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  • energy economics  (18)
  • English  (18)
  • 2010-2014  (18)
  • 2011  (18)
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  • English  (18)
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  • 2010-2014  (18)
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  • 1
    Unknown
    Paris : OECD/IEA
    Keywords: energy ; energy economics
    Description / Table of Contents: World Energy Outlook 2011 brings together the latest data, policy developments, and the experience of another year to provide robust analysis and insight into global energy markets, today and for the next 25 years. This edition of the IEA’s flagship WEO publication gives the latest energy demand and supply projections for different future scenarios, broken down by country, fuel and sector. It also gives special focus to such topical energy sector issues as: • Russia’s energy prospects and their implications for global markets. • The role of coal in driving economic growth in an emissions-constrained world. • The implications of a possible delay in oil and gas sector investment in the Middle East and North Africa. • How high-carbon infrastructure “lock-in” is making the 2°C climate change goal more challenging and expensive to meet. • The scale of fossil fuel subsidies and support for renewable energy and their impact on energy, economic and environmental trends. • A “Low Nuclear Case” to investigate what a rapid slowdown in the use of nuclear power would mean for the global energy landscape. • The scale and type of investment needed to provide modern energy to the billions of the world’s poor that do not have it. WEO-2011 provides invaluable insights into how the energy system could evolve over the next quarter of a century. The book is essential reading for anyone with a stake in the energy sector.
    Pages: Online-Ressource (659 Seiten)
    ISBN: 9789264124134
    Language: English
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  • 2
    Keywords: energy ; energy economics
    Description / Table of Contents: Electricity use is growing worldwide, providing a range of energy services: lighting, heating and cooling, specific industrial uses, entertainment, information technologies, and mobility. Because its generation remains largely based on fossil fuels, electricity is also the largest and the fastest-growing source of energy-related CO2 emissions, the primary cause of human-induced climate change. Forecasts from the IEA and others show that “decarbonising” electricity and enhancing end-use efficiency can make major contributions to the fight against climate change. Global and regional trends on electricity supply and demand indicate the magnitude of the decarbonisation challenge ahead. As climate concerns become an essential component of energy policy-making, the generation and use of electricity will be subject to increasingly strong policy actions by governments to reduce their associated CO2 emissions. Despite these actions, and despite very rapid growth in renewable energy generation, significant technology and policy challenges remain if this unprecedented essential transition is to be achieved. The IEA Climate and Electricity Annual 2011 provides an authoritative resource on progress to date in this area, with statistics related to CO2 and the electricity sector across ten regions of the world. It also presents topical analyses on meeting the challenge of rapidly curbing CO2 emissions from electricity, from both a policy and technology perspective.
    Pages: Online-Ressource (90 Seiten)
    Language: English
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  • 3
    Keywords: energy ; energy economics
    Description / Table of Contents: This working paper evaluates cost and performance trends related to carbon dioxide (CO2) capture from power generation, based on extensive analysis of data from major engineering studies published between 2006 and 2010. Since individual studies use different methodologies and boundary conditions, study estimates for over 50 CO2 capture installations are re-evaluated on a consistent basis and updated to current cost levels. The paper discusses the need for further standardisation of evaluation methodologies and additional data for specific CO2 capture routes. Further analysis for non-OECD countries is considered crucial for global energy scenario models, and for improving the skills and knowledge developing countries need to evaluate the role of CCS in their national energy contexts.
    Pages: Online-Ressource (51 Seiten)
    Language: English
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  • 4
    Keywords: energy ; energy economics
    Description / Table of Contents: Ensuring energy security has been at the centre of the IEA mission since its inception, following the oil crises of the early 1970s. While the security of oil supplies remains important, contemporary energy security policies must address all energy sources and cover a a comprehensive range of natural, economic and political risks that affect energy sources, infrastructures and services. In response to this challenge, the IEA is currently developing a Model Of Short-term Energy Security (MOSES) to evaluate the energy security risks and resilience capacities of its member countries. The current version of MOSES covers short-term security of supply for primary energy sources and secondary fuels among IEA countries. It also lays the foundation for analysis of vulnerabilities of electricity and end-use energy sectors. MOSES contains a novel approach to analysing energy security, which can be used to identify energy security priorities, as a starting point for national energy security assessments and to track the evolution of a country’s energy security profile. By grouping together countries with similar “energy security profiles”, MOSES depicts the energy security landscape of IEA countries. By extending the MOSES methodology to electricity security and energy services in the future, the IEA aims to develop a comprehensive policy-relevant perspective on global energy security. Ensuring energy security has been at the centre of the IEA mission since its inception, following the oil crises of the early 1970s. While the security of oil supplies remains important, contemporary energy security policies must address all energy sources and cover a a comprehensive range of natural, economic and political risks that affect energy sources, infrastructures and services. In response to this challenge, the IEA is currently developing a Model Of Short-term Energy Security (MOSES) to evaluate the energy security risks and resilience capacities of its member countries. The current version of MOSES covers short-term security of supply for primary energy sources and secondary fuels among IEA countries. It also lays the foundation for analysis of vulnerabilities of electricity and end-use energy sectors. MOSES contains a novel approach to analysing energy security, which can be used to identify energy security priorities, as a starting point for national energy security assessments and to track the evolution of a country’s energy security profile. By grouping together countries with similar “energy security profiles”, MOSES depicts the energy security landscape of IEA countries. By extending the MOSES methodology to electricity security and energy services in the future, the IEA aims to develop a comprehensive policy-relevant perspective on global energy security. This Working Paper is intended for readers who wish to explore the MOSES methodology in depth; there is also a brochure which provides an overview of the analysis and results.
    Pages: Online-Ressource (48 Seiten)
    Language: English
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  • 5
    Keywords: energy ; energy economics
    Description / Table of Contents: The IEA’s Smart Grids Technology Roadmap identified five global trends that could be effectively addressed by deploying smart grids. These are: increasing peak load (the maximum power that the grid delivers during peak hours), rising electricity consumption, electrification of transport, deployment of variable generation technologies (e.g. wind and solar PV) and ageing infrastructure. Along with this roadmap, a new working paper – Impact of Smart Grid Technologies on Peak Load to 2050 – develops a methodology to estimate the evolution of peak load until 2050. It also analyses the impact of smart grid technologies in reducing peak load for four key regions; OECD North America, OECD Europe, OECD Pacific and China. This working paper is a first IEA effort in an evolving modelling process of smart grids that is considering demand response in residential and commercial sectors as well as the integration of electric vehicles.
    Pages: Online-Ressource (44 Seiten)
    Language: English
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  • 6
    Keywords: energy ; energy economics
    Description / Table of Contents: As demonstrated by the March 2011 earthquake and tsunami-triggered blackouts in Japan, electricity shortfalls can happen anytime and anywhere. Countries can minimise the negative economic, social and environmental impacts of such electricity shortfalls by developing emergency energy-saving strategies before a crisis occurs. This new IEA report Saving Electricity in a Hurry: Update 2011 highlights preliminary findings and conclusions from electricity shortfalls in Japan, the United States, New Zealand, South Africa and Chile. It draws on recent analysis to: - reinforce well-established guidelines on diagnosing electricity shortfalls, identifying energy-saving opportunities and selecting a package of energy-saving measures; and - highlight proven practice for implementing emergency energy-saving programmes. This paper will be valuable to government, academic, private-sector and civil-society stakeholders who inform, develop and implement electricity policy in general, and emergency energy-saving programmes in particular.
    Pages: Online-Ressource (60 Seiten)
    Language: English
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  • 7
    Keywords: energy ; energy economics
    Description / Table of Contents: Increased focus has been placed on the issues of energy access and energy poverty over the last number of years, most notably indicated by the United Nations (UN) declaring 2012 as the “International Year of Sustainable Energy for All”. Although attention in these topics has increased, incorrect assumptions and misunderstandings still arise in both the literature and dialogues. Access to energy does not only include electricity, does not only include cook stoves, but must include access to all types of energy that form the overall energy system. This paper chooses to examine this energy system using a typology that breaks it into 3 primary energy subsystems: heat energy, electricity and transportation. Describing the global energy system using these three subsystems provides a way to articulate the differences and similarities for each system’s required investments needs by the private and public sectors.
    Pages: Online-Ressource (64 Seiten)
    Language: English
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  • 8
    Keywords: energy ; energy economics
    Description / Table of Contents: Timely and effective deployment of demand response could greatly increase power system flexibility, electricity security and market efficiency. Considerable progress has been made in recent years to harness demand response. However, most of this potential remains to be developed. The paper draws from IEA experience to identify barriers to demand response, and possible enablers that can encourage more timely and effective demand response including cost reflective pricing, retail market reform, and improved load control and metering equipment. Governments have a key role to play in developing and implementing the policy, legal, regulatory and market frameworks needed to empower customer choice and accelerate the development and deployment of cost-effective demand response.
    Pages: Online-Ressource (64 Seiten)
    Language: English
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  • 9
    Keywords: energy ; energy economics
    Description / Table of Contents: Increased focus has been placed on the issues of energy access and energy poverty over the last number of years, most notably indicated by the United Nations (UN) declaring 2012 as the “International Year of Sustainable Energy for All”. Although attention in these topics has increased, incorrect assumptions and misunderstandings still arise in both the literature and dialogues. Access to energy does not only include electricity, does not only include cook stoves, but must include access to all types of energy that form the overall energy system. This paper chooses to examine this energy system using a typology that breaks it into 3 primary energy subsystems: heat energy, electricity and transportation. Describing the global energy system using these three subsystems provides a way to articulate the differences and similarities for each system’s required investments needs by the private and public sectors.
    Pages: Online-Ressource (64 Seiten)
    Language: English
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  • 10
    Keywords: energy ; energy economics
    Description / Table of Contents: The International Energy Agency’s Energy Efficiency Unit (EEU) has begun a new programme of work on innovative energy-efficiency policies for mitigating fuel poverty. The IEAs current research focuses on the potential for low-income weatherisation programmes to address poor housing quality – the main driver of fuel poverty - as well as innovative methods for financing and evaluating such programmes. A common problem is that the energy-saving benefits accruing to fuel-poor households barely offset the investment required, suggesting a weak return on government spending. However, these investments have additional co-benefits for participants as well as for energy providers, property owners, local communities and society as a whole. This first IEA workshop focused on methods for incorporating the range of co-benefits into evaluation of low-income weatherisation programmes. The presentations given by top experts in the fuel poverty field are summarised in this report, along with conclusions and proposals for further research.
    Pages: Online-Ressource (40 Seiten)
    Language: English
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