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The surrogate models were applied to analyze the effects of process parameter variations.
A central composite design and response surface methodology was applied to analyze the effects of the reaction time (2 8 min) and the temperature (200 220 °C) on the mass loss and sugar yields.
Numerical simulations were applied to analyze the effects of the power ratios between top and side heaters on the crystal melt (c‐m) interface and the thermal stress distribution during the solidification process.
The software was applied to analyze the effects of the heat transfer area of the PRHRS, the height difference between the residual heat exchanger center and the steam generator center, and the main steam valve turn-off time on the transient thermal hydraulic characteristics of PRHRS.
A central composite response surface design was applied to analyze the effects of starch type, cellulose content, barrel temperature and screw speed on specific mechanical energy requirement of extruding foams and the radial expansion ratio and compressibility of the extruded foams.
After the validation of finite element method simulation by the experimental results, parametric analysis were applied to analyze the effects of RAC strength, steel strength and steel ratio on the impact behaviors and deformation properties of the RACFSTs exposed to elevated temperatures ranging from 20 °C, 200 °C to 500 °C and to 700 °C.
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The FE model is also applied to analyze the effect of moment gradient on distortional buckling.
Equation (3) can be applied to analyze the effect of material properties errors of streamlined airborne radome on the electrical performance.
In this study, the estimation method was applied to analyze the effect of farmer characteristics on the likelihood of reporting a certain valuation score for a cooperative benefit.
The pinch analysis technique of forming composite curves is applied to analyze the effect of each building block on the temperature enthalpy profile of the ORC heat requirement.
One Box-Behnken Design (BBD) method was applied to analyze the effect of spray parameters on average velocity and temperature of in-flight particles during spraying.
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