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Various sand bodies have been identified by these reflection patterns.
The rubber-sand mixtures specimens were prepared with various sand volume fractions to evaluate its effects on the engineering properties.
A large-scale experimental apparatus for evaluating the performance of various sand control screens was developed and a series of experimental conditions can be satisfied.
The experimental study in this paper simulates sand production for gas wells, aiming to evaluate the performance of various sand control screens.
Ballard et al. (1999) developed a laboratory method to evaluate the performance of various sand control screens, which was applied in a North Sea oilfield to select the most appropriate screen.
The extended swelling prediction model is applicable to predict the swelling due to full hydration for mixtures within the full range of sand content, and is verified by the swelling tests on bentonite sand mixtures with various sand contents.
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The results can be used to guide the design of sand-control structures, improve the existing sand-damage prevention engineering sand-damage preventionengineeringl performance of variousystem-dandge–preventioptimizeeering measures.
The novelty of this model is the introduction of the equivalent mean size and the evolution of the position of the critical state line with fines content for various sand-silt mixtures.
This relation was considered unique in the original work, for reasons of simplicity, thus neglecting sand fabric evolution effects that may differentiate it for various sands, densities and loading conditions.
Compacted specimens of the Class F fly ash mixed with various materials (sand, Class C fly ash, and bottom ash) were prepared in the laboratory at various water contents and different compactive efforts.
In the previous work in this area, the micro-heterogeneity effects on the Pc S Kr relationships have been analysed in a number of contexts, e.g., uniformly distributed heterogeneities (simplified cases), various binary sand combinations, hydraulic parameters (e.g., entry pressure, permeability), boundary conditions, etc.
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