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边界元法(BEM)不同变体在生物热传递问题数值模拟中的应用。

Application of different variants of the BEM in numerical modeling of bioheat transfer problems.

作者信息

Majchrzak Ewa

机构信息

Institute of Computational Mechanics and Engineering, Silesian University of Technology, 44-100 Gliwice, Konarskiego 18a, Poland.

出版信息

Mol Cell Biomech. 2013 Sep;10(3):201-32.

Abstract

Heat transfer processes proceeding in the living organisms are described by the different mathematical models. In particular, the typical continuous model of bioheat transfer bases on the most popular Pennes equation, but the Cattaneo-Vernotte equation and the dual phase lag equation are also used. It should be pointed out that in parallel are also examined the vascular models, and then for the large blood vessels and tissue domain the energy equations are formulated separately. In the paper the different variants of the boundary element method as a tool of numerical solution of bioheat transfer problems are discussed. For the steady state problems and the vascular models the classical BEM algorithm and also the multiple reciprocity BEM are presented. For the transient problems connected with the heating of tissue, the various tissue models are considered for which the 1st scheme of the BEM, the BEM using discretization in time and the general BEM are applied. Examples of computations illustrate the possibilities of practical applications of boundary element method in the scope of bioheat transfer problems.

摘要

生物体内进行的热传递过程由不同的数学模型描述。特别是,典型的生物热传递连续模型基于最流行的彭尼斯方程,但卡塔尼奥 - 韦尔诺特方程和双相滞后方程也被使用。应该指出的是,同时也在研究血管模型,然后针对大血管和组织区域分别建立能量方程。本文讨论了边界元法的不同变体,作为生物热传递问题数值解的一种工具。对于稳态问题和血管模型,给出了经典的边界元法算法以及多重互易边界元法。对于与组织加热相关的瞬态问题,考虑了各种组织模型,并应用了边界元法的第一种方案、时间离散化的边界元法和通用边界元法。计算示例说明了边界元法在生物热传递问题范围内实际应用的可能性。

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