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首页> 外文期刊>Theoretical and applied climatology >Cabin air temperature of parked vehicles in summer conditions: life-threatening environment for children and pets calculated by a dynamic model
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Cabin air temperature of parked vehicles in summer conditions: life-threatening environment for children and pets calculated by a dynamic model

机译:夏季停放车辆的车厢空气温度:动态模型计算得出的威胁儿童和宠物生命的环境

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摘要

In vehicles that are parked, no ventilation and/or air conditioning takes place. If a vehicle is exposed to direct solar radiation, an immediate temperature rise occurs. The high cabin air temperature can threaten children and animals that are left unattended in vehicles. In the USA, lethal heat strokes cause a mean death rate of 37 children per year. In addition, temperature-sensitive goods (e.g. drugs in ambulances and veterinary vehicles) can be adversely affected by high temperatures. To calculate the rise of the cabin air temperature, a dynamic model was developed that is driven by only three parameters, available at standard meteorological stations: air temperature, global radiation and wind velocity. The transition from the initial temperature to the constant equilibrium temperature depends strongly on the configuration of the vehicle, more specifically on insulation, window area and transmission of the glass, as well as on the meteorological conditions. The comparison of the model with empirical data showed good agreement. The model output can be applied to assess the heat load of children and animals as well as temperature-sensitive goods, which are transported and/or stored in a vehicle.
机译:在停放的车辆中,没有通风和/或空调。如果车辆暴露在直接的太阳辐射下,则会立即导致温度升高。机舱空气温度高会威胁到无人看管的儿童和动物。在美国,致命的中暑每年导致37名儿童的平均死亡率。此外,温度敏感的商品(例如,救护车和兽医车中的药品)可能会受到高温的不利影响。为了计算机舱空气温度的升高,开发了一个仅由三个参数驱动的动态模型,这些参数可在标准气象站使用:空气温度,全球辐射和风速。从初始温度到恒定平衡温度的过渡在很大程度上取决于车辆的配置,更具体地取决于玻璃的隔热,窗户面积和透射率,以及气象条件。模型与实证数据的比较显示出很好的一致性。模型输出可用于评估运输和/或存储在车辆中的儿童和动物以及对温度敏感的货物的热负荷。

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