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This indicates the validity of this composite model to describe nanocomposites, despite the small particle size.
This paper extended the conventional multiple hydraulic fractured horizontal (MFH) well into a composite model to describe the stimulated reservoir volume (SRV) caused by hydraulic fracturing.
Using an independent cohort, we sought to assess the reliability and validity of this composite model to predict 1-year survival in patients diagnosed with metastatic cancer to the spine.
This paper proposes a composite model to investigate the pressure behavior and production performance of a multi-wing hydraulically fractured multiple fractured vertical well (MFVW) in a coalbed gas reservoir with a stimulated reservoir volume (SRV).
On multivariate regression analyses, the very best composite model to predict total scores from both surveys was a model containing the distance-saturation product and Borg Dyspnea Scale score at the end of a 6-min walk test.
Main outcome measures Performance of a composite model to predict whether patients were likely to survive for "days" (0-13 days), "weeks" 14-555 days), or "months+" (>55 days), compared with actual survival and clinicians' predictions.
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The proposed computational framework consists of two main steps: (a) radiation heat transfer analysis on a meso-scale C/C composite model exposed to thermal shock conditions accounting for the heat flux due to decomposing material; (b) stress analysis to model the carbon stiffness degradation due to oxidation observed in the previous step.
An original mean field composite model able to explain and quantify the tensile behavior of as-quenched dual phase (DP) Ferrite-Martensite steels based on the relevant microstructural parameters (grain size, phase fractions and composition) is presented.
The radial composite model refers to those reservoirs consisting of two separate regions: (1) a circular inner zone with the well at the center, and (2) an infinite outer zone.
This work presents a new multi-layer laminated composite structure model to predict the mechanical behaviour of multi-layered laminated composite structures.
Predicted ply material parameters are then transferred to a mesoscale composite damage model to reveal the interaction between intralaminar and interlaminar damage behaviour of composite laminates.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com