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The results of numerical computation indicate that the maximum or minimum sensitivity of a cladding mode coupled with PCF-LPG is predetermined by its dispersion, which is also influenced by the PCF structure geometry.
Equations showing the dependence of the limiting activity coefficient on the virial coefficient values (B11, B12, and B22) used in their computation indicate that the influence may be considerable for derivatives numerically larger than about 4 × 10−5 mol cm−3.
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The numerical computation indicates that the method is efficient.
The computation indicates that the RSM is superior to the other turbulence models in capturing the swirl flow effect in comparison with measurements.
(3) Region except near the center, polar axis and equatorial plane of the EarthThe simulated computation indicates that the errors ΔB and Δh are correlated with the distance between the point P and the center of the Earth, which are shown in Tables 7 and 8, taking the case that B = 11°, L = 45° for example.
Region except near the center, polar axis and equatorial plane of the EarthThe simulated computation indicates that the errors ΔB and Δh are correlated with the distance between the point P and the center of the Earth, which are shown in Tables 7 and 8, taking the case that B = 11°, L = 45° for example.
(2) Region of the equatorial plane of the EarthThe simulated computation indicates that the error ΔB is always zero, and the errors Δh are correlated to the distance between the point P and the center of the Earth, which is shown in Table 6.
(1) Region of the polar axis of the EarthThe simulated computation indicates that the error ΔB is always zero, and the errors Δh are correlated with the distance S between the point P and the center of the Earth, which is shown in Table 5.
Validation computations indicate that the relative error of the results of the presented model is less than 0.75% compared with the proven theories and FE simulation.
For the range of vortex strengths considered, the computations indicate that the heat release rate in the rich flame decays significantly faster than in the stoichiometric flame: this behavior is consitent with recent experimental measurements.
Both electrochemical tests and density functional theory computations indicate that the combination of core-sheath nanofibers structure design and the formation of TiVN solid solutions significantly enhance the triiodide reduction activity of parental TiN and VN.
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