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Analysis of Heat Transfer in Consecutive Variable Cross-Sectional Domains: Applications in Biological Media and Thermal Management

机译:连续可变截面域中的传热分析:在生物介质和热管理中的应用

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Temperature prescription and control is important within biological media and in bioheat transport applications such as in hyperthermia cancer treatment in which the unhealthy tissue/organ is subject to an imposed heat flux. Thermal transport investigation and optimization is also important in designing heat management devices and small-scale porous-filled-channels utilized in electronic and biomedical applications. In this work, biological media or the stated heat management devices with a nonuniform geometry are modeled analytically as a combination of convergent, uniform and/or divergent configurations. The biological media is represented as blood saturated porous tissue matrix while incorporating cells and interstices. Two primary models, namely, adiabatic and constant temperature boundary conditions, are employed and the local thermal nonequi-librium and an imposed heat flux are fully accounted for in the presented analytical expressions. Fluid and solid temperature distributions and Nusselt number correlations are derived analytically for variable cross-sectional domain represented by convergent, divergent, and uniform or any combination thereof of these geometries while also incorporating internal heat generation in fluid and/or solid. Our results indicate that the geometrical variations have a substantial impact on the temperature field within the domain and on the surface with an imposed heat flux. It is illustrated that, the temperature distribution within a region of interest can be controlled by a proper design of the multisectional domain as well as proper selection of the porous matrix. These comprehensive analytical solutions are presented for the first time, to the best of the authors' knowledge in literature.
机译:温度处方和控制在生物介质和生物热传输应用中很重要,例如在高温癌症治疗中,其中不健康的组织/器官会受到强加的热通量。在设计用于电子和生物医学应用的热管理设备和小型多孔填充通道时,热传输研究和优化也很重要。在这项工作中,将生物介质或具有不均匀几何形状的所述热管理装置进行分析建模为会聚,均匀和/或发散配置的组合。生物介质被表示为血液饱和的多孔组织基质,同时并入了细胞和间隙。采用了两个主要模型,即绝热和恒温边界条件,并且在所提供的解析表达式中充分考虑了局部热平衡和施加的热通量。对于由这些几何形状的会聚,发散和均匀或其任意组合表示的可变横截面域,可以通过分析得出流体和固体的温度分布以及Nusselt数的相关性,同时还将内部热量的产生并入流体和/或固体中。我们的结果表明,几何变化对区域内的温度场以及施加热通量的表面有很大影响。示出了,可以通过适当设计多部分区域以及适当选择多孔基质来控制感兴趣区域内的温度分布。据作者所知,这是首次提供这些全面的分析解决方案。

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