Geothermal Research and Tech IEA

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Commonwealth Scientific and Industrial Research Organisation (CSIRO)- CSIRO‘s research capabilities in the geothermal arena are broad, due to the organisation‘s research diversity and ability to integrate multidisciplinary skills. CSIRO‘s activities in geothermal are through its contribution to WAGCOE‘s research (see below) for HSA resources and in reservoir stimulation for EGS resources as well as directly into the areas of hydraulic fracturing, reservoir engineering, well bore stability, rock petrophysics and microseismic monitoring. For more information, visit www.csiro.au/org/geothermal. CSIRO is also building the ARRC/Pawsey Geothermal Demonstration Project component of the Education Infrastructure Fund grant ―Sustainable Energy for the Square Kilometre Array‖. This large scale direct use project will provide heating and cooling for a research precinct using geothermal energy and adsorption or absorption chillers, targeting hot sedimentary aquifers in the Perth Basin. South Australia (SA)- The South Australian Centre for Geothermal Energy Research (SACGER) was established via an AU$1.6 million (US$1.67 million) grant over two years from July 2009. Based at the University of Adelaide, the Centre is also supported by a grant of AU$400,000 from the university over the same period. The SACGER research program focuses on investigating subsurface factors in EGS and HSA resources such as reservoir characterisation and modelling, geomechanics, geophysical imaging, and geochemical processes within reservoirs, and complements research programs of other national centres. For more information see: www.adelaide.edu.au/geothermal/ and Appendix B. Western Australia (WA)- The Western Australian Geothermal Centre of Excellence (WAGCOE) is a collaborative venture between three of Western Australia‘s leading research institutions: CSIRO, The University of Western Australia, and Curtin University of Technology. The Centre was established in February 2009, with an AU$2.3 million (US$2.4 million) grant over three years from the WA Government and substantial in-kind and cash contributions from the Centre‘s members. WAGCOE is charged with leading the exploration and exploitation of geothermal energy in Western Australia, and is focussing initially on direct heat use technologies (e.g. geothermal powered air conditioning and desalination) for use in population centres where there is shallow groundwater of moderate temperature. For more information, visit: http://www.geothermal.org.au/ and Appendix B. Queensland- The Queensland Geothermal Energy Centre of Excellence (QGECE) is based at the University of Queensland and was established with a AUD$15 million (US$16.1 million) grant from the Queensland Government and AUD$3.3 million (US$3.5 million) of in-kind support from the university. The Centre commenced operations in January 2009 with a five year program designed to fill gaps in the national and international geothermal research effort. The Centre‘s focus is on new tools for precompetitive exploration of high heat producing granites and above ground technologies, with the aim of accelerating large-scale utilisation of geothermal energy in Australia in collaboration with other national and international research groups and the industry. The collaborative projects include development of a fully-instrumented portable test plant and high pressure power cycle and expander test laboratory in Brisbane with the power plant equipment manufacturer Verdicorp; hybrid (dry and wet) cooling technology test tower for air-cooled condensers in Chinchilla with the Solar Dawn Consortium; developing options for connecting the geothermal electricity to the Queensland grid with the Queensland transmission authority, PowerLink. For more information, visit: www.uq.edu.au/geothermal and Appendix B. New South Wales (NSW)- Geothermal research at the University of Newcastle focuses on novel power generation cycles and the concept of CO2 thermosiphon concept for Engineered Geothermal Systems (EGS). The study of power cycles is regarded as a key area for major technological improvements since many of the problems associated with power generation from geothermal 89

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