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Analysis of Effect of Clothing in Procedure of Cryotherapy using Computer Simulation

机译:用计算机仿真分析衣服在冷冻疗法过程中的影响

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This article discusses the effects of a simulated shoe made of different materials on providing protection against the influence of cryogenic gas, and considered local changes in heat flow and temperature curve along the length of the skin of the object of whole-body cryotherapy (WBC). In the work, protective shoes made of various materials, such as fabric, wool, leather and rubber, were considered and modeled. It was also shown that for a more effective WBC procedure, it is necessary to equalize the temperature dependence along the length of the object under study, since there are local excesses. The numerical analysis in this paper was carried out by simulating the process of nonstationary heat exchange through a multi-layer object; imitation of a person included such layers as: epithelium, fat layer, muscle layer. This problem was solved using the finite element method in special software. Assumptions were made to describe biological heat, the bioheat equations were solved using the Penns approximation. The cryogenic gas flow was described by a turbulent model. In this paper, a computer model is created that is close to reality with some assumptions, however, this model allows you to experiment without harming the patient to increase the therapeutic effect. The results can be used for the most convenient selection of protective shoes, as well as further to improve the efficiency and safety of the patient.
机译:本文讨论了模拟鞋对不同材料制成的效果,以提供保护抵抗低温气体的影响,并考虑了沿着全身冷冻疗法对象(WBC)的皮肤长度的热流和温度曲线的局部变化。在工作中,考虑并建模了由各种材料制成的防护鞋,例如织物,羊毛,皮革和橡胶。还表明,对于更有效的WBC程序,必须沿着研究的物体的长度均衡沿着研究的长度来均衡,因为存在局部过量。本文中的数值分析是通过模拟通过多层物体的非间断热交换的过程进行的;模仿一个人包括这样的层,如:上皮,脂肪层,肌肉层。使用特殊软件中的有限元方法解决了这个问题。假设是为了描述生物热,使用Penns近似来解决生物发热方程。通过湍流模型描述了低温气体流动。在本文中,创建了一种计算机模型,其与一些假设接近现实,然而,该模型允许您在不损害患者增加治疗效果的情况下进行实验。结果可用于最方便的保护鞋选择,以及进一步提高患者的效率和安全性。

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