Telecoupling Toolbox
Spatially Explicit Tools for Studying Telecoupled Human and Natural Systems
Datos Bibliográficos
| ID | 4238903 |
|---|---|
| Autores | Francesco Tonini (0000-0002-1938-3449, Michigan State University), Jianguo Liu (0000-0001-6344-0087, Michigan State University) |
| Año | 2017 |
| Volumen | 22 |
| Número | 4 |
| Fecha de publicación | 2017-01-01 |
| Peer Reviewed | Sí |
| Open Access | Sí |
| Tipo | ARTICLE |
| Revista | Conservation Ecology (JOURNAL) |
| Identificadores de la revista | ISSN: 1195-5449 • E-ISSN: 1708-3087 |
| Editorial | Resilience Alliance (PUBLISHER • CA) |
| DOI | 10.5751/es-09696-220411 |
| OpenAlex | W2766073571 |
| Idioma | EN |
| Citas recibidas | 12 |
| Referencias citadas | 15 |
Telecoupling is a novel interdisciplinary umbrella concept that enables natural and social scientists to understand and generate information for managing how humans and nature can sustainably coexist worldwide. The telecoupling framework gains its distinction by enabling researchers to dive deeply into systemic complexities, even if systems are far away from each other. It is also ambitious in its aim to meet challenges unencumbered by disciplines. To understand the forces affecting sustainability across local to global scales, it is essential to build a comprehensive set of spatially explicit tools for describing and quantifying multiple reciprocal socioeconomic and environmental interactions over distances. We introduce the Telecoupling Toolbox, the first set of tools developed to map and identify the five major interrelated components of the telecoupling framework: systems, flows, agents, causes, and effects. The modular design of the toolbox allows the integration of existing tools and software to assess synergies and trade-offs associated with policies and other local to global interventions. We show applications of the toolbox by using two representative telecoupling case studies that address a variety of socioeconomic and environmental issues. The results suggest that the toolbox can systematically map and quantify multiple telecouplings under various contexts while providing users with an easy-to-use interface. It is our hope that the innovative, free, and open-source toolbox can provide a useful platform to address globally important issues, such as land use and land cover change, species invasion, migration, flows of ecosystem services, and trade of goods and products
Environmental resource management · Geography · Human systems engineering · Programming language · Toolbox · Computer Science · Environmental Science · Land Use and Ecosystem Services · Artificial Intelligence
Integration across a metacoupled world
Network analysis as a tool for quantifying the dynamics of metacoupled systems
Disentangling the Local Coupling and Telecoupling of Urbanization and Ecosystem Services to Reveal Archetypical Social–Ecological Interactions in Urban Agglomerations
Metacoupling of Water Transfer
For IA, a ‘place-based’ towards ‘flow-based’ landslide ahead
Spillover systems in a telecoupled Anthropocene
Quantifying interregional flows of multiple ecosystem services – A case study for Germany
Making land-use change and markets
Between Promise and Performance
Telecoupled impacts of livestock trade on non-communicable diseases
The metacoupled Arctic
A missing link? Network analysis as an empirical approach for critical physical geography
Effects of household dynamics on resource consumption and biodiversity
Systems integration for global sustainability
An Overview of the GTAP 9 Data Base
Earth System Science for Global Sustainability
Biodiversity hotspots for conservation priorities
Telecoupling framework for research on migratory species in the Anthropocene
Globalization’s unexpected impact on soybean production in South America
Forest Sustainability in C hina and Implications for a Telecoupled World
International wood trade and forest change
Long-term dynamics of household size and their environmental implications
Agent-Based Modeling in Coupled Human and Natural Systems (CHANS)
Multiple telecouplings and their complex interrelationships
Urban water sustainability
Coupled human and natural systems approach to wildlife research and conservation
Framing Sustainability in a Telecoupled World
| Obras citantes distintas | 12 |
|---|---|
| Citas por año | 1,33 |
| Intervalo de citas | 2017 - 2025 (9) |
| Velocidad de citación | recent |
| Altamente citado | No |
| Tipos de cita | Neutras: 9 |