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Comparisons between analytical solution and experimental data allow the identification of the unknown parameters of the analytical model.
Good accuracy has been found between analytical solution and reliable experimental results with a maximum deviation of +6.63% and −5.65% in the moisture removal rate.
Comparison of the results between analytical solution and numerical outcome (fourth order Runge Kutta method) shows that LSM is a convenient and powerful method in engineering problems.
Comparison between analytical solution and HAM solution is shown in Table 5.
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Comparisons are made between analytical solutions and numerical results for the currently proposed HOC exponential FD methods and some previously published HOC methods.
The results comparisons between analytical solutions and IGA solutions are shown in Fig. 10.
Open image in new window Fig. 10 Results comparisons between analytical solutions and IGA solutions.
The maximum relative errors of the deformation in the three directions between analytical solutions and IGA solutions are less than 0.1%.
The maximum relative errors of the deformation in the three directions of cantilever beam benchmark problem between analytical solutions and IGA solutions are less than 0.1%, which illustrate the good performance of the developed IGA beam element.
Comparisons between the analytical solution and test results validated the proposed formula.
Good agreement was found between the analytical solution and measured values.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com