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Electric circuit analogy of heat losses of clothed walking human body in windy environment

机译:在风环境中穿着行走人体的热损失电路类别

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摘要

In this study, a simplified approach for the estimation of the segmental heat losses from the human body to the environment is developed. The approach is based on a heat resistance model that predicts the latent and sensible heat losses while incorporating an analogy between the air flow and an electric circuit to determine the clothed limb or trunk segment ventilation induced by motion and wind. The estimation of the segmental ventilation allows the correction of the clothing dry/evaporative resistances in the heat resistance network to determine the dynamic resistance. The circuit models of heat and ventilation are validated by conducting experiments on a thermal manikin investigating the following cases: (i) no wind and no walking conditions (ii) wind (0.8 m/s) without walking condition (iii) walking (0.8 m/s) without wind (iv) wind (0.8 m/s) and walking (0.8 m/s) conditions. It was shown that the sensible heat loss segmental predictions of the circuit models were within the standard deviation range of the performed experiments.
机译:在该研究中,开发了一种简化的方法,用于估计从人体到环境的节段热损失。该方法基于耐热模型,其预测潜伏和明智的热量损失,同时结合在空气流和电路之间的类比,以确定由运动和风引起的衣服肢体或干线段通风。节段通风的估计允许校正耐热网络中的衣服干/蒸发电阻以确定动态阻力。通过对热人体模型进行实验来验证热和通风的电路模型:(i)没有风和没有行走条件(II)风(0.8米/秒),无行走条件(III)步行(0.8米/ s)没有风(iv)风(0.8米/ s)和行走(0.8米/秒)条件。结果表明,电路模型的明智的热损失节段预测在执行实验的标准偏差范围内。

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