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首页> 外文期刊>Annals of Biomedical Engineering >Design and Control Optimization of Microclimate Liquid Cooling Systems Underneath Protective Clothing
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Design and Control Optimization of Microclimate Liquid Cooling Systems Underneath Protective Clothing

机译:防护服下微气候液体冷却系统的设计和控制优化

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摘要

The use of protective clothing, whether in space suits, hazardous waste disposal, or sporting equipment, generally increases the risk of heat stress and hyperthermia by impairing the capacity for evaporative heat exchange from the body to the environment. To date the most efficient method of microclimate cooling underneath protective clothing has been via conductive heat exchange from circulating cooling fluid next to the skin. In order to make the use of liquid microclimate cooling systems (LQMCSs) as portable and practical as possible, the physiological and biomedical engineering design goals should be towards maximizing the efficiency of cooling to maintain thermal comforteutrality with the least cooling possible to minimize coolant and power requirements. Meeting these conditions is an extremely complex task that requires designing for a plethora of different factors. The optimal fitting of the LQMCSs, along with placement and design of tubing and control of cooling, appear to be key avenues towards maximizing efficiency of heat exchange. We review the history and major design constraints of LQMCSs, the basic principles of human thermoregulation underneath protective clothing, and explore potential areas of research into tubing/fabric technology, coolant distribution, and control optimization that may enhance the efficiency of LQMCSs.
机译:无论是在宇航服,危险废物处置中还是在运动器材中,使用防护服通常都会通过损害人体与环境之间的蒸发热交换能力而增加热应激和体温过高的风险。迄今为止,防护服下微气候降温的最有效方法是通过循环冷却液在皮肤附近进行传导性热交换。为了尽可能使用便携式和实用的液体微气候冷却系统(LQ MCS),生理和生物医学工程设计目标应是最大程度地降低冷却效率,以保持热舒适性/中性。可能进行冷却以最大程度地减少冷却液和功率需求。满足这些条件是一项极其复杂的任务,需要针对众多不同因素进行设计。 LQ MCS的最佳配合以及管道的布置和设计以及冷却的控制,似乎是使热交换效率最大化的关键途径。我们回顾了LQ MCS的历史和主要设计约束条件,以及防护服下人体温度调节的基本原理,并探讨了可能在管道/织物技术,冷却液分配和控制优化方面进行研究的潜在领域,这些领域可能会提高效率。 LQ MCS。

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