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首页> 外文期刊>International Journal of Heat and Mass Transfer >Numerical model of thermal interactions between cylindrical cryoprobe and biological tissue using the dual-phase lag equation
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Numerical model of thermal interactions between cylindrical cryoprobe and biological tissue using the dual-phase lag equation

机译:圆柱冷冻探针与生物组织之间热相互作用的双相滞后方程数值模型

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In the paper, the problem of biological tissue freezing is discussed. In contrast to the previously presented models based on the Pennes equation, the thermal interactions between the cryoprobe tip and soft tissue are described using the dual-phase lag model (DPLM). This model contains two delay times (the relaxation and thermalization times) and in this way, the finite velocity of the thermal wave is considered. The model of the freezing process is based on the introduction of a parameter called 'substitute thermal capacity' to the dual-phase lag equation. At the stage of numerical computations, the explicit scheme of the finite difference method is used. In the final part of the paper the examples of the computation are shown. A comparison with the solution resulting from the adoption of the Pennes equation and also the model verification with the experimental data are presented in the final part of the paper.
机译:在本文中,讨论了生物组织冻结的问题。与先前基于Pennes方程提出的模型相反,使用双相滞后模型(DPLM)描述了冷冻探头尖端与软组织之间的热相互作用。该模型包含两个延迟时间(弛豫时间和热化时间),并以此方式考虑热波的有限速度。冻结过程的模型是基于在双相滞后方程中引入称为“替代热容量”的参数。在数值计算阶段,使用有限差分法的显式方案。在本文的最后部分,显示了计算示例。本文最后部分介绍了与采用Pennes方程得出的解决方案的比较以及带有实验数据的模型验证。

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