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Individual thermal profiles as a basis for comfort improvement in space and other environments.

机译:单独的温度曲线是改善空间和其他环境中舒适度的基础。

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BACKGROUND: The development of individualized countermeasures to address problems in thermoregulation is of considerable importance for humans in space and other extreme environments. A methodology is presented for evaluating minimal/maximal heat flux from the total human body and specific body zones, and for assessing individual differences in the efficiency of heat exchange from these body areas. The goal is to apply this information to the design of individualized protective equipment. METHODS: A multi-compartment conductive plastic tubing liquid cooling/warming garment (LCWG) was developed. Inlet water temperatures of 8-45 degrees C were imposed sequentially to specific body areas while the remainder of the garment was maintained at 33 degrees C. RESULTS: There were significant differences in heat exchange level among body zones in both the 8 degrees and 45 degrees C temperature conditions (p < 0.001). The greatest amount of heat was absorbed/released by the following areas: thighs (8 degrees C: -2.12 +/- 0.14 kcal min(-1); 45 degrees C: +1.58 +/- 0.23); torso (8 degrees C: -2.12 +/- 0.13 kcal min(-1); 45 degrees C: +1.31 +/- 0.27); calves (8 degrees C: -1.59 +/- 0.26 kcal min(-1); 45 degrees C: +1.53 +/- 0.24); and forearms (8 degrees C: -1.67 +/- 0.29 kcal x min(-1); 45 degrees C: +1.45 +/- 0.20). These are primarily zones with relatively large muscle mass and adipose tissue. Calculation of absorption/release heat rates standardized per unit tube length and flow rate instead of zonal surface area covered showed that there was significantly greater heat transfer in the head, hands, and feet (p < 0.001). The areas in which there was considerable between-subject variability in rates of heat transfer and thus most informative for individual profile design were the torso, thighs, shoulders, and calves or forearms. CONCLUSIONS: The methodology developed is sensitive to individual differences in the process of heat exchange and variations in different body areas, depending on their size and tissue mass content. The design of individual thermal profiles is feasible for better comfort of astronauts on long-duration missions and personnel in other extreme environments.
机译:背景:针对温度调节问题的个性化对策的开发对于太空和其他极端环境中的人类而言非常重要。提出了一种方法,用于评估来自整个人体和特定身体区域的最小/最大热通量,以及评估来自这些身体区域的热交换效率的个体差异。目的是将此信息应用于个性化防护设备的设计。方法:开发了一种多室导电塑料管液体冷却/保温服(LCWG)。依次将8-45摄氏度的进水温度施加到特定的身体部位,而衣服的其余部分保持在33摄氏度。结果:在8摄氏度和45摄氏度下,人体各部位之间的热交换水平存在显着差异C温度条件(p <0.001)。大热量被以下区域吸收/释放:大腿(8摄氏度:-2.12 +/- 0.14 kcal min(-1); 45摄氏度:+1.58 +/- 0.23);躯干(8摄氏度:-2.12 +/- 0.13 kcal min(-1); 45摄氏度:+1.31 +/- 0.27);小腿(8摄氏度:-1.59 +/- 0.26 kcal min(-1); 45摄氏度:+1.53 +/- 0.24);和前臂(8摄氏度:-1.67 +/- 0.29 kcal x min(-1); 45摄氏度:+1.45 +/- 0.20)。这些主要是具有相对大的肌肉量和脂肪组织的区域。计算每单位管长和流速而不是覆盖的区域表面积所标准化的吸收/释放热率表明,头,手和脚的传热能力显着提高(p <0.001)。主体之间的传热速率存在很大差异,因此个人外形设计最有用的地方是躯干,大腿,肩膀,小腿或前臂。结论:所开发的方法对热交换过程中的个体差异和不同身体区域的变化敏感,具体取决于它们的大小和组织质量含量。单独的温度曲线设计对于在长期任务和其他极端环境中的人员提供更好的舒适性是可行的。

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