Numerical Heat Transfer Part A Applications · 2019 · 61 citations · 43 references
Numerical AnalysisEngineeringMechanical EngineeringBiomedical EngineeringComputational MechanicsNumerical SimulationDual PhaseTransport PhenomenaGeneral SolutionBiophysicsFractional DynamicMethod Of Fundamental SolutionHeat TransferNumerical Method For Partial Differential EquationFractional-order SystemDual Phase LagsNumerical TreatmentBioheat TransferMultiscale Modeling
The main objective of this article is to propose a new hybrid modeling algorithm based on combining local radial basis function collocation method (LRBFCM) and general boundary element method (GBEM) for solving time fractional-order dual phase lag bioheat transfer problems in functionally graded tissues. The LRBFCM was developed and implemented using an implicit time-stepping technique and Caputo time fractional derivative for solving the fractional-order governing equation without dual phase lags. Due to suitability of the GBEM for modeling of bioheat transfer in functionally graded tissues. Therefore, GBEM is applied for solving the dual phase lags governing equation without fractional-order derivative. The numerical results are depicted graphical forms to show the effects of functionally graded parameter, fractional-order parameter and anisotropy on the nonlinear temperature distribution. Also, these numerical results demonstrate the validity and accuracy of the proposed algorithm and technique.
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Transversely isotropic tensile material properties of skeletal muscle tissue
Duane A. Morrow, Tammy L. Haut Donahue, Gregory M. Odegard et al. · Journal of the mechanical behavior of biomedical materials/Journal of mechanical behavior of biomedical materials · 2009 · 224 citations
Engineering, Skeletal Muscle Tissue, Mechanical Properties +6