Energy For The Future And Global Warming Geothermal Energy Easyread Super Large 20pt Edition

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Energy for the Future and Global Warming

Author : Nigel Saunders
Publisher : ReadHowYouWant.com
Page : 55 pages
File Size : 40,9 Mb
Release : 2008-11-07
Category : Electronic
ISBN : 9781427085504

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Energy for the Future and Global Warming by Nigel Saunders Pdf

Each book in ENERGY FOR THE FUTURE AND GLOBAL WARMING explores key concepts and issues related to energy availability, production, and use and explains the impact of energy use on global climate. The eight volumes feature easy-to-read text accessible to a wide range of students, vivid photos, and clear, easy-to-understand illustrations and diagrams. This series will serve as a comprehensive and indispensable resource for anyone interested in the energy prospects for our future needs. Earth produces a constant supply of clean heat energy, but not everyone can use it. In Geothermal Energy, readers will discover which locations on Earth use this free energy source and how scientists are working to make it more widely available.

Geothermal Energy

Author : Nigel Saunders
Publisher : Gareth Stevens Publishing LLLP
Page : 36 pages
File Size : 41,9 Mb
Release : 2007-07-07
Category : Juvenile Nonfiction
ISBN : 0836884000

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Geothermal Energy by Nigel Saunders Pdf

Describes how geothermal resources can be used to reduce the world's dependence on fossil fuels for energy.

Energy from the Earth

Author : Stefan Hirschberg,Stefan Wiemer,Peter Burgherr
Publisher : vdf Hochschulverlag AG
Page : 524 pages
File Size : 52,5 Mb
Release : 2014-11-19
Category : Geothermal resources
ISBN : 9783728136541

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Energy from the Earth by Stefan Hirschberg,Stefan Wiemer,Peter Burgherr Pdf

Switzerland's Energy Strategy 2050 requires energy efficiency to be substantially improved, the proportion of fossil fuels in the energy supply to be considerably reduced, and nuclear power to be phased out, while meeting highly ambitious climate protection targets. One of the core implications is the need for a massive increase of the use of renewable sources for electricity generation. In this context, the Swiss Federal Office of Energy (SFOE) estimates that by 2050 deep geothermal energy could contribute 4–5 TWh per year to electricity generation in Switzerland, which would be a substantial contribution to a projected annual power need of 60 TWh. Geothermal energy is attractive because of the very large scale of the resource, its expected relatively low CO2 emissions, and its reliable, all-day domestic availability. However, the future contribution of deep geothermal energy is subject to major uncertainties: How much of this resource can be exploited and at what economic cost? What are the environmental and risk-related externalities that the public must be willing to bear? How does its overall performance compare to competing energy resources? And will the regulatory framework and public acceptance be sufficient to allow geothermal energy to provide a significant contribution? By way of this major interdisciplinary study, already considered a work of reference, TA-SWISS provides answers to these questions in a comprehensive and balanced way, thereby supplying a sound basis for stakeholder decision-making.

Enhanced Geothermal Systems (EGS)

Author : Dornadula Chandrasekharam,Alper Baba
Publisher : CRC Press
Page : 252 pages
File Size : 51,6 Mb
Release : 2023-10-02
Category : Science
ISBN : 9781000959963

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Enhanced Geothermal Systems (EGS) by Dornadula Chandrasekharam,Alper Baba Pdf

Peter Meisen, Past President, Global Energy Network Institute, asked in 1997, “What if there was an existing, viable technology, that when developed to its highest potential could increase everyone’s standard of living, cut fossil fuel demand and the resultant pollution?” After 23 years of sustained effort by the global scientific community, this is becoming a reality. The technology to extract heat from granite has been revolutionized in the last few years. The classical method of creating fracture networks by hydrofracturing is being replaced by a closed-loop method where fluids are not in contact with the hot granite. Supercritical CO2 is replacing water as a circulating fluid. Certainly, the future energy road is going to be led by highly radiogenic granites. While hydrothermal sources are site-specific and have their limitations, EGS can be initiated anywhere on earth. EGS is removing all such obstacles and, in the future, will provide uninterrupted electricity for all. Energy-deficient countries can have surplus electricity; water-stressed countries can have a perennial freshwater supply; and countries can become food-secure and rise above poverty levels. Countries need not depend on energy imports and can independently evolve into carbon neutral or low carbon societies. The contributions made by experts will help researchers and investors to close the energy demand and supply gap in the very near future by tapping the unlimited energy of the Earth. Opportunities available for investors in Turkey are well documented with field, geophysical, and geochemical data and information on the energy generating capacity of the granite intrusive spread over a cumulative area of 6,910 km2 in western Anatolia. With the signing of the Global Geothermal Alliance (GGA) by several countries during the December 2015 CoP 21 (Conference of Parties) summit in Paris, countries are obliged to reduce CO2 emissions by increasing the footprint of renewable energy in the primary source mix. Information provided in this book will lead the way to establishing a clean energy future for millions of people for sustainable development and help to mitigate crises arising due to food, water, and energy shortage issues. Academic and research institutes will benefit to a large extent from the expertise of the top contributors in this book. This information provided in this book will help to lay the foundation for super-hot EGS research in future.