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首页> 外文期刊>International Journal of Thermal Sciences >Dual phase lag model-based thermal analysis of tissue phantoms using lattice Boltzmann method
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Dual phase lag model-based thermal analysis of tissue phantoms using lattice Boltzmann method

机译:基于双相滞后模型的组织幻影热分析的格子玻尔兹曼方法

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摘要

The present study is concerned with the development and application of Lattice Boltzmann method based numerical scheme for investigating the thermal response of laser irradiated biological tissue phantom during laser-based photo-thermal therapy. The Lattice Boltzmann Method (LBM) has been employed for analyzing the transport of short-pulse radiation within the body of the tissue phantom that has been considered as the participating medium. In order to determine the two-dimensional temperature distribution inside the tissue medium, the transient form of radiative transfer equation (RTE) has been coupled with the energy equation modeled based on dual phase lag (DPL) heat conduction framework. The LBM-based solution of the coupled RTE and DPL-based numerical model has been benchmarked against the results available in the literature. Results have been presented in the form of two-dimensional temperature distributions, spatial and temporal profiles of temperatures within the body of the laser-irradiated biological tissue phantoms. Effects of phase lags associated with the heat flux (TO and temperature gradients (TT) on the resultant temperature distributions inside the laser irradiated tissue phantom have also been analyzed and discussed. Thereafter, the temperature distribution inside the biological tissue phantom embedded with optical inhomogeneities has been determined using the DPL-based model. Results of the study clearly reveal the successful implementation of LBM-based numerical approach in analyzing the thermal response of laser-irradiated biological tissue phantoms. The inherent properties associated with non-Fourier heat conduction models have also been explicitly brought out in the context of photo-thermal therapy. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:本研究涉及基于格子Boltzmann方法的数值方案的开发和应用,该方案用于研究基于激光的光热疗法中激光辐照的生物组织体模的热响应。格子玻尔兹曼方法(LBM)已被用于分析短脉冲辐射在被认为是参与介质的组织体模体内的传输。为了确定组织介质内部的二维温度分布,已将辐射传递方程(RTE)的瞬态形式与基于双相滞后(DPL)导热框架建模的能量方程耦合。基于RTE和DPL耦合的数值模型的基于LBM的解决方案已针对文献中的可用结果进行了基准测试。结果以二维温度分布,激光辐照的生物组织体模体内温度的时空分布的形式表示。还分析和讨论了与热通量(TO和温度梯度(TT))相关的相位滞后对激光辐照组织体模内部合成温度分布的影响,此后,嵌入光学不均匀性的生物组织体模内部的温度分布为使用基于DPL的模型进行确定,研究结果清楚地揭示了基于LBM的数值方法在分析激光辐照生物组织体模的热响应方面的成功实施,以及与非傅立叶导热模型相关的固有特性(C)2015 Elsevier Masson SAS。保留所有权利。

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