NUMERICAL ANALYSIS OF TRIPLE LAYER SKIN TISSUE FREEZING USING NON-FOURIER HEAT CONDUCTION

Author:

SINGH SONALIKA1,KUMAR SUSHIL1

Affiliation:

1. Department of Applied Mathematics & Humanities, S. V. National Institute of Technology, Surat, Gujarat, India

Abstract

The classical Fourier’s law assumes that the propagation speed of thermal disturbance is infinite, which is contradictory to physical reality. The living tissues are highly non-homogeneous and need a relaxation time to accumulate enough energy to transfer to the nearest element. This study proposes hyperbolic bio-heat model to study the freezing process in triple layer skin tissue with non-ideal property of skin tissue, metabolism and blood perfusion. The enthalpy formulation and finite difference method are used to solve the hyperbolic bio-heat model for triple layer skin tissue freezing. The effects of relaxation time for heat flux on temperature profile, liquidus and solidus interfaces are studied during the freezing of skin tissue. It is observed that the different values of relaxation time for heat flux have significant effect on temperature distribution, liquidus and solidus interfaces within the skin tissue.

Publisher

World Scientific Pub Co Pte Lt

Subject

Biomedical Engineering

Cited by 10 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Modeling of Thermal Processes in Human Skin Layers When Measuring a Heat Flux Density;2023 IEEE Ural-Siberian Conference on Computational Technologies in Cognitive Science, Genomics and Biomedicine (CSGB);2023-09-28

2. Computational study on 2D three-phase lag bioheat model during cryosurgery using RBF meshfree method;Journal of Thermal Biology;2023-05

3. Numerical analysis of phase‐change heat transfer in axisymmetric biological tissue during nano‐cryosurgery;Heat Transfer;2023-04-24

4. Irreversible thermal damage due to a laser pulse on the human breast tumour;Journal of Electromagnetic Waves and Applications;2021-11-15

5. Computational Study on Skin Tissue Freezing Using Three-Phase Lag Bioheat Model;Journal of Heat Transfer;2021-09-10

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