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A comparative study of vent designs for effective ventilation in cricket helmets

机译:通风口设计对蟋蟀头盔有效通风的比较研究

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It has been reported that wearing a protective helmet reduces airflow around the head and leads to an increase in heat-related stress and discomfort due to excessive sweat. The main objective of this study is to investigate vent designs in order to improve the air ventilation and heat dissipation in cricket helmets. An experiment was conducted in a research wind tunnel using a thermal manikin headfoam at a constant wind speed of 2.3m/s. Thermal comfort was measured in terms of heat dissipation and heat gain with ten K-type thermocouples. A comparison was made between four different helmets in terms of the vent design variations and temperature distributions. An increase in heat dissipation and a reduction in temperature in thermocouples were observed in the design incorporating suspension straps. The heat dissipation increases when there is an air gap between the head surface and the helmet shell/liners and where an air gap allows cooling air to circulate through the helmet. The thermal manikin experiment provided an efficient investigation of heat gain and/or loss for different vent designs, whereby its application is restricted to controlled experimental conditions.
机译:据报道,穿着保护头盔减少头部周围的气流,导致由于过度汗水而导致热相关的压力和不适。本研究的主要目的是调查通风口设计,以改善蟋蟀头盔中的空气通风和散热。在恒定风速下使用热人体螺旋速度为2.3m / s,在研究风洞中进行实验。在散热和热量增益方面测量热舒适性,具有10 k型热电偶。在通风口设计变化和温度分布方面,在四种不同的头盔之间进行了比较。在包括悬浮带的设计中观察到热电偶散热和温度降低的增加。当头表面和头盔壳/衬里之间存在气隙并且气隙允许冷却空气循环通过头盔时,散热增加。热人体模型实验提供了对不同通风设计的热增益和/或损失的有效研究,其应用仅限于受控实验条件。

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