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3d Geological sentence examples within Resolution 3d Geological
In this paper, a high-resolution 3D geological model has been built using Petrel software that can be utilized as input for dynamic simulation.
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In the overall, the steps for constructing high resolution 3D geological structural models are: (1) a photogrammetric survey of the investigation area is performed to obtain a true-color georeferenced 3D point cloud; (2) structural geologic measurements are extracted directly from the point cloud or associated digital terrain model (DTM); (3) the 3D rock structure is represented as a discrete fracture network (DFN); (4) identification, computing and visualization of blocks; and (5) on the basis of Block Theory, kinematically removable blocks are identified directly on the point cloud/DTM with embedded DFN and classified according to their criticality.
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3d Geological sentence examples within 3d geological model
This paper mostly aims at finding and documenting the relation between depositional sequences and reservoir properties as well as constructing the related 3D geological model.
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Thus, 3D geological models of the Tongling ore cluster were constructed from the multiple geological datasets.
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3d Geological sentence examples within 3d geological modeling
In the preliminary investigation of the Sonda-Jherruck coalfield, 3D geological modeling was not performed.
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We anticipate that the method can provide a reference for advances in digital and smart mines as well as 3D geological modeling.
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3d Geological sentence examples within 3d geological modelling
In terms of 3D geological modelling and analysis, in order to efficiently provide large-scale 3D geological model analysis in the browser, we explore a new data structure and algorithm for optimization modelling to reduce the amount of model and the number of calculations.
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Summary Existing 3D geological modelling methods do not incorporate fault kinematics and do not have any way of modelling interacting fault networks, e.
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3d Geological sentence examples within 3d geological body
The research idea of 3D geological body digital watermarking algorithm based on point cloud model is proposed.
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The methodologies are summarized as follows: (1) the 3D geological bodies (ore bodies, granitic stocks/dikes, fault fractures, and alteration zones) modeling using GOCAD software.
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3d Geological sentence examples within 3d geological framework
However, it is said that 3D ground model development, even only creation of 3D geological framework model of subsurface, takes still considerable time and cost due to special technique which requires qualified experts and geological knowledge.
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In this paper, we integrated the geological and geophysical data from the Zhuchong Fe-Cu deposit in the Yueshan orefield (Anhui, eastern China) to establish the local 3D geological framework.
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In the preliminary investigation of the Sonda-Jherruck coalfield, 3D geological modeling was not performed.
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A project 3D Geological Fault Model was developed to characterise geological faulting at the site for the capable faulting assessment.
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This paper mostly aims at finding and documenting the relation between depositional sequences and reservoir properties as well as constructing the related 3D geological model.
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Thus, 3D geological models of the Tongling ore cluster were constructed from the multiple geological datasets.
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To promote further development of physical model via 3D printing method and to fabricate large-scale high-precision 3D geological models, in this paper, the flow characteristics of rock-like materials were first investigated using a new fluidity testing apparatus.
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A3D geological model was constructed for Al-Sadi reservoir/ Halfaya Oil Field which is discovered in 1976 and located 35 km from Amara city, southern of Iraq towards the Iraqi/ Iranian borders.
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Similar strategies should be taken into consideration when measuring planes in outcrop (sighting as opposed to direct measurement) or from 3D geological models.
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We anticipate that the method can provide a reference for advances in digital and smart mines as well as 3D geological modeling.
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We extend the original GAN approach to 3D geological modeling at the reservoir scale.
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On the basis of plenty of well drilling, logging and testing data collection and statistical analysis in Southern Qinshui Basin, the finite element simulation software was introduced to establish a 3D geological model and finite element meshes were divided using SOLID 186 element type.
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In terms of 3D geological modelling and analysis, in order to efficiently provide large-scale 3D geological model analysis in the browser, we explore a new data structure and algorithm for optimization modelling to reduce the amount of model and the number of calculations.
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A 3D geological model of the sedimentary cover of the region is shown.
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This information is subsequently used to construct a full 3D geological model with a state-of-the-art interpolation algorithm.
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The methods mentioned above have good effect of 3D geological modeling in Sanlutian exploration area of Muli area, Qinghai province.
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Traditional approaches to develop 3D geological models employ a mix of quantitative and qualitative scientific techniques, which do not fully provide quantification of uncertainty in the constructed models and fail to optimally weight geological field observations against constraints from geophysical data.
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Reprocessing of regional-scale airborne electromagnetic data is used to build a 3D geological model of the Nasia sub-basin, northern Ghana.
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We present a novel high-density, city-scale groundwater temperature observatory and introduce a 3D geological model aimed at addressing the needs of developers, planners, regulators and policy makers.
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MCUE is a type of Bayesian Monte Carlo aimed at input data uncertainty propagation in implicit 3D geological modeling.
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Descriptive data of and samples from known ore deposits in Central Europe are readily available as are, in some cases, 3D geological exposures through existing mine infrastructure.
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A new, geologically and geometrically consistent 3D geological model of the study area was built by the interpretation of this integrated database.
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In this paper, a high-resolution 3D geological model has been built using Petrel software that can be utilized as input for dynamic simulation.
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We analysed hundreds of deep hydrocarbon wells in order to create 3D geological and thermo-fluid dynamic models at a regional scale as well as to obtain information on the pressure regimes and on the chemistry of the system.
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The research idea of 3D geological body digital watermarking algorithm based on point cloud model is proposed.
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The core of the applied processing workflows is a 3D geological model constructed in Petrel, which functions as a spatial database for all kinds of geological models.
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Spatial correlation between the potassic alteration zone resulted from 3D geological modeling and high concentration zones for the C-V fractal model shows that the alteration zone has Cu values between 0.
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Spatial correlation between the potassic alteration zones resulting from 3D geological modeling and high concentration zones in C-V fractal model show that Cu values greater than 0.
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A 3D geological model was constructed using geological maps, geological plans, cross sections, and boreholes.
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Summary Existing 3D geological modelling methods do not incorporate fault kinematics and do not have any way of modelling interacting fault networks, e.
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Considerable difficulties are created when creating 3D geological and hydrodynamic models of deposits in granitoid reservoirs.
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Summary The Geological Survey of New South Wales is building a statewide 3D geological model comprising a series of interlocking province-scale models and a 3D statewide fault network.
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Recent advancement in implicit modeling has made the construction of 3D geological models simpler; however, automatic assessment and visualization of uncertainty constrained by input geological rules and data constraints is still an active research topic.
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To investigate the flow field near fracture entrance and promote the development of sand fracturing with carbon dioxide as the working fluid, numerical simulation of multiphase flow was conducted with a 3D geological model considering the compressibility of carbon dioxide.
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This study proposes a framework of mine-water inrush scene constructing and drilling trajectory planning using 3D geological models.
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A 3D geological model can be created by identifying corresponding stratigraphic boundaries within multiple drillholes.
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Using geological mapping data obtained by the digital geological mapping technique to build 3D geological modelling is the trend of the future.
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This study aims to construct 3D geological model using the integration of seismic data with well log data for reservoir characterization and development of the hydrocarbon potentialities of the Upper Cretaceous reservoirs of GPT oil field.
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To address these issues, we open-source a fully-annotated 3D geological model of the Netherlands F3 Block.
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Environmental risk assessments therefore require highly detailed digital 3D geological models.
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The results show that the multiple geoscience datasets can be used to extract exploration criteria from surface to depth, the exploration criteria can be validated in the 3D geological model additional metallogenic model/genesis understanding (knowledge) and known polymetallic deposits of mineral system.
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The method constructs a velocity model from 3D geological objects that can accurately express the interfaces of geologic units.
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Furthermore, the analysis of 3D geological modeling of concealed orebodies is a process that contributes to understanding the metallogenesis of mineral deposits.
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This paper introduces a rapid modeling method of 3D geological model for subway construction, which is convenient for construction companies in engineering of urban rail transit projects.
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Of these reservoirs, CO2-EOR and storage potential of the M10 was estimated through a compositional simulation as a case study based on a 3D geological model.
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Summary Loop is a new open source 3D geological and geophysical modelling platform in full development.
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The methodologies are summarized as follows: (1) the 3D geological bodies (ore bodies, granitic stocks/dikes, fault fractures, and alteration zones) modeling using GOCAD software.
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3D geological subsurface model of the Bhaktapur City is prepared using RockWork2016, which is based on 3-D Geo-scientific information system (3-D GSIS).
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Depending on the proposed 3D geological model, the best regions for coupled CCUS-EOR are located in southern portions of the field, and the estimated CO2 theoretical storage capacity for Jacksonburg-Stringtown oil field varies from 24 to 383 million metric tons.
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In the second step, 3D geological models associated with the identified criteria are prepared.
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In conclusion, the 3D geological model of the Sao Carlos region permits the acquisition of spatial information of geological layers with vertical sections in all directions that can be used for various purposes, such as underground excavation, groundwater management and well drilling.
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These data were used to develop the Singapore-wide 3D geological model, which is able to provide a 3D visualisation of the geology of Singapore.
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The 23 results are compared with the alteration and mineralogical models resulted from the 24 3D geological model using the logratio matrix method.
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The application of this technology goes beyond traditional real-time well placement with important implications in updating 3D geological models.
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On the basis of mechanical experiments, logging interpretation, and seismic data, a 3D geological model and heterogeneous rock mechanics field of the reservoir were constructed.
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Key words—torrential deposits; geological model; lithology cube; IRAP RMS; 3D geological model.
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The spatial correlation between the potassic alteration zone in a 3D geological model and the high concentration zones in the C-V fractal model showed that Cu values between 0.
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In the overall, the steps for constructing high resolution 3D geological structural models are: (1) a photogrammetric survey of the investigation area is performed to obtain a true-color georeferenced 3D point cloud; (2) structural geologic measurements are extracted directly from the point cloud or associated digital terrain model (DTM); (3) the 3D rock structure is represented as a discrete fracture network (DFN); (4) identification, computing and visualization of blocks; and (5) on the basis of Block Theory, kinematically removable blocks are identified directly on the point cloud/DTM with embedded DFN and classified according to their criticality.
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A 3D geological modeling workflow was developed to integrate these data, in which (1) the weighted kriging (WK) method was used to interpolate both hard data and soft data, and (2) a fault modeling method was proposed to build faults’ geometry as well as their impact on coal seam surface model.
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The spatial correlation between the potassic alteration zones resulting from a 3D geological modeling and the high concentration zones in the C-V fractal model based on OK indicated that the alteration zone contained Cu values greater than 0.
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In summary, the combined use of multiple-source and multi-scale geophysical information and multi-scale 3D geological modeling facilitated delineation of the metallogenic model and provided exploration criteria for determining potential exploration targets in the study area.
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The geology of the Acropolis prospect is presented as a 3D geological model complemented by cross-sections.
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In this paper, we study the issue of model accuracy under the conditions of oil reservoir with few wells and propose a new 3D geological modeling method that is constrained by the multiple parameters based on sedimentary dynamics.
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