Chenjun, Tuo Jincai. Evaluation Method of Terrestrial Low-Mature Gas Source Rocks by Fuzzy AHP [J]. Journal of Jilin University(Earth Science Edition), 2015, 45(6): 1620-1630.
[10] Gao Ping,Zhang Yanjun,Fang Jingtao,Zhang Qing,Li Hongwei. Correlation of Shallow Layer Rock and Soil Thermal Physical Tests in Laboratory and Field [J]. Journal of Jilin University(Earth Science Edition), 2014, 44(1): 259-267.
[11] Yu Lei,Qiu Dianming,Liu Li,Ling Feng,Li Wei,Hu Guangxin,Liu Guocai. Regularity Analysis of Eco-Environmental Vulnerability in Luanhe Basin Based on SPCA and AHP [J]. Journal of Jilin University(Earth Science Edition), 2013, 43(5): 1588-1594.
[12] GUO Ji-fa, CUI Tie-jun, CUI Wei-hong. Multi-Scale Regional Debris Flow Hazard Assessment on Fitting Scale Interval [J]. J4, 2012, 42(1): 150-160.
[13] DONG Feng-juan, SUN Wei, HU Xu-jun, JIANG Zhen. Application of Grey Analytic Hierarchy Process to Divide Flow Units-A Case from Sanjianfang Formation of Qiuling Oilfield [J]. J4, 2010, 40(6): 1255-1261.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] You Minxin,Liu Jianmin. Application Status and Progress of Isotopic Geochemistry in Research of Emeishan Large Igneous Province (ELIP)[J]. Journal of Jilin University(Earth Science Edition), 2014, 44(4): 1231 -1243 .
[2] YANG Chun-mei, LI Hong-qi,LU Da-wei,ZHANG Fang-li,GAO Yuan,SHAO Ying-chao. The Relationship Between Rock Resistivity and Water Saturation in WaterDriveOil and OilDriveWater Process[J]. J4, 2005, 35(05): 667 -671 .
[3] ZHU Hong-chen,ZHANG Jiong-fei,QUAN Heng. Two Stages of Mesozoic Lithogenesis and Mineralization in Daxing’anling Mountains[J]. J4, 2005, 35(04): 436 -0442 .
[4] ZHU Jian-wei, ZHAO Gang, LIU Bo, GUO Wei, CHENG Jun. Identification Technology and It’s Application of Well-Logging About Oil Shale[J]. J4, 2012, 42(2): 289 -295 .
[5] CHEN Li, LIANG Hai-an,ZHANG Wen-juan,RONG Fan. Application of Fuzzy Mathematics in Division of Engineering Geo-Environment of Cities-An Example of Fushun City[J]. J4, 2008, 38(5): 837 -0840 .
[6] GAO Gui-mei,SU Ke,WANG Wen-ying,GAN Shu-cai,LIU Zhao-jun. Study on Rare Earth and Trace Elements in Oil Shale Samples, Huadian, Jilin Province[J]. J4, 2006, 36(6): 974 -0979 .
[7] WU Kong-yun,JIANG Zhong-cheng,YE Ye. Influence of Different Plant Communities On Erosion Rates of Limestone Rock Blocks[J]. J4, 2007, 37(5): 967 -0971 .
[8] ZHOU Yan-zhang, CHI Bao-ming, LIU Zhong-pei. Mode of Structural Control about Groundwater Pour-in Mechanism in Xiadian Gold Deposits in Shandong Province[J]. J4, 2008, 38(2): 255 -0260 .
[9] ZHANG Yuan, LIU Lian-deng,SUN Jing-gui,CHEN Guo-hua,ZHANG Hong-xi,YAN Fu-chuan, YANG Kai-chun. Two Phase Overprinting Mineralization in Huangbuling Gold Deposit in Northwestern Jiaodong Peninsula[J]. J4, 2008, 38(1): 21 -0026 .
[10] LU Cheng-peng, SHU Long-cang, YUAN Li-bo, ZHANG Rong-rong, HUANG Bi-juan, WANG Bin-bin. Determination of Hydrogeologic Parameters of Karst Aquifer Based on Tracer Test[J]. J4, 2009, 39(4): 717 -721 .