Pular para o conteúdo principal

ETHNOS_APP

Início • Busca • Periódicos • Lista 0

GCAM v5.1

Representing the linkages between energy, water, land, climate, and economic systems

Dados Bibliográficos

ID23337233
AutoresKatherine Calvin (0000-0003-2191-4189, Joint Global Change Research Institute, autor correspondente), Pralit Patel (0000-0003-3992-1061, Joint Global Change Research Institute, autor correspondente), Leon Clarke (0000-0003-4491-5272, Joint Global Change Research Institute), Ghassem Asrar (0000-0002-1066-8384, Joint Global Change Research Institute), Ben Bond‐Lamberty (0000-0001-9525-4633, Joint Global Change Research Institute, autor correspondente), Ryna Cui (0000-0002-1186-8230, Joint Global Change Research Institute), Ryna Yiyun Cui (0000-0002-8531-4126), Alan Di Vittorio (0000-0002-8139-4640, Lawrence Berkeley National Laboratory, autor correspondente), Kalyn Dorheim (0000-0001-8093-8397, Joint Global Change Research Institute, autor correspondente), Jae Edmonds (0000-0002-3210-9209, Joint Global Change Research Institute), Corinne Hartin (0000-0003-1834-6539, Joint Global Change Research Institute), Mohamad Hejazi (0000-0003-4194-2208, Joint Global Change Research Institute, autor correspondente), Russell Horowitz (0000-0002-0270-3127, University of California, Los Angeles), Gokul Iyer (0000-0002-3565-7526, Joint Global Change Research Institute), Page Kyle (0000-0002-1257-8358, Joint Global Change Research Institute), Sonny Kim (Joint Global Change Research Institute), R Link (0000-0002-7071-248X, Joint Global Change Research Institute, autor correspondente), Haewon McJeon (0000-0003-0348-5704, Joint Global Change Research Institute), Steven J Smith (0000-0003-3248-5607, Joint Global Change Research Institute, autor correspondente), ABIGAIL SNYDER (0000-0002-9034-9948, Joint Global Change Research Institute), Stephanie Waldhoff (0000-0002-8073-0868, Joint Global Change Research Institute), Marshall Wise (0000-0002-2718-0051, Joint Global Change Research Institute)
Ano2019
Volume12
Fascículo2
Páginas677-698
Data de publicação2019-02-15
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoGeoscientific Model Development (JOURNAL)
Identificadores do periódicoISSN: 1991-959X • E-ISSN: 1991-9603
EditoraCopernicus GmbH (PUBLISHER • DE)
DOI10.5194/gmd-12-677-2019
OpenAlexW2896083460
IdiomaEN
Citações recebidas71
Referências citadas61

This paper describes GCAM v5.1, an open source model that represents the linkages between energy, water, land, climate, and economic systems. GCAM is a market equilibrium model, is global in scope, and operates from 1990 to 2100 in 5-year time steps. It can be used to examine, for example, how changes in population, income, or technology cost might alter crop production, energy demand, or water withdrawals, or how changes in one region's demand for energy affect energy, water, and land in other regions. This paper describes the model, including its assumptions, inputs, and outputs. We then use 11 scenarios, varying the socioeconomic and climate policy assumptions, to illustrate the results from the model. The resulting scenarios demonstrate a wide range of potential future energy, water, and land uses. We compare the results from GCAM v5.1 to historical data and to future scenario simulations from earlier versions of GCAM and from other models. Finally, we provide information on how to obtain the model.

Biology · Climate change · Economics · Natural resource economics · Population · Range (aeronautics) · Climate Change Policy and Economics · Ecology · Engineering · Environmental Impact and Sustainability · Environmental Science · Water-Energy-Food Nexus Studies

  • Modeling justice without deciding it

    Open Access•Mel George•Energy Research & Social Science•2026

  • Strategic coal-power phaseout reallocates carbon-water co-benefits towards water-stressed regions in China

    Open Access•Lin lv, Chi Zhang et al.•Sustainable Futures•2026

  • Low‐carbon power transition may shift mercury emissions from coal combustion to nonferrous metal smelting

    Open Access•Kun Peng, Peipei Tian et al.•Journal of Industrial Ecology•2025

  • Exploring the Relationship Between Land Use and the Food‐Water‐Energy Nexus

    Open Access•Ke Yang, Qi Han et al.•Land Degradation and Development•2025

  • Global emissions pathways under different socioeconomic scenarios for use in CMIP6

    Open Access•Matthew Gidden, Keywan Riahi et al.•Geoscientific Model Development•2019

  • A bottom–up regional potential assessment of bioenergy with carbon capture and storage in Germany

    Open Access•Mohammad Sadr, Danial Esmaeili Aliabadi et al.•Environmental Research Letters•2024

  • Implications of climate change impacts for emission and land use scenario development

    Open Access•Claudia Tebaldi, Brian C O''Neill et al.•Environmental Research Letters•2026

  • The role of carbon border adjustment in steel decarbonization

    Open Access•Russell Horowitz, Dirk-Jan Van De Ven et al.•Environmental Research Letters•2026

  • Predicting weather impacts on corn production in a data-limited region using a transfer learning approach

    Open Access•Srishti Vishwakarma, Stephanie A Morris et al.•Environmental Research Letters•2025

  • Integrated energy-water-land nexus planning to guide national policy

    Open Access•Zarrar Khan, Thomas Wild et al.•Environmental Research Letters•2020

  • Climate change impacts on the energy system

    Open Access•Victhalia Zapata, David Gernaat et al.•Environmental Research Letters•2022

  • Empirical estimation of weather-driven yield shocks using biophysical characteristics for U.S. rainfed and irrigated maize, soybeans, and winter wheat

    Open Access•ABIGAIL SNYDER, Stephanie Waldhoff et al.•Environmental Research Letters•2021

  • A clustering approach to improve spatial representation in water-energy-food models

    Open Access•Abhishek Shivakumar, Thomas Alfstad et al.•Environmental Research Letters•2021

  • Future evolution of virtual water trading in the United States electricity sector

    Open Access•Neal T Graham, Gokul Iyer et al.•Environmental Research Letters•2021

  • The role and deployment timing of direct air capture in Saudi Arabia’s net-zero transition

    Open Access•Yang Qiu, Gokul Iyer et al.•Environmental Research Letters•2024

  • Energy potentials and water requirements from perennial grasses on abandoned land in the former Soviet Union

    Open Access•Jan Sandstad Næ, Cristina Maria Iordan et al.•Environmental Research Letters•2022

  • Seeing the forest for the trees

    Open Access•Kanishka B Narayan, Pralit Patel et al.•Environmental Research Letters•2024

  • The implications of uncertain renewable resource potentials for global wind and solar electricity projections

    Open Access•Silvia R Santos da Silva, Gokul Iyer et al.•Environmental Research Letters•2021

  • Cost-optimal vs. policy-driven scenarios for a decarbonised European energy system

    Open Access•Natasha Frilingou, Dirk-Jan Van De Ven et al.•Environmental Research Letters•2026

  • Global estimates of groundwater withdrawal trends and uncertainties

    Open Access•Sara Nazari, Robert Reinecke et al.•Environmental Research Letters•2025

  • Residential energy demand, emissions, and expenditures at regional and income-decile level for alternative futures

    Open Access•Jon Sampedro, Stephanie Waldhoff et al.•Environmental Research Letters•2024

  • A deep dive into the modelling assumptions for biomass with carbon capture and storage (BECCS)

    Open Access•Isabela Butnar, Pei-Hao Li et al.•Environmental Research Letters•2019

  • The role of direct air capture and negative emissions technologies in the shared socioeconomic pathways towards +1.5 °C and +2 °C futures

    Open Access•Jay Fuhrman, Andrés F Clarens et al.•Environmental Research Letters•2021

  • Characterizing the multisectoral impacts of future global hydrologic variability

    Open Access•Abigail Birnbaum, Ghazal Shabestanipour et al.•Environmental Research Letters•2024

  • Tradeoffs between uniform land protection and biodiversity-specific land protection with <2 °C global warming

    Open Access•Alan Di Vittorio, Kanishka B Narayan et al.•Environmental Research Letters•2025

  • State-level drivers of future fine particulate matter mortality in the United States

    Open Access•Yang Ou, Steven J Smith et al.•Environmental Research Letters•2019

  • Long-term basin-scale hydropower expansion under alternative scenarios in a global multisector model

    Open Access•Ying Zhang, Matthew Binsted et al.•Environmental Research Letters•2022

  • Implications of different income distributions for future residential energy demand in the U.S

    Open Access•Jon Sampedro, Gokul Iyer et al.•Environmental Research Letters•2021

  • The future evolution of energy-water-agriculture interconnectivity across the US

    Open Access•Zarrar Khan, Thomas Wild et al.•Environmental Research Letters•2021

  • Enhancing energy and food access through reduction of income inequality does not jeopardize the achievement of existing climate pledges

    Open Access•Jon Sampedro, Dirk-Jan Van De Ven et al.•Environmental Research Letters•2025

  • Global agricultural responses to interannual climate and biophysical variability

    Open Access•Xin Zhao, Katherine Calvin et al.•Environmental Research Letters•2021

  • India’s pathway to net zero by 2070

    Open Access•Vaibhav Chaturvedi, Anjali Viswamohanan et al.•Environmental Research Letters•2024

  • Limits to forests-based mitigation in integrated assessment modelling

    Open Access•Théo Rouhette, Neus Escobar et al.•Environmental Research Letters•2024

  • Non-parametric projections of the net-income distribution for all U.S. states for the Shared Socioeconomic Pathways

    Open Access•Kelly Casper, Kanishka B Narayan et al.•Environmental Research Letters•2023

  • Pathways of bio-jet adoption in the US aviation industry with implications for the overall transportation and energy sectors

    Open Access•Kanishka B Narayan, Taryn Waite et al.•Environmental Research Letters•2026

  • A unifying theory of foreign intervention in domestic climate policy

    Open Access•Anthony Harding, Juan Moreno-Cruz•Journal of Economic Behavior &…•2026

  • Agricultural market integration preserves future global water resources

    Open Access•Neal T Graham, Gokul Iyer et al.•One Earth•2023

  • Substantial air quality and health co-benefits from combined federal and subnational climate actions in the United States

    Open Access•Xinyuan Huang, Wei Peng et al.•One Earth•2025

  • Getting into the doughnut

    Open Access•Estelle Paulus, Michael Obersteiner et al.•One Earth•2025

  • Agricultural workforce as a potential bottleneck of future cropland availability

    Open Access•Hongtak Lee, Haewon McJeon et al.•Nature Sustainability•2026

  • From least-cost to SDG-optimal sectoral allocation of Paris Agreement-compatible mitigation efforts

    Open Access•Dirk-Jan Van De Ven, Clàudia Rodés-Bachs et al.•Nature Climate Change•2026

  • Near-term transition and longer-term physical climate risks of greenhouse gas emissions pathways

    Open Access•Ajay Gambhir, Mel George et al.•Nature Climate Change•2022

  • A framework for national scenarios with varying emission reductions

    Open Access•Shinichiro Fujimori, Volker Krey et al.•Nature Climate Change•2021

  • The surprisingly inexpensive cost of state-driven emission control strategies

    Open Access•Wei Peng, Gokul Iyer et al.•Nature Climate Change•2021

  • A multimodel analysis of post-Glasgow climate targets and feasibility challenges

    Open Access•Dirk-Jan Van De Ven, Shivika Mittal et al.•Nature Climate Change•2023

  • Diverse carbon dioxide removal approaches could reduce impacts on the energy–water–land system

    Open Access•Jay Fuhrman, Candelaria Bergero et al.•Nature Climate Change•2023

  • Ratcheting of climate pledges needed to limit peak global warming

    Open Access•Gokul Iyer, Yang Ou et al.•Nature Climate Change•2022

  • Food–energy–water implications of negative emissions technologies in a +1.5 °C future

    Open Access•Jay Fuhrman, Haewon McJeon et al.•Nature Climate Change•2020

  • Model fatigue

    Open Access•Guillemette Legrand, Helen Pritchard et al.•Artnodes•2025

  • Assessing the chronic physical risks of climate change for the financial sector

    Open Access•Francisco Estrada, Miguel A Altamirano del Carmen et al.•Ecological Economics•2026

  • A dynamic life cycle assessment model for long-term carbon emissions prediction of buildings

    Open Access•Xing Su, Yixiang Huang et al.•Sustainable Cities and Society•2023

  • Current and future thermal effects and spatial optimization modelling of urban greenspace in megacity

    Open Access•Rundong Feng, Shenghe Liu et al.•Sustainable Cities and Society•2025

  • The Interplay Between Climate and Urban Expansion on Building Energy Demand in Morocco

    Open Access•Mengqi Zhao, Lahouari Bounoua et al.•Urban Science•2025

  • The “Nuclear Energy Paradox”- Investigating nuclear imaginaries in energy projections

    Open Access•Fanny Böse, Alexander Wimmers et al.•Energy Research & Social Science•2026

  • A window of (missed) opportunity? A comprehensive stocktake and energy-system impact assessment of global Covid-19 recovery packages

    Open Access•Eleftheria Zisarou, Panagiotis Fragkos et al.•Energy Research & Social Science•2025

  • Existing tools, user needs and required model adjustments for energy demand modelling of a carbon-neutral Europe

    Open Access•Souran Chatterjee, Vassilis Stavrakas et al.•Energy Research & Social Science•2022

  • Assessing synergies and trade-offs of diverging Paris-compliant mitigation strategies with long-term SDG objectives

    Open Access•Jorge Moreno, Dirk-Jan Van De Ven et al.•Global Environmental Change•2022

  • The impact of agricultural trade approaches on global economic modeling

    Open Access•Xin Zhao, Marshall Wise et al.•Global Environmental Change•2022

  • Understanding agricultural market dynamics in times of crisis

    Open Access•Kilian Kuhla, Patryk Kubiczek et al.•Ecological Economics•2025

  • Health effects of a global carbon price

    Open Access•Noelle E Selin•Nature Sustainability•2023

  • Firm-level supply chains to minimize unemployment and economic losses in rapid decarbonization scenarios

    Open Access•Johannes Stangl, András Borsos et al.•Nature Sustainability•2024

  • Global peak water limit of future groundwater withdrawals

    Open Access•Hassan Niazi, Thomas Wild et al.•Nature Sustainability•2024

  • Effects of global climate mitigation on regional air quality and health

    Open Access•Xinyuan Huang, Vivek Srikrishnan et al.•Nature Sustainability•2023

  • Hydropower expansion in eco-sensitive river basins under global energy-economic change

    Open Access•Kamal Chowdhury, Thomas Wild et al.•Nature Sustainability•2024

  • Grounding global environmental assessments through bottom-up futures based on local practices and perspectives

    Open Access•Laura Pereira, Ghassem Asrar et al.•Sustainability Science•2021

  • The biophysical economic structure of four developed countries

    Open Access•Rajib Sinha, Christopher Kennedy•Journal of Industrial Ecology•2025

  • Machine learning reveals insufficient carbon capture storage deployment to meet climate goals

    Open Access•Xiyu Li, Yixin Sun et al.•Global Environmental Change•2026

  • Achieving carbon neutrality in China via carbon capture and storage with onshore-offshore geological storage

    Open Access•Xin Wen, Zezheng Li et al.•Global Environmental Change•2026

  • A review on advancing sustainable energy

    Open Access•A Saravanan, Y P Ragini et al.•Sustainable Futures•2025

  • Sustainability under policy transitions in the Yangtze River Economic Belt, China

    Open Access•Hongyan Bian, Yaxue Zhao et al.•Habitat International•2024

  • Photovoltaics development pathway and environmental benefits dynamics from technological evolution in China

    Open Access•Guyu Zhu, Guangpu Zhu et al.•Environmental Impact Assessment…•2026

  • Some Contributions of Integrated Assessment Models of Global Climate Change

    Open Access•John P Weyant, John Weyant•Review of Environmental Economics…•2017

  • International climate policy architectures

    Open Access•Leon Clarke, Jae Edmonds et al.•Energy Economics•2009

  • A new scenario framework for climate change research

    Open Access•Elmar Kriegler, Jae Edmonds et al.•Climatic Change•2014

  • Implications of Limiting CO 2 Concentrations for Land Use and Energy

    Open Access•Marshall Wise, Katherine Calvin et al.•Science•2009

  • The green, blue and grey water footprint of crops and derived crop products

    Open Access•Mesfin M Mekonnen, Arjen Y Hoekstra•Hydrology and earth system sciences•2011

  • Quantifying the indirect impacts of climate on agriculture

    Open Access•Katherine Calvin, Kate Calvin et al.•Environmental Research Letters•2017

  • Integrated human-earth system modeling—state of the science and future directions

    Open Access•Katherine Calvin, Ben Bond‐Lamberty•Environmental Research Letters•2018

  • The SSP4

    Open Access•Katherine Calvin, Ben Bond‐Lamberty et al.•Global Environmental Change•2016

  • The human core of the shared socioeconomic pathways

    Open Access•Samir Kc, Wolfgang Lutz•Global Environmental Change•2014

  • Ssp3

    Open Access•Shinichiro Fujimori, Tomoko Hasegawa et al.•Global Environmental Change•2016

  • The marker quantification of the Shared Socioeconomic Pathway 2

    Open Access•Oliver Fricko, Peter Havlík et al.•Global Environmental Change•2016

  • The Shared Socioeconomic Pathways and their energy, land use, and greenhouse gas emissions implications

    Open Access•Keywan Riahi, Detlef P Van Vuuren et al.•Global Environmental Change•2016

  • Land-use futures in the shared socio-economic pathways

    Open Access•Alexander Popp, Katherine Calvin et al.•Global Environmental Change•2016

  • Fossil-fueled development (SSP5)

    Open Access•Elmar Kriegler, Nico Bauer et al.•Global Environmental Change•2016

  • The roads ahead

    Open Access•Brian C O''Neill, Elmar Kriegler et al.•Global Environmental Change•2015

  • Long-term economic growth projections in the Shared Socioeconomic Pathways

    Open Access•Rob Dellink, Jean Chateau et al.•Global Environmental Change•2015

  • Future air pollution in the Shared Socio-economic Pathways

    Open Access•Shilpa Rao, Zbigniew Klimont et al.•Global Environmental Change•2016

Obras citantes distintas71
Citações por ano10,14
Intervalo de citações2019 - 2026 (8)
Velocidade de citaçãocurrent
Altamente citadoNão
Tipos de citaçãoNeutras: 67
Ethnos_APP • Projeto Open Source • Licença MIT • Frontend v2.0.0 • Privacidade e Cookies • Documentação da API: api.ethnos.app/docs • Código da API: GitHub • DOI: 10.5281/zenodo.17049435 • Código do Frontend: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae