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library:rethinking_energy_20202030 [2023/06/03 21:08] – created - external edit 127.0.0.1library:rethinking_energy_20202030 [2024/03/18 17:19] (current) elizabethherfel
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 ======Rethinking Energy 2020-2030====== ======Rethinking Energy 2020-2030======
 +This report analyzes the impending disruption of the energy sector by 100% solar, wind, and battery (SWB) systems, which will transform energy production and create superabundance at near-zero marginal cost by 2030.\\ 
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 + (Generated with the help of GPT-4) \\ 
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 ^  Quick Facts  ^^ ^  Quick Facts  ^^
-| Report location:  |[[https://www.rethinkx.com/energy-reports| source]]  +|Report location:  |[[https://www.rethinkx.com/energy-reports|source]]   
-| Language:  | English   +|Language:  |English  
-| Publisher:  |[[encyclopedia:rethinkx|RethinkX]] +|Publisher:  |[[encyclopedia:rethinkx|RethinkX]] 
-| Publication date:  |October 1, 2020  | +|Publication date:  |October 1, 2020  | 
-| Authors:  |Adam Dorr, Tony Seba  | +|Authors:  |Adam Dorr, Tony Seba  | 
-| Time horizon:  | 2030    | +|Time horizon:  |2030    | 
-| Geographic focus:  |united_states   | +|Geographic focus:  |United States, California, Texas, New England   | 
-| Page count:  |62  |+|Page count:  |62  |
  
 =====Methods===== =====Methods=====
- +The research method involves data analysis of historical electricity demand, solar and wind generation, and cost trajectories for solar photovoltaic, wind power, and lithium-ion batteries. It uses a "clean energy U-curve" to determine the optimal mix of generation and storage capacity.\\  
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 + (Generated with the help of GPT-4) \\
  
 =====Key Insights===== =====Key Insights=====
 +The report forecasts a profound energy sector disruption due to improving technologies and cost trajectories of solar, wind, and batteries. By 2030, 100% SWB systems will be economically viable, leading to stranded fossil fuel assets and a transformed energy system with superabundant, near-zero cost energy.\\  
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-<span #categories_box> Categories:  {{tag>2020_publication_year}} |  {{tag>2030_time_horizon}} |  {{tag>2030s_time_horizon}} |  {{tag>English_publication_language}} |  {{tag>batteries}} |  {{tag>local_economic_development}} |  {{tag>solar_energy}} |  {{tag>united_states_geographic_scope}} |  {{tag>wind}}   </span>  +<span #categories_box> Categories:  {{tag>2020_publication_year}} |  {{tag>2030_time_horizon}} |  {{tag>2030s_time_horizon}} |  {{tag>California_geographic_scope}} |  {{tag>English_publication_language}} |  {{tag>New_England_geographic_scope}} |  {{tag>Texas_geographic_scope}} |  {{tag>United_States_geographic_scope}} |  {{tag>batteries}} |  {{tag>clean_energy_u-curve}} |  {{tag>cost_trajectories}} |  {{tag>energy_disruption}} |  {{tag>energy_economics}} |  {{tag>energy_storage}} |  {{tag>energy_system_transformation}} |  {{tag>lithium-ion_batteries}} |  {{tag>local_economic_development}} |  {{tag>solar_energy}} |  {{tag>solar_photovoltaic}} |  {{tag>super_power}} |  {{tag>united_states_geographic_scope}} |  {{tag>wind}} |  {{tag>wind_power}}   </span>  
  
  
 ~~DISCUSSION~~ ~~DISCUSSION~~
  
Last modified: 2023/06/03 21:08 by 127.0.0.1