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珠穆朗玛峰上的冻伤和冻结:对极端海拔地区风寒和冻结时间的新认识。

Freezing and frostbite on mount everest: new insights into wind chill and freezing times at extreme altitude.

机构信息

Department of Physics, University of Toronto, Toronto, Canada.

出版信息

High Alt Med Biol. 2011 Fall;12(3):271-5. doi: 10.1089/ham.2011.0008.

Abstract

Cold injury is an acknowledged risk factor for those who venture into high altitude regions. There is, however, little quantitative information on this risk that can be used to implement mitigation strategies. Here we provide the first characterization of the risk of cold injury near the summit of Mount Everest. This is accomplished through the application of a meteorological dataset that has been demonstrated to characterize conditions in the region as inputs to new parameterizations of wind chill equivalent temperature (WCT) and facial frostbite time (FFT). Throughout the year, the typical WCT near the summit of Everest is always <-30°C, and the typical FFT is always less than 20 min. During the spring climbing season, WCTs of -50°C and FFTs of 5 min are typical; during severe storms, they approach -60°C and 1 min, respectively; values typically found during the winter. Further, we show that the summit barometric pressure is an excellent predictor of summit WCT and FFT. Our results provide the first quantitative characterization of the risk of cold injury on Mount Everest and also allow for the possibility of using barometric pressure, an easily observed parameter, in real time to characterize this risk and to implement mitigation strategies. The results also provide additional confirmation as to the extreme environment experienced by those attempting to summit Mount Everest and other high mountains.

摘要

冻伤是进入高海拔地区的人公认的风险因素。然而,关于这种风险的定量信息很少,无法用来实施缓解策略。在这里,我们首次描述了珠穆朗玛峰山顶附近冻伤的风险。这是通过应用气象数据集来实现的,该数据集已被证明可作为新的风冷等效温度 (WCT) 和面部冻伤时间 (FFT) 参数化的输入来描述该地区的条件。全年,珠穆朗玛峰山顶的典型 WCT 始终低于-30°C,典型的 FFT 始终小于 20 分钟。在春季登山季节,典型的 WCT 为-50°C,FFT 为 5 分钟;在严重风暴期间,它们分别接近-60°C 和 1 分钟,这是冬季的典型值。此外,我们表明山顶气压是山顶 WCT 和 FFT 的极好预测指标。我们的结果首次对珠穆朗玛峰冻伤风险进行了定量描述,并且还可以使用易于观察的气压参数实时对该风险进行特征描述并实施缓解策略。结果还进一步证实了试图登顶珠穆朗玛峰和其他高山的人所经历的极端环境。

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