人体热损失对全身冷冻室内温度场和速度场的影响

IF 1.8 Q3 MECHANICS Fluids Pub Date : 2023-09-16 DOI:10.3390/fluids8090252
Rim Elfahem, Bastien Bouchet, Boussad Abbes, Guillaume Polidori, Fabien Beaumont
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引用次数: 0

摘要

本研究旨在探讨人体热损失对全身冷冻室内热及空气动力学条件的影响。潜在的假设是,人体产生的热量改变了机舱内的热和空气动力学环境。通过数值研究验证了这一假设,并分析了在3分钟的全身冷冻过程中人体与舱室之间的热力学交换。采用计算流体力学(CFD)方法研究了人体与冷冻舱内部的非定常换热问题。基于实验数据建立的数学模型,应用热边界条件来模拟皮肤随时间的冷却动力学。3D结果的后处理,包括体表的温度、速度场和热通量图,提供了对全身冷冻治疗过程中涉及的热对流机制的深入了解。研究发现,人体热损失显著影响客舱内的温度场,导致气动和热条件的全局修改。这些发现表明,可能需要调整冷冻治疗方案或优化舱内设置温度以提高治疗效果。
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Influence of Body Heat Loss on Temperature and Velocity Fields in a Whole-Body Cryotherapy Chamber
This study aims to investigate the impact of body heat loss on the thermal and aerodynamic conditions in a whole-body cryotherapy chamber. The underlying hypothesis is that the heat generated by the human body alters the thermal and aerodynamic environment inside the cabin. A numerical study was conducted to test this hypothesis and analyze the thermodynamic exchanges between the human body and the cabin during a 3 min whole-body cryotherapy session. The computational fluid dynamics (CFD) approach was used to study the unsteady heat transfer between the human body and the interior of the cryotherapy cabin. A thermal boundary condition, based on a mathematical model developed from experimental data, was applied to simulate skin cooling kinetics over time. The post-processing of the 3D results, including temperature, velocity fields, and thermal flux maps at the body surface, provided insight into the thermo-convective mechanisms involved in a whole-body cryotherapy session. The study found that body heat loss significantly affects the temperature fields inside the cabin, leading to global modifications of the aeraulic and thermal conditions. These findings suggest that cryotherapy protocols may need to be adjusted or the cabin set temperature optimized to enhance the therapeutic benefits.
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来源期刊
Fluids
Fluids Engineering-Mechanical Engineering
CiteScore
3.40
自引率
10.50%
发文量
326
审稿时长
12 weeks
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