首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Paradox: increased blood perfusion to the face enhances protection against frostbite while it lowers wind chill equivalent temperatures
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Paradox: increased blood perfusion to the face enhances protection against frostbite while it lowers wind chill equivalent temperatures

机译:悖论:增加对脸部的血液灌注可增强防冻能力,同时降低风寒等效温度

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摘要

A model of facial heat exchange in cold and windy environments is presented. The tissue is depicted as a hollow cylinder and the model includes heat conduction and heat transport by blood circulation from the warmer core. A steady-state solution facilitating the estimation of wind chill equivalent temperature (WCET) as a function of the effective wind velocity, air temperature and blood perfusion rate was obtained. The results quantify and demonstrate the elevation of skin temperatures caused by increased flow of warmer blood from the inner core to the face. Elevated facial temperatures, while enhancing protection against frostbite and other cold-related injuries, also increase heat loss to the colder environment. Paradoxically, such elevated facial temperatures cause WCETs, as estimated by the prevailing definition, to attain lower rather than higher values, indicating, in fact, increased risk of frostbite. The results of this study should be useful in understanding and quantifying the effects of blood perfusion in protection against cold-related injuries. They should also be considered in the re-evaluation and re-formulation of the concept of wind chill, which has been a useful cold weather indicator for decades.
机译:提出了一种在寒冷多风的环境中进行面部热交换的模型。该组织被描绘为中空的圆柱体,该模型包括热和通过来自较暖核心的血液循环进行的热传递。获得了一种稳定状态的解决方案,该解决方案有助于根据有效风速,气温和血液灌注速率估算风冷等效温度(WCET)。结果量化并证明了由于从内芯到面部的热血流量增加而引起的皮肤温度升高。升高的面部温度在增强对冻伤和其他与寒冷相关的伤害的防护的同时,还增加了向较冷环境的热量散失。矛盾的是,如此高的面部温度使WCET(按现行定义估算)达到较低而不是较高的值,实际上表明增加了冻伤的风险。这项研究的结果应有助于理解和量化血液灌注对预防感冒相关伤害的作用。在重新评估和重新定义风冷概念时也应考虑这些因素,风冷是数十年来一直有用的寒冷天气指标。

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