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Prediction of convective heat transfer coefficients for the upper respiratory tracts of rat, dog, monkey, and humans

机译:对大鼠,狗,猴子和人类上呼吸道的对流传热系数的预测

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Invivo studies involving mammal surrogate models for toxicology studies have restrictions related to animal protection and ethics. Computer models, i.e., in silico models, have great potential to contribute towards essential understanding of heat and mass transfer phenomena in respiratory tracts in place of invivo and invitro studies. Here, we developed numerical upper airway models of a rat, a dog, a monkey, and two humans by using computed tomography data and then applied computational fluid dynamics analysis. Convective heat transfer coefficients were precisely analysed as a function of breathing airflow rate. Based on the computational fluid dynamics simulation results, the correlations between Nusselt (Nu) number and the product of the Reynolds (Re) and Prandtl (Pr) numbers were summarized. The heat transfer efficiency (order of h(c) and correlation of Nu and RePr) in the upper airway of the dog seems to match those of the human models. On the other hand, the results for the rat and monkey showed clear differences compared with those of human models. The identified fundamental qualities of convective heat transfer phenomena in airways for rats, dogs, monkeys, and humans, have enabled discussions about quantitative differences of heat and mass transfer efficiency between different animals/species.
机译:涉及用于毒理学研究的哺乳动物替代模型的体内研究具有与动物保护和道德相关的限制。代替体内和体外研究,计算机模型,即计算机模型,具有极大的潜力,有助于对呼吸道中的传热和传质现象进行必要的理解。在这里,我们通过使用计算机断层扫描数据,然后应用计算流体动力学分析,开发了大鼠,狗,猴子和两个人的上呼吸道数值模型。对流传热系数被精确地分析为呼吸气流速率的函数。根据计算流体动力学模拟结果,总结了Nusselt(Nu)数与雷诺(Re)和Prandtl(Pr)数乘积之间的相关性。狗上呼吸道的热传递效率(h(c)的阶数以及Nu和RePr的相关性)似乎与人体模型相匹配。另一方面,与人类模型相比,大鼠和猴子的结果显示出明显的差异。确定的大鼠,狗,猴子和人类气道中对流传热现象的基本性质,使人们能够讨论不同动物/物种之间传热和传质效率的定量差异。

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