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首页> 外文期刊>Journal of Industrial Ecology >A Social-Ecological-lnfrastructural Systems Framework for Interdisciplinary Study of Sustainable City Systems An Integrative Curriculum Across Seven Major Disciplines
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A Social-Ecological-lnfrastructural Systems Framework for Interdisciplinary Study of Sustainable City Systems An Integrative Curriculum Across Seven Major Disciplines

机译:可持续城市系统跨学科研究的社会-生态-基础设施系统框架,涵盖七个主要学科的综合课程

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Cities are embedded within larger-scale engineered infrastructures (e.g., electric power; water supply, and transportation networks) that convey natural resources over large distances for use by people in cities. The sustainability of city systems therefore depends upon complex, cross-scale interactions between the natural system, the transboundary engineered infrastructures, and the multiple social actors and institutions that govern these infrastructures. These elements, we argue, are best studied in an integrated manner using a novel social-ecological-infrastructural systems (SEIS) framework. In the biophysical subsystem, the SEIS framework integrates urban metabolism with life cycle assessment to articulate trans-boundary infrastructure supply chain water energy, and greenhouse gas (GHG) emission footprints of cities. These infrastructure footprints make visible multiple resources (water energy, mate'rials) used directly or indirectly (embodied) to support human activities in cities. They inform cross-scale and cross-infrastructure sector strategies for mitigating environmental pollution, public health risks and supply chain risks posed to cities. In the social subsystem, multiple theories drawn from the social sciences explore interactions between three actor categories—individual resource users, infrastructure designers and operators, and policy actors—who interact with each other and with infrastructures to shape cities toward sustainability outcomes. Linking of the two subsystems occurs by integrating concepts, theories, laws, and models across environmental sciences/climatology, infrastructure engineering, industrial ecology, architecture, urban planning, behavioral sciences, public health, and public affairs. Such integration identifies high-impact leverage points in the urban SEIS. An interdisciplinary SEIS-based curriculum on sustainable cities is described and evaluated for its efficacy in promoting systems thinking and interdisciplinary vocabulary development, both of which are measures of effective frameworks.
机译:城市被嵌入大规模工程基础设施(例如电力,供水和交通网络)中,这些基础设施可以远距离输送自然资源以供城市居民使用。因此,城市系统的可持续性取决于自然系统,跨界工程基础设施以及管理这些基础设施的多个社会行为者和机构之间的复杂,跨规模的相互作用。我们认为,最好使用新颖的社会生态基础设施系统(SEIS)以综合方式研究这些要素。在生物物理子系统中,SEIS框架将城市代谢与生命周期评估相结合,以阐明跨界基础设施供应链的水能和城市的温室气体(GHG)排放足迹。这些基础设施足迹使可见的多种资源(水能,物质)直接或间接(体现)用于支持城市中的人类活动。它们为减少城市环境污染,公共卫生风险和供应链风险提供了跨规模和跨基础架构的行业策略。在社会子系统中,从社会科学中汲取的多种理论探索了三种行为者类别之间的相互作用,即个体资源用户,基础设施设计者和运营商以及政策行为者之间的相互作用,他们相互影响并与基础设施相互作用,以使城市朝着可持续发展的方向发展。这两个子系统的链接是通过整合环境科学/气候学,基础设施工程,工业生态,建筑,城市规划,行为科学,公共卫生和公共事务中的概念,理论,法律和模型而实现的。这种整合确定了城市SEIS中的高影响力杠杆点。描述并评估了基于跨学科SEIS的可持续城市课程,并评估了其在促进系统思维和跨学科词汇发展方面的功效,两者都是有效框架的量度。

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