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首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >The development and initial validation of a virtual dripping sweat rate and a clothing wetness ratio for use in predictive heat strain models
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The development and initial validation of a virtual dripping sweat rate and a clothing wetness ratio for use in predictive heat strain models

机译:用于预测热应变模型的虚拟滴汗率和衣物湿度比的开发和初步验证

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This paper applies the heat balance equation (HBE) for clothed subjects as a linear function of mean skin temperature (t (sk) ) by a new sweating efficiency (eta (sw) ) and an approximation for the thermoregulatory sweat rate. The equation predicting t (sk) in steady state conditions was derived as the solution of the HBE and used for a predictive heat strain scale. The heat loss from the wet clothing (WCL) area was identified with a new variable of 'virtual dripping sweat rate VDSR' (S (wdr) ). This is a subject's un-evaporated sweat rate in dry clothing from the regional sweat rate exceeding the maximum evaporative capacity, and adds the moisture to the clothing, reducing the intrinsic clothing insulation. The S (wdr) allowed a mass balance analysis of the wet clothing area identified as clothing wetness (w (cl) ). The w (cl) was derived by combining the HBE at the WCL surface from which the evaporation rate and skin heat loss from WCL region are given. Experimental results on eight young male subjects wearing typical summer clothing, T-shirt and trousers verified the model for predicting t (sk) with WCL thermal resistance (R (cl,w) ) identified as 25 % of dry clothing (R (cl,d) )
机译:本文通过新的出汗效率(eta(sw))和体温调节出汗率的近似值,将穿衣对象的热平衡方程(HBE)用作平均皮肤温度(t(sk))的线性函数。导出稳态条件下的预测t(sk)的方程作为HBE的解,并用于预测热应变规模。湿衣服(WCL)区域的热损失被确定为“虚拟滴汗率VDSR”(S(wdr))的新变量。这是受试者在干衣中的未蒸发汗水率,从区域出汗率开始超过最大蒸发量,并增加了衣服的水分,从而降低了衣服固有的隔热性。 S(wdr)允许对确定为衣物湿度(w(cl))的湿衣物区域进行质量平衡分析。 w(cl)是通过将WCL表面的HBE结合在一起而得出的,由此得出WCL区域的蒸发速率和皮肤热量损失。对八名穿着典型夏季服装,T恤和裤子的年轻男性受试者的实验结果验证了用于预测t(sk)的模型,其中WCL热阻(R(cl,w))被确定为干衣(R(cl, d))

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