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all geography including DSDP/ODP Sites and Legs
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GeoRef Categories
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Cooper Basin
Abstract Knowledge of subsurface stresses is critical to management and prediction of fluid behaviour in the Earth's crust. However, uncertainties associated with the estimation of vertical stress magnitudes are rarely explored. In settings where the principal stresses are close, small changes of only a few MPa can have drastic effects on, stress regime prediction, fault reactivation and expected fracture behaviour. Using petroleum datasets from the Moomba Gas Field in the Cooper Basin, Australia, we assess the effects of interpolation between gaps in density wireline logs that have been filtered to remove sections of poor density tool contact in coal-bearing sequences. In addition, we compare the sonic velocity–density Nafe–Drake and Gardner transforms by comparing estimates of density from sonic velocity against density from wireline logs. The results indicate that vertical stress could be underestimated by c. 3 MPa at c. 3 km in well Moomba 61, using traditional methods. The Gardner transform shows a stronger correlation between sonic and density values for rocks in the Cooper Basin. However, once calibrated to the regional sonic velocity–density trend, the Nafe–Drake transform better matches the density logging tool in Moomba 61. This study delivers a more robust workflow for estimating the vertical stress in basins with deep coal-bearing strata.
Negatively buoyant CO 2 solution sequestration in synformal traps
Investigation of permeability change in ultradeep coal seams using time-lapse pressure transient analysis: A pilot project in the Cooper Basin, Australia
Hydrocarbon prospectivity of the Cooper Basin, Australia
Global optimization of generalized nonhyperbolic moveout approximation for long-offset normal moveout
Seismic interpretation when short-period internal multiples are present
Well ties for seismic with severe stratigraphic filtering
Reservoir-property inversion — A method for quantitative interpretation of seismic-inversion results
Sonic Q P / Q S ratio as diagnostic tool for shale gas saturation
Monitoring shale gas resources in the Cooper Basin using magnetotellurics
Anisotropy signatures in the Cooper Basin of Australia: Stress versus fractures
Magnetotelluric monitoring of coal-seam gas and shale-gas resource development in Australia
Microseismic monitoring of hydraulic-fracturing programs in the Cooper Basin, Australia
Unexpected behaviors of stimulated fractures in the high-stress Cooper Basin
A comparison of diffraction imaging to incoherence and curvature
A comparison of competing amplitude variation with offset techniques applied to tight gas sand exploration in the Cooper Basin of Australia
Continued Geothermal Reservoir Stimulation Experiments in the Cooper Basin (Australia)
Quantification of signal and noise in two-way transmitted wavefields to improve well ties in Cooper Basin, Australia
Abstract The purpose of this Seals Atlas is to present the microstructural, petrophysical, and geomechanical properties of selected examples of cap rocks and fault seals for use as analogs in the prediction of seal capacity or containment potential. Similar atlases exist; however, this is the first such atlas to focus specifically on the characteristics of cap rocks. The atlas is primarily based on extensive mercury injection capillary pressure (MICP) analyses, but also includes thin section, XRD, grainsize distribution, SEM/EDS, and 'V shale' data. The samples included in this atlas are a result of APCRC and CO2CRC (Cooperative Research Centres) research programs focusing on top and intraformational seals and some fault seals (cataclasites) throughout Australia and New Zealand. The hydrocarbon/carbon dioxide seal examples are grouped by basin localities and further distinguished by formation, well, then depth. Where multiple examples are available, a range of lithologies and MICP data are included in the sample selection. This atlas also can be used in an evaluation of integrated seal potential for prospect risking and reservoir management.