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Exact Analytical Solution of the Peristaltic Nanofluids Flow in an Asymmetric Channel with Flexible Walls and Slip Condition: Application to the Cancer Treatment

机译:柔性壁和滑动条件下的不对称通道中蠕动纳米流体的精确解析解:在癌症治疗中的应用

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摘要

In the cancer treatment, magnetic nanoparticles are injected into the blood vessel nearest to the cancer's tissues. The dynamic of these nanoparticles occurs under the action of the peristaltic waves generated on the flexible walls of the blood vessel. Studying such nanofluid flow under this action is therefore useful in treating tissues of the cancer. In this paper, the mathematical model describing the slip peristaltic flow of nanofluid was analytically investigated. Exact expressions were deduced for the temperature distribution and nano-particle concentration. In addition, the effects of the slip, thermophoresis, and Brownian motion parameters on the temperature and nano-particle concentration profiles were discussed and further compared with other approximate results in the literatures. In particular, these results have been obtained at the same values of the physical examined parameters that was considered in Akbar et al., “Peristaltic flow of a nanofluid with slip effects,” 2012. The results reveal that remarkable differences are detected between the exact current results and those approximately obtained in the literatures for behaviour of the temperature profile and nano-particles concentration. Accordingly, the current analysis and results are considered as optimal and therefore may be taken as a base for any future comparisons.
机译:在癌症治疗中,磁性纳米粒子被注入最接近癌症组织的血管中。这些纳米粒子的动力学在血管的柔性壁上产生的蠕动波的作用下发生。因此,在这种作用下研究这种纳米流体的流动可用于治疗癌症组织。本文对描述纳米流体滑移蠕动流的数学模型进行了分析研究。推导了温度分布和纳米粒子浓度的精确表达式。此外,讨论了滑移,热泳和布朗运动参数对温度和纳米粒子浓度分布的影响,并与文献中的其他近似结果进行了比较。尤其是,这些结果是在与Akbar等人(“具有滑移效应的纳米流体的蠕动流”,2012年)所考虑的物理检查参数相同的值下获得的。目前的结果以及有关温度分布和纳米粒子浓度行为的文献中大致获得的结果。因此,当前的分析和结果被认为是最佳的,因此可以作为任何未来比较的基础。

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