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To examine the accuracy of the three methods, calculated results for the vapor-liquid-phase equilibria in two selected binary mixtures, namely, carbon dioxide/butane and carbon dioxide/propane, are compared with experimental data over a range of high temperatures (278 398 K) and elevated pressures (0.3 7 MPa).
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For the verification of the method, calculated results were compared to some experimental results.
In order to verify the validity of the proposed nonlinear analysis method, calculated results are compared with the numerical and test results from the literature.
As regards mean wind pressure coefficients of the comparisons among the three methods, CFD calculated results showed good agreement with those of wind tunnel tests and full-scale.
At first, in order to investigate the applicability of the numerical method, the calculated results of aerodynamic behavior were compared with the experimental data for the parallel rectangular cross-section such as the priority test.
Although analyses using best-estimate tools frequently indicated substantially smaller releases – knowledge and data were insufficient to place reliance on the methods or the calculated results.
The comparison between test results and calculated results from design methods indicated that the proposed design methods could be used to predict the tension strength and failure modes of the one-side bolted T-stub through thread holes and strengthened with screwed backing plates.
The feasibility and accuracy of the numerical method was verified by comparing the calculated results with the experimental observations.
When GO-SiO2 as substrate reacts with BuMgCl, the calculated results by this method agree well with the experiment data of GO and the G/D ratio decreases from 1.05 to 0.89.
The Gibbs free energy surfaces for eight-element multicomponent systems are used to confirm that there is an accurate coupling with the CALPHAD method, because they compare favorably with calculated results from Thermo-Calc.
The calculated results were confirmed with a numerical time stepping method.
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CEO of Professional Science Editing for Scientists @ prosciediting.com