A general bioheat transfer model based on the theory of porous media
From MaRDI portal
Publication:929865
DOI10.1016/J.IJHEATMASSTRANSFER.2007.05.030zbMath1143.80323OpenAlexW2006445875MaRDI QIDQ929865
Akira Nakayama, Fujio Kuwahara
Publication date: 18 June 2008
Published in: International Journal of Heat and Mass Transfer (Search for Journal in Brave)
Full work available at URL: http://hdl.handle.net/10297/2631
Flows in porous media; filtration; seepage (76S05) Physiological flows (76Z05) Physiological flow (92C35)
Related Items (26)
On the 2D bioheat equation with convective boundary conditions and its numerical realization via a highly accurate approach ⋮ FEM simulation of EM field effect on body tissues with bio-nanofluid (blood with nanoparticles) for nanoparticle mediated hyperthermia ⋮ Fibonacci wavelet method for solving Pennes bioheat transfer equation ⋮ Numerical simulation of dual-phase-lag bioheat transfer model during thermal therapy ⋮ Subdomain BEM formulations for the solution of bio-heat problems in biological tissue with melanoma lesions ⋮ Computational modeling of the effect of blood flow and dual phase lag on tissue temperature during tumor treatment by magnetic hyperthermia ⋮ A general bioheat model at macroscale ⋮ Solution of fractional bioheat equations by finite difference method and HPM ⋮ 1D generalized dual-phase lag equation. Sensitivity analysis with respect to the porosity ⋮ Blood perfusion estimation in heterogeneous tissue using BEM based algorithm ⋮ Operating Conditions for the Hemodialysis Treatment Based on the Volume Averaging Theory ⋮ Numerical solution of generalized DPL model using wavelet method during thermal therapy applications ⋮ Numerical Solution of Bioheat Transfer Problems with Transient Blood Temperature ⋮ A combined transient thermal model for laser hyperthermia of tumors with embedded gold nanoshells ⋮ Microwave ablation using four-tine antenna: effects of blood flow velocity, vessel location, and total displacement on porous hepatic cancer tissue ⋮ A bioheat transfer model: Forced convection in a channel occupied by a porous medium with counterflow ⋮ Analysis of thermal injuries using classical Fourier and DPL models for multi-layer of skin under different boundary conditions ⋮ Thermal lagging in living biological tissue based on nonequilibrium heat transfer between tissue, arterial and venous bloods ⋮ A two-equation coupled system for determination of liver tissue temperature during thermal ablation ⋮ Exact analysis based on BDLTNE approach for thermal behaviour in living tissues during regional hyperthermia therapy ⋮ Sensitivity analysis of temperature field in the heated soft tissue with respect to the perturbations of porosity ⋮ Analytical characterization of heat transport through biological media incorporating hyperthermia treatment ⋮ Steady and unsteady analytical solutions of three-dimensional heat transfer in a multi-layer and porous skin tissue ⋮ Specific absorption rate and temperature distributions in human head subjected to mobile phone radiation at different frequencies ⋮ Generalized dual-phase lag bioheat equations based on nonequilibrium heat transfer in living biological tissues ⋮ Generalized wavelet method for solving fractional bioheat transfer model during hyperthermia treatment
Cites Work
- Boundary and inertia effects on flow and heat transfer in porous media
- Transient response of the human limb to an external stimulus
- The role of porous media in modeling flow and heat transfer in biological tissues.
- Numerical modelling for three-dimensional heat and fluid flow through a bank of cylinders in yaw
- An equation for thermal dispersion flux transport and its mathematical modelling for heat and fluid flow in a porous medium
- A two-energy equation model for conduction and convection in porous media
This page was built for publication: A general bioheat transfer model based on the theory of porous media