Investigating Heat Transfer in Whole-Body Cryotherapy: A 3D Thermodynamic Modeling Approach with Participant Variability

Fluids Pub Date : 2024-03-01 DOI:10.3390/fluids9030061
R. Elfahem, Bastien Bouchet, B. Abbès, Fabien Legrand, G. Polidori, F. Beaumont
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Abstract

Whole-body cryotherapy (WBC) is a therapeutic practice involving brief exposure to extreme cold, typically lasting one to four minutes. Given that WBC sessions often occur in groups, there is a hypothesis that cumulative heat dissipation from the group significantly affects the thermo-aerodynamic conditions of the cryotherapy chamber. Computational fluid dynamics (CFD) is employed to investigate thermal exchanges between three subjects (one man, two women) and a cryotherapy chamber at −92 °C during a 3-minute session. The investigation reveals that collective body heat loss significantly influences temperature fields within the cabin, causing global modifications in aerodynamic and thermal conditions. For example, a temperature difference of 6.7 °C was calculated between the average temperature in a cryotherapy chamber with a single subject and that with three subjects. A notable finding is that, under an identical protocol, the thermal response varies among individuals based on their position in the chamber. The aerodynamic and thermal characteristics of the cryotherapy chamber impact the heat released at the body’s surface and the skin-cooling rate needed to achieve recommended analgesic thresholds. This study highlights the complexity of physiological responses in WBC and emphasizes the importance of considering individual positions within the chamber for optimizing therapeutic benefits.
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研究全身冷冻疗法中的热传递:带参与者变异性的三维热力学建模方法
全身冷冻疗法(WBC)是一种短时间暴露在极度寒冷环境中的治疗方法,通常持续 1 到 4 分钟。鉴于全身冷冻疗法通常是集体进行的,因此有一种假设认为,集体的累积散热会显著影响冷冻室的热空气动力学条件。本文采用计算流体动力学(CFD)方法,研究了三名受试者(一男一女)在 3 分钟的治疗过程中与零下 92 °C 的冷冻室之间的热交换情况。研究结果表明,人体热量的集体散失极大地影响了舱内的温度场,导致空气动力和热量条件发生全面变化。例如,计算得出单个受试者和三个受试者在低温舱内的平均温度相差 6.7 °C。一个值得注意的发现是,在相同的方案下,不同人在冷冻室中的位置不同,其热反应也不同。冷冻治疗舱的空气动力特性和热特性会影响体表释放的热量以及达到推荐镇痛阈值所需的皮肤冷却速度。这项研究凸显了白细胞介素体生理反应的复杂性,并强调了考虑个体在冷冻室中的位置以优化治疗效果的重要性。
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