Energy Vision 2020 Integrated Resource Plan

Energy Vision 2020 Integrated Resource Plan

Author:

Publisher:

Published: 1995

Total Pages: 24

ISBN-13:

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Download or read book Energy Vision 2020 Integrated Resource Plan written by and published by . This book was released on 1995 with total page 24 pages. Available in PDF, EPUB and Kindle. Book excerpt:


Energy Vision 2020

Energy Vision 2020

Author: Tennessee Valley Authority

Publisher:

Published: 1995

Total Pages:

ISBN-13:

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Book Synopsis Energy Vision 2020 by : Tennessee Valley Authority

Download or read book Energy Vision 2020 written by Tennessee Valley Authority and published by . This book was released on 1995 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:


Energy Vision 2020

Energy Vision 2020

Author: Tennessee Valley Authority

Publisher:

Published: 1995

Total Pages:

ISBN-13:

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Book Synopsis Energy Vision 2020 by : Tennessee Valley Authority

Download or read book Energy Vision 2020 written by Tennessee Valley Authority and published by . This book was released on 1995 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:


Energy Vision 2020

Energy Vision 2020

Author: Tennessee Valley Authority

Publisher:

Published: 1995

Total Pages:

ISBN-13:

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Book Synopsis Energy Vision 2020 by : Tennessee Valley Authority

Download or read book Energy Vision 2020 written by Tennessee Valley Authority and published by . This book was released on 1995 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:


Energy Vision 2020

Energy Vision 2020

Author:

Publisher:

Published: 1995

Total Pages:

ISBN-13:

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Draft of TVA's energy plan for identifying energy resources in the future and the environmnetal consequences of these energy strategies.


Book Synopsis Energy Vision 2020 by :

Download or read book Energy Vision 2020 written by and published by . This book was released on 1995 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Draft of TVA's energy plan for identifying energy resources in the future and the environmnetal consequences of these energy strategies.


Integrated Resource Plan, TVA's Environmental & Energy Future

Integrated Resource Plan, TVA's Environmental & Energy Future

Author:

Publisher:

Published: 2011

Total Pages: 274

ISBN-13:

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Download or read book Integrated Resource Plan, TVA's Environmental & Energy Future written by and published by . This book was released on 2011 with total page 274 pages. Available in PDF, EPUB and Kindle. Book excerpt:


Clean Energy Plan and Integrated Resource Plan 2023

Clean Energy Plan and Integrated Resource Plan 2023

Author:

Publisher:

Published: 2023

Total Pages: 0

ISBN-13:

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Download or read book Clean Energy Plan and Integrated Resource Plan 2023 written by and published by . This book was released on 2023 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt:


Indian Journal of Power and River Valley Development

Indian Journal of Power and River Valley Development

Author:

Publisher:

Published: 1997

Total Pages: 342

ISBN-13:

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Download or read book Indian Journal of Power and River Valley Development written by and published by . This book was released on 1997 with total page 342 pages. Available in PDF, EPUB and Kindle. Book excerpt:


Electricity from Renewable Resources

Electricity from Renewable Resources

Author: National Research Council

Publisher: National Academies Press

Published: 2010-04-05

Total Pages: 386

ISBN-13: 030913708X

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A component in the America's Energy Future study, Electricity from Renewable Resources examines the technical potential for electric power generation with alternative sources such as wind, solar-photovoltaic, geothermal, solar-thermal, hydroelectric, and other renewable sources. The book focuses on those renewable sources that show the most promise for initial commercial deployment within 10 years and will lead to a substantial impact on the U.S. energy system. A quantitative characterization of technologies, this book lays out expectations of costs, performance, and impacts, as well as barriers and research and development needs. In addition to a principal focus on renewable energy technologies for power generation, the book addresses the challenges of incorporating such technologies into the power grid, as well as potential improvements in the national electricity grid that could enable better and more extensive utilization of wind, solar-thermal, solar photovoltaics, and other renewable technologies.


Book Synopsis Electricity from Renewable Resources by : National Research Council

Download or read book Electricity from Renewable Resources written by National Research Council and published by National Academies Press. This book was released on 2010-04-05 with total page 386 pages. Available in PDF, EPUB and Kindle. Book excerpt: A component in the America's Energy Future study, Electricity from Renewable Resources examines the technical potential for electric power generation with alternative sources such as wind, solar-photovoltaic, geothermal, solar-thermal, hydroelectric, and other renewable sources. The book focuses on those renewable sources that show the most promise for initial commercial deployment within 10 years and will lead to a substantial impact on the U.S. energy system. A quantitative characterization of technologies, this book lays out expectations of costs, performance, and impacts, as well as barriers and research and development needs. In addition to a principal focus on renewable energy technologies for power generation, the book addresses the challenges of incorporating such technologies into the power grid, as well as potential improvements in the national electricity grid that could enable better and more extensive utilization of wind, solar-thermal, solar photovoltaics, and other renewable technologies.


Integrated Resource Plan for Portland General Electric (PGE)

Integrated Resource Plan for Portland General Electric (PGE)

Author: Mary Biswal

Publisher:

Published: 2020

Total Pages:

ISBN-13:

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An integrated resource plan (IRP) for Portland General Electric (PGE) is developed in this master's project. The IRP is based on capacity expansion modeling for zero-carbon emission scenarios. PGE is a public electric utility based in Oregon and serves around 887,000 customers across a territory of 4,000 sq. miles. The utility's resource mix is currently heavily dependent on natural gas making up almost 50% of its capacity. While the state renewable portfolio standards (RPS) require Oregon power utilities to derive 50% of their generation from renewable sources by 2040, PGE plans to move rapidly into a clean energy mix by investing more in wind, hydro and solar resources. We performed a regression-based load and resource assessment for PGE and estimated a gap of 4350 MW between existing resource capacity and projected load till 2050. With a research goal of achieving zero-emissions by 2050, we model three different scenarios for PGE. The first scenario, a Reference case is based on business as usual operations with a target to achieve the state RPS, the other two scenarios go beyond the RPS and meet a zero-emissions target by 2050. These cases include a High Renewables scenario and a Carbon Capture & Sequestration (CCS) scenario. While the High Renewables scenario considers rapid addition of renewables into the capacity mix, the CCS scenario considers meeting the zero-emissions target by adding CCS technology to natural gas plants. A hybrid fuel with 10% biogas is used in such natural gas-plus-CCS plants. Using data available from U.S. Energy Information Administration, Federal Energy Regulatory Commission and National Renewable Energy Laboratory, we performed optimizations and designed a model to obtain results for the three scenarios. The model considers all key clean energy policies in Oregon and is in alignment with the Oregon Public Utility commission (OPUC) regulations. This includes the Coal Transition Act that mandates all utilities to end coal-based energy by 2035 and no further addition of coal plants after retirement of existing plants. Through quantitative analyses and graphical representations, we compare results from different scenarios and study the impacts of each on the existing system. Results demonstrate significant changes in the energy resource mix, annual costs, retail rate of electricity, curtailment and emission intensity across 2020 to 2050. Based on our results, analyses and conclusions, we propose recommendations to the PGE that may be considered for achieving zero-emissions by 2050.


Book Synopsis Integrated Resource Plan for Portland General Electric (PGE) by : Mary Biswal

Download or read book Integrated Resource Plan for Portland General Electric (PGE) written by Mary Biswal and published by . This book was released on 2020 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: An integrated resource plan (IRP) for Portland General Electric (PGE) is developed in this master's project. The IRP is based on capacity expansion modeling for zero-carbon emission scenarios. PGE is a public electric utility based in Oregon and serves around 887,000 customers across a territory of 4,000 sq. miles. The utility's resource mix is currently heavily dependent on natural gas making up almost 50% of its capacity. While the state renewable portfolio standards (RPS) require Oregon power utilities to derive 50% of their generation from renewable sources by 2040, PGE plans to move rapidly into a clean energy mix by investing more in wind, hydro and solar resources. We performed a regression-based load and resource assessment for PGE and estimated a gap of 4350 MW between existing resource capacity and projected load till 2050. With a research goal of achieving zero-emissions by 2050, we model three different scenarios for PGE. The first scenario, a Reference case is based on business as usual operations with a target to achieve the state RPS, the other two scenarios go beyond the RPS and meet a zero-emissions target by 2050. These cases include a High Renewables scenario and a Carbon Capture & Sequestration (CCS) scenario. While the High Renewables scenario considers rapid addition of renewables into the capacity mix, the CCS scenario considers meeting the zero-emissions target by adding CCS technology to natural gas plants. A hybrid fuel with 10% biogas is used in such natural gas-plus-CCS plants. Using data available from U.S. Energy Information Administration, Federal Energy Regulatory Commission and National Renewable Energy Laboratory, we performed optimizations and designed a model to obtain results for the three scenarios. The model considers all key clean energy policies in Oregon and is in alignment with the Oregon Public Utility commission (OPUC) regulations. This includes the Coal Transition Act that mandates all utilities to end coal-based energy by 2035 and no further addition of coal plants after retirement of existing plants. Through quantitative analyses and graphical representations, we compare results from different scenarios and study the impacts of each on the existing system. Results demonstrate significant changes in the energy resource mix, annual costs, retail rate of electricity, curtailment and emission intensity across 2020 to 2050. Based on our results, analyses and conclusions, we propose recommendations to the PGE that may be considered for achieving zero-emissions by 2050.