首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Integrated approach into the characterization of the fracture network of a geothermal reservoir
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Integrated approach into the characterization of the fracture network of a geothermal reservoir

机译:地热储层骨折网络表征的综合方法

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As an inert gas Rn-222 can be employed as a natural radiotracer for the characterization of hydrogeological properties of geothermal systems. In fractured reservoirs, diffusion through non-conductive rock matrices allows recoiled Rn-222 to enter larger, hydraulically conductive fractures. In this study, we examine the possibility of assessing fracture dimensions from Rn-222 activity in geothermal brines. Rn-222 activity in the geothermal fluid is mainly controlled by the Rn-222 flux from fracture surfaces and the fracture geometry (aperture, length, degree of connectivity, etc.). Estimates of site-specific fracture length and width were derived by a Rn-222 mass balance approach for the geothermal reservoir at Bruchsal (Germany). Integral hydraulic parameters of the Bruchsal reservoir were obtained from classical hydraulic tests. The results show a Rn-222 diffusion flux of 4.2 x 10(-3) atoms s(-1) cm(-2) resulting in an equivalent fracture width of 10 mm. The equivalent fracture length varies between a few hundred meters as a function of the flow velocity where about 250 m correspond to a mean flow velocity of 2.0 x 10(-6) m s(-1). Since the specific surface area of the fracture is inversely proportional to the fracture width, the fracture surface area depends on (1) the type of fracture system, i.e. whether the estimated equivalent fracture width represents a single large fracture or a fracture network of a large number of small aperture fractures and (2) the extent of the variance from the averaged equivalent fracture width. The joint inversion of the radon diffusion model with the pumping test results and a heat transport model is expected to considerably reduce interpretative hydraulic parameter ambiguity.
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