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Geothermal Research and Tech IEA

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Geothermal Research and Tech IEA ( geothermal-research-and-tech-iea )

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international collaborative efforts to: compile and exchange improved information on global geothermal energy R&D, develop improved technologies for geothermal energy use, and improve the understanding of the environmental benefits of geothermal energy utilization and ways to avoid or minimize its environmental impacts. The GIA‘s activities are chiefly directed towards the coordination of national and industry geothermal programmes, with joint participation of members providing the chance to participate in R&D projects, and assist with the development of databases, models and handbooks; as well as opportunities for information exchange via meetings, workshops and networking; and provide an international perspective on geothermal issues. The GIA‘s present efforts cover a range of geothermal topics from ―conventional‖ power generation and direct use of heat, to cutting-edge technologies pertinent to enhanced geothermal systems (EGS), advanced geothermal drilling and logging techniques, sustainable utilization strategies, investigation into the causes and control of induced seismicity, and collection of data and information and its presentation on the Web. New studies are encouraged and implemented when needs are established. As of December 2010, the IEA-GIA had 19 Members: 14 Contracting Parties from 13 countries: Australia, France, Germany, Iceland, Italy, Japan, Mexico, New Zealand, Norway, the Republic of Korea, Spain, Switzerland, the United States, and the European Commission (EC); and five industry Sponsor Members: the Canadian Geothermal Energy Association, Geodynamics Limited, the Geothermal Group- Spanish Renewable Energy Association, Green Rock Energy Limited and ORMAT Technologies, Inc. See Table 1.1 for details. 1.1 StrategyandObjectives Geothermal energy has vast global potential and its development can contribute significantly towards meeting the growing global renewable energy demand in both developed and developing countries, while helping alleviate the world‘s energy-climate predicament. Globally, geothermal development is in a rapid growth phase, and to maintain this accelerated development, it is essential to improve and develop new technologies, reduce development costs, promote the benefits of sustainable geothermal utilization, and better educate the public, financial, and policy sectors. The GIA‘s 3rd 5-year term began in April 2007 with these goals firmly in mind, aiming to use its extensive international cooperation to focus particularly on disseminating authoritative information; improving environmental outcomes; enhancing EGS prospects, including developing means to properly deal with induced seismicity; reducing drilling costs; promoting direct use applications; and encouraging long-term sustainable development strategies that will also contribute to the mitigation of climate change. To these ends, the IEA-GIA set its 3rd Term (2007-2013) Mission (GIA, 2006a; 2011): To promote the sustainable utilization of geothermal energy throughout the world by improving existing and developing new technologies to render exploitable the vast and widespread global geothermal resources, by facilitating the transfer of know-how, by providing high quality information and by widely communicating geothermal energy‘s strategic, economic and environmental benefits, and thereby contribute to the mitigation of climate change. To accomplish this mission, the GIA designed six Strategic Objectives: To actively promote effective cooperation on geothermal RD&D through collaborative work programmes, workshops and seminars To collect, improve/develop and disseminate geothermal energy RD&D policy information for IEA Member and non-Member countries  To identify geothermal energy RD&D issues and opportunities and improve conventional and develop new geothermal energy technologies and methods to deal with them 23

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