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Deriving the operational procedure for the Universal Thermal Climate Index (UTCI)

机译:得出《全球热气候指数》(UTCI)的操作程序

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The Universal Thermal Climate Index (UTCI) aimed for a one-dimensional quantity adequately reflecting the human physiological reaction to the multi-dimensionally defined actual outdoor thermal environment. The human reaction was simulated by the UTCI-Fiala multi-node model of human thermoregulation, which was integrated with an adaptive clothing model. Following the concept of an equivalent temperature, UTCI for a given combination of wind speed, radiation, humidity and air temperature was defined as the air temperature of the reference environment, which according to the model produces an equivalent dynamic physiological response. Operationalising this concept involved (1) the definition of a reference environment with 50% relative humidity (but vapour pressure capped at 20 hPa), with calm air and radiant temperature equalling air temperature and (2) the development of a one-dimensional representation of the multivariate model output at different exposure times. The latter was achieved by principal component analyses showing that the linear combination of 7 parameters of thermophysiological strain (core, mean and facial skin temperatures, sweat production, skin wettedness, skin blood flow, shivering) after 30 and 120 min exposure time accounted for two-thirds of the total variation in the multi-dimensional dynamic physiological response. The operational procedure was completed by a scale categorising UTCI equivalent temperature values in terms of thermal stress, and by providing simplified routines for fast but sufficiently accurate calculation, which included look-up tables of pre-calculated UTCI values for a grid of all relevant combinations of climate parameters and polynomial regression equations predicting UTCI over the same grid. The analyses of the sensitivity of UTCI to humidity, radiation and wind speed showed plausible reactions in the heat as well as in the cold, and indicate that UTCI may in this regard be universally useable in the major areas of research and application in human biometeorology.
机译:通用热气候指数(UTCI)的目标是一维数量,足以反映人对多维定义的实际室外热环境的生理反应。人体反应通过UTCI-Fiala人体温度调节多节点模型进行仿真,该模型与自适应服装模型集成在一起。按照等效温度的概念,将风速,辐射,湿度和空气温度的给定组合的UTCI定义为参考环境的空气温度,根据模型,该温度会产生等效的动态生理响应。该概念的可操作性涉及(1)定义相对湿度为50%(但蒸气压限制为20 hPa),大气和辐射温度等于空气温度的参考环境,以及(2)开发一维表示的在不同的曝光时间输出多元模型。后者是通过主成分分析获得的,表明在暴露30和120分钟后,热生理应变的7个参数(核心,平均和面部皮肤温度,汗液产生,皮肤湿润,皮肤血液流动,发抖)的线性组合占两个多维动态生理反应总变化的三分之二。通过按热应力将UTCI等效温度值分类的规模,并通过提供简化的例程进行快速而足够准确的计算,从而完成了操作程序,该例程包括针对所有相关组合的网格的预先计算的UTCI值的查找表同一网格上的气候参数和多项式回归方程的预测UTCI。 UTCI对湿度,辐射和风速的敏感性分析表明,在高温和寒冷条件下,似乎都可能发生反应,这表明UTCI在这方面可能在人类生物气象学的主要研究和应用领域中普遍使用。

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