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III. NATIONAL ACTIVITIES GERMANY Stimulation tests injected water and gel proppants. Fracture growth was observed by seismic events. The flow rate increased to 75 m3/h. The total project costs amounted to 5.5 M €, with 5.3 M € funding. 10.4.2.3 Hannover The task is to study the one-probe-two-layer-method. Two institutions are working on this project. The aim is to examine the method for extraction of geothermal heat from sedimentary rocks in the north German Basin. During hydraulic tests temperature and pressure logs are run as well as seismic monitoring. The results are interpreted using analytical and numerical models to get information on the thermal capacity and the physical and economic life of the one-probe-two-layer-system. The total costs are 2.0 M €, with 2.0 M € funded. 10.4.2.4 Bruchsal The objective was to investigate the use of high salinity, high temperature deep geothermal water at the Bruchsal geothermal field for heat and electricity production. Two wells were drilled in 1980. After obtaining new government aid it was possible to conduct circulation tests. Due to the high salinity and extreme temperature and pressure changes during the circulation tests the fibreglass heating pipeline broke up. It is planned to fund a new heating pipeline to get the project running again. Steel will be used for the new pipeline. It will receive an inner wall scaling made of the natural aragonite or calcite precipitation. The scaling will be applied under controlled (temperature, pressure, inhibition of oxygen entry) conditions. Under constant conditions, even during the test phases, and later in operation, the scaling should prohibit corrosion. The total cost for this project amounts to 3.1 M €, with 1.5 M € funding. 10.4.2.5 Bad Urach The task of this project is development, verification and demonstration of location independent EGS concepts for the production of electricity and heat from hot deep rocks considering geological, hydraulic, technical and economic parameters of methods and plants (data set for a EGS pilot plant). Hydraulic stimulations in the first borehole were a success. The production rate increased from 30 l/sec to 50 l/sec. It is assumed that an artificial heat exchanger was created. Seismic clouds were evaluated with a special processing method, which showed that the heat exchanger is placed between 3,300 m and 4,200 m depth. The temperature is approximately 170°C. A second borehole (planned depth of 4,500 m) was drilled from January to April 2004. However, the project was halted at a drilled depth of 2,800m, because funding was much overspent. The Ministry has decided that the project may only continue with financial participation of industrial partners. The total cost for this project is 6.7 M €; with 6.5 M € funded. IEA Geothermal R&T Annual Report 2004.doc 61PDF Image | Geothermal Energy Annual Report 2004
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