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Semi-analytical solutions for different non-linear models of dual phase lag equation in living tissues

机译:活组织双相滞后方程不同非线性模型的半分析解

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In this study, the heat transfer in a multilayer heated living tissue is investigated. A non-linear dual phase lag (DPL) heat conduction model is presented assuming temperature-dependent blood perfusion rate, heat conductivity and metabolic heat generation. Semi -analytical solutions for the non-linear model are obtained employing the Galerkin weighted residuals method. The effects of the variable thermophysical properties on the temperature distribution within the tissue are investigated through comparison of the results with the corresponding results for the constant thermophysical properties. The results show that the temperature dependence of the blood perfusion rate has a significant effect on the temperature distribution in the different layers of the tissue. As far as the tumor region is considered, 0.43 °C increase in its temperature is observed in comparison with that obtained assuming the constant blood perfusion rate at t = 1800 s. Moreover, increasing the temperature dependence of the thermal conductivity leads to the reduction in the temperature of the tissue except in the muscle layers. Considering the temperature-dependent metabolic heat generation increases the temperature of all of the layers compared to the corresponding temperatures obtained assuming the constant metabolic heat generation.
机译:在该研究中,研究了多层加热的活组织中的热传递。假设温度依赖性血液灌注速率,导热性和代谢发热,呈现非线性双相滞后(DPL)热传导模型。获得了采用Galerkin加权残留方法的非线性模型的半显微展示。通过对应于恒定热神族特性的相应结果的结果,研究了可变热物理性质对组织内温度分布的影响。结果表明,血液灌注速率的温度依赖性对组织不同层中的温度分布具有显着影响。考虑到肿瘤区域,与假设在T = 1800秒的恒定血液灌注速率的恒定血液灌注速率相比,观察到其温度的0.43℃。此外,增加导热率的温度依赖性导致除肌层之外的组织的温度的降低。考虑到温度依赖性代谢发热,与假设恒定代谢热产生的相应温度相比,所有层的温度增加。

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