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Article: Modeling sustainability: Population, inequality, consumption, and bidirectional coupling of the Earth and human Systems

TitleModeling sustainability: Population, inequality, consumption, and bidirectional coupling of the Earth and human Systems
Authors
KeywordsBidirectional couplings and feedbacks
Data assimilation
Earth and human systemmodels
Inequality
Migration
Population
Sustainability
Issue Date2017
Citation
National Science Review, 2017, v. 3, n. 4, p. 470-494 How to Cite?
AbstractOver the last two centuries, the impact of the Human System has grown dramatically, becoming strongly dominant within the Earth System in many different ways. Consumption, inequality, and population have increased extremely fast, especially since about 1950, threatening to overwhelm the many critical functions and ecosystems of the Earth System. Changes in the Earth System, in turn, have important feedback effects on the Human System, with costly and potentially serious consequences. However, current models do not incorporate these critical feedbacks. We argue that in order to understand the dynamics of either system, Earth SystemModels must be coupled with Human SystemModels through bidirectional couplings representing the positive, negative, and delayed feedbacks that exist in the real systems. In particular, key Human System variables, such as demographics, inequality, economic growth, and migration, are not coupled with the Earth System but are instead driven by exogenous estimates, such as United Nations population projections.This makes current models likely to miss important feedbacks in the real Earth-Human system, especially those that may result in unexpected or counterintuitive outcomes, and thus requiring different policy interventions from current models.The importance and imminence of sustainability challenges, the dominant role of the Human System in the Earth System, and the essential roles the Earth System plays for the Human System, all call for collaboration of natural scientists, social scientists, and engineers in multidisciplinary research and modeling to develop coupled Earth-Human system models for devising effective science-based policies and measures to benefit current and future generations.
Persistent Identifierhttp://hdl.handle.net/10722/369295
ISSN
2023 Impact Factor: 16.3
2023 SCImago Journal Rankings: 2.934

 

DC FieldValueLanguage
dc.contributor.authorMotesharrei, Safa-
dc.contributor.authorRivas, Jorge-
dc.contributor.authorKalnay, Eugenia-
dc.contributor.authorAsrar, Ghassem R.-
dc.contributor.authorBusalacchi, Antonio J.-
dc.contributor.authorCahalan, Robert F.-
dc.contributor.authorCane, Mark A.-
dc.contributor.authorColwell, Rita R.-
dc.contributor.authorFeng, Kuishuang-
dc.contributor.authorFranklin, Rachel S.-
dc.contributor.authorHubacek, Klaus-
dc.contributor.authorMiralles-Wilhelm, Fernando-
dc.contributor.authorMiyoshi, Takemasa-
dc.contributor.authorRuth, Matthias-
dc.contributor.authorSagdeev, Roald-
dc.contributor.authorShirmohammadi, Adel-
dc.contributor.authorShukla, Jagadish-
dc.contributor.authorSrebric, Jelena-
dc.contributor.authorYakovenko, Victor M.-
dc.contributor.authorZeng, Ning-
dc.date.accessioned2026-01-22T06:16:23Z-
dc.date.available2026-01-22T06:16:23Z-
dc.date.issued2017-
dc.identifier.citationNational Science Review, 2017, v. 3, n. 4, p. 470-494-
dc.identifier.issn2095-5138-
dc.identifier.urihttp://hdl.handle.net/10722/369295-
dc.description.abstractOver the last two centuries, the impact of the Human System has grown dramatically, becoming strongly dominant within the Earth System in many different ways. Consumption, inequality, and population have increased extremely fast, especially since about 1950, threatening to overwhelm the many critical functions and ecosystems of the Earth System. Changes in the Earth System, in turn, have important feedback effects on the Human System, with costly and potentially serious consequences. However, current models do not incorporate these critical feedbacks. We argue that in order to understand the dynamics of either system, Earth SystemModels must be coupled with Human SystemModels through bidirectional couplings representing the positive, negative, and delayed feedbacks that exist in the real systems. In particular, key Human System variables, such as demographics, inequality, economic growth, and migration, are not coupled with the Earth System but are instead driven by exogenous estimates, such as United Nations population projections.This makes current models likely to miss important feedbacks in the real Earth-Human system, especially those that may result in unexpected or counterintuitive outcomes, and thus requiring different policy interventions from current models.The importance and imminence of sustainability challenges, the dominant role of the Human System in the Earth System, and the essential roles the Earth System plays for the Human System, all call for collaboration of natural scientists, social scientists, and engineers in multidisciplinary research and modeling to develop coupled Earth-Human system models for devising effective science-based policies and measures to benefit current and future generations.-
dc.languageeng-
dc.relation.ispartofNational Science Review-
dc.subjectBidirectional couplings and feedbacks-
dc.subjectData assimilation-
dc.subjectEarth and human systemmodels-
dc.subjectInequality-
dc.subjectMigration-
dc.subjectPopulation-
dc.subjectSustainability-
dc.titleModeling sustainability: Population, inequality, consumption, and bidirectional coupling of the Earth and human Systems-
dc.typeArticle-
dc.description.naturelink_to_subscribed_fulltext-
dc.identifier.doi10.1093/nsr/nww081-
dc.identifier.scopuseid_2-s2.0-85014110369-
dc.identifier.volume3-
dc.identifier.issue4-
dc.identifier.spage470-
dc.identifier.epage494-
dc.identifier.eissn2053-714X-

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