The human-natural coupling system focuses on the organic combination of natural and human processes, and the effective link of knowledge-science-decision. Through monitoring surveys, model simulations, scenario analysis, and optimization controls at different scales, the integrated study (multi-factor, multi-scale, multi-disciplinary, multi-model, and multi-source data) is carried out to explore the system's fragility, resilience, adaptability, and bearing boundaries. The study of the humannatural coupling system and the understanding of the complex interaction between humans and nature will provide a systematic and mechanism support for the sustainable development. On the basis of the concept reorganization of the human-natural coupling system research framework, and the bibliography analysis of the human-natural coupling system-the sustainable development, this paper discusses the key fields and directions of the human-natural coupling system in the future researches.
[1] Brundtland G H. World commission on environment and development[J]. Environmental Policy & Law, 1985, 14(1):26-30.
[2] Mayer A L, Donovan R P, Pawlowski C W. Information and entropy theory for the sustainability of coupled human and natural systems[J]. Ecology and Society, 2014, 19(3):11.
[3] Hull V, Tuanniu M N, Liu J. Synthesis of human-nature feedbacks[J]. Ecology and Society, 2015, 20(3):17.
[4] 傅伯杰. 新时代自然地理学发展的思考[J]. 地理科学进展, 2018, 37(1):1-7.
[5] Srinivasan V, Seto K C, Emerson R, et al. The impact of urbanization on water vulnerability:A coupled humanenvironment system approach for Chennai, India[J]. Global Environmental Change-human and Policy Dimensions, 2013, 23(1):229-239.
[6] Turner B L, Matson P A, Mccarthy J J, et al. Illustrating the coupled human-environment system for vulnerability analysis:Three case studies[J]. Proceedings of the National Academy of Sciences of the United States of America, 2003, 100(14):8080-8085.
[7] Mitchell M, Lockwood M, Moore S A, et al. Incorporating governance influences into social-ecological system models:A case study involving biodiversity conversation[J]. Journal of Environmental Planning & Management, 2015, 58(11):1903-1922.
[8] Liu J, Hull V, Batistella M, et al. Framing sustainability in a telecoupled world[J]. Ecology and Society, 2013(18):26.
[9] Qi J, Chen J, Wan S, et al. Understanding the coupled natural and human systems in Dryland East Asia[J]. Environmental Research Letters, 2012, 7(1):015202.
[10] Fu B, Wei Y. Editorial overview:Keeping fit in the dynamics of coupled natural and human systems[J]. Current Opinion in Environmental Sustainability, 2018(33):1-4.
[11] Liu J, Mooney H, Hull V, et al. Systems integration for global sustainability[J]. Science, 2015, 347(6225):963.
[12] Xoplaki E, Hassan F. Sustainable water and land management in semi-arid regions:Middle East and North Africa (MENA)[J]. PAGES News, 2009(17):86-87.
[13] Motesharrei S, Rivas J, Kalnay E, et al. Modeling sustainability:Population, inequality, consumption, and bidirectional coupling of the earth and human systems[J]. National Science Review, 2016, 3(4):470-494.
[14] Liu J, Dietz T, Carpenter S, et al. Complexity of coupled human and natural systems[J]. Science, 2007, 317(5844):1513-1516.
[15] Liu J. Integration across a metacoupled world[J]. Ecology & Society, 2017, 22(4):29.
[16] Costanza R, Leeuw S V D, Hibbard K, et al. Developing an integrated history and future of people on earth (IHOPE)[J]. Current Opinion in Environmental Sustainability, 2012, 4(1):106-114.
[17] Lewison R L, An L, Chen X. Reframing the payments for ecosystem services framework in a coupled human and natural systems context:Strengthening the integration between ecological and human dimensions[J]. Ecosystem Health and Sustainability, 2017, 3(5):1335931.
[18] 赵文武, 刘月, 冯强, 等. 人地系统耦合框架下的生态系统服务[J]. 地理科学进展, 2018, 37(1):139-151.
[19] 赵文武, 王亚萍. 1981-2015年我国大陆地区景观生态学研究文献分析[J]. 生态学报, 2016, 36(23):7886-7896.
[20] Richard A, Michele S. A conceptual model for land system dynamics as a coupled human-environment system[J]. Land, 2017, 6(4):81.
[21] Chen J, Liu Y. Coupled natural and human systems:A landscape ecology perspective[J]. Landscape Ecology, 2014, 29(10):1641-1644.
[22] Reynolds J F, Smith D M S, Lambin E F, et al. Global desertification:Building a science for dryland development[J]. Science, 2007, 316(5826):847-851.
[23] Stringer L C, Reed M S, Fleskens L, et al. A new dryland development paradigm grounded in empirical analysis of dryland systems science[J]. Land Degradation & Development, 2017, 28(7):1952-1961.
[24] Côte M, Nightingale A. Resilience thinking meets social theory situating social change in socio-ecological systems (SES) research[J]. Progress in Human Geography, 2011, 36(4):475-489.
[25] Tian Q. Chapter 1 Complex adaptive systems and a sustainability framework[M]//Rural sustainability:A complex systems approach to policy analysis. Berlin:Springer International Publishing, 2017.
[26] Wang S, Fu B J, Zhao W, et al. Structure, function, and dynamic mechanisms of coupled human-natural systems[J]. Current Opinion in Environmental Sustainability, 2018(33):87-91.
[27] Zhao Y, Wei Y, Wu B, et al. A connectivity-based assessment framework for river basin ecosystem service management[J]. Current Opinion in Environmental Sustainability, 2018(33):34-41.
[28] 王耕, 常畅, 于小茜, 等. 基于文献计量分析的珊瑚礁研究现状与热点[J]. 生态学报, 2019, 39(3):361-370.
[29] 苏香燕, 毛鹏, 游细斌, 等. 从《地理学报》 看中国地理学研究的特点与趋势——基于文献计量方法[J]. 地理学报, 2014, 69(8):1077-1092.
[30] Kramer D, Hartter J, Boag A, et al. Top 40 questions in coupled human and natural systems(CHANS) research[J]. Ecology and Society, 2017, 22(2):44.
[31] Alberti M, Asbjornsen H, Baker L, et al. Research on Coupled Human and Natural Systems (CHANS):Approach, challenges, and strategies[J]. Bulletin of the Ecological Society of America, 2011(92):218-228.
[32] Fu B J. Promiting geography for sustainablity[J]. Geography and Sustainabilty, 2020, https://doi.org/10.1016/j.geosus.2020.02.003.