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Numerical Analysis of Full Body Cryotherapy Efficiency with Cryochamber Design Modification

机译:用Cryochamber设计修改的全身冷冻疗效数值分析

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This article discusses the measurement of skin under the influence of low temperatures during the modernization of the cryochamber wall. In this paper, six different cryochamber models were analyzed. In each model, changes were made with respect to the curvature of the chamber wall construction. The effect of low temperatures on the skin layer, including on the muscle layer when the cryochamber wall was changed, was investigated. A model is simulated that allows determining the temperature dependence in each skin layer from the moment of the cryochamber and monitor the temperature change after the session until the temperature field returns to its original state. The dependence of heat flux losses on the degree of cooling of human skin layers is given. The results were obtained using a mathematical model of heat exchange between the flow of a gaseous medium (a pair of liquid nitrogen) and a biological object in a two-dimensional nonstationary formulation. The study was carried out using the finite element method in the Comsol Multiphysics application package. The model includes layers of solid, biological tissue and cryogenic gas. Calculations of heat transfer processes in biological tissue were carried out using the Bioheat Transfer module. The preliminary results obtained show the comparison and effect of the duration effect and the degree of the cryotherapy effect in the modernization of the cryochamber walls.
机译:本文讨论了在低温期间在低温墙的现代化期间的影响下的皮肤测量。在本文中,分析了六种不同的Cryochamber模型。在每个模型中,对腔室墙壁结构的曲率进行改变。研究了低温对皮肤层的影响,包括在肌肉层上改变肌肉层时。模拟模型,允许从低温纸的时刻确定每个皮肤层中的温度依赖性,并在会话之后监控温度变化,直到温度场返回其原始状态。给出了热通量损耗对人皮层冷却程度的依赖性。使用在二维非营养剂中的气态介质(一对液氮)的流动与生物对象之间的热交换的数学模型获得结果。使用COMSOL Multiphysics应用程序包中的有限元方法进行该研究。该模型包括固体,生物组织和低温气体层。使用生物发热模块进行生物组织中的传热过程的计算。获得的初步结果显示了持续时间效应的比较和效果以及冷冻罩壁的现代化中的冷冻疗法程度。

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