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Experimental investigation into the interaction between the human body and room airflow and its effect on thermal comfort under stratum ventilation

机译:人体与房间气流交互作用及其对地层通风热舒适性影响的实验研究

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Room occupants’ comfort and health are affected by the airflow. Nevertheless, they themselves also play an important role in indoor air distribution. This study investigated the interaction between the human body and room airflow under stratum ventilation. Simplified thermal manikin was employed to effectively resemble the human body as a flow obstacle and/or free convective heat source. Unheated and heated manikins were designed to fully evaluate the impact of the manikin at various airflow rates. Additionally, subjective human tests were conducted to evaluate thermal comfort for the occupants in two rows. The findings show that the manikin formed a local blockage effect, but the supply airflow could flow over it. With the body heat from the manikin, the air jet penetrated farther compared with that for the unheated manikin. The temperature downstream of the manikin was also higher because of the convective effect. Elevating the supply airflow rate from 7 to 15 air changes per hour varied the downstream airflow pattern dramatically, from an uprising flow induced by body heat to a jet-dominated flow. Subjective assessments indicated that stratum ventilation provided thermal comfort for the occupants in both rows. Therefore, stratum ventilation could be applied in rooms with occupants in multiple rows.
机译:房间的舒适度和健康状况会受到气流的影响。然而,它们本身在室内空气分配中也起着重要作用。这项研究调查了地层通风条件下人体与房间气流之间的相互作用。简化的人体模型被用来有效地模仿人体作为流动障碍和/或自由对流热源。未加热和加热的人体模型的设计旨在全面评估人体模型在各种气流速率下的影响。此外,还进行了主观人体测试,以评估两排乘员的热舒适性。研究结果表明,人体模型形成了局部阻塞效应,但是供应气流可以在其上流动。由于人体模型产生的热量,与未加热的人体模型相比,空气喷入的距离更远。由于对流作用,人体模型的下游温度也较高。将送风速度从每小时7次空气变化提高到15次空气变化,极大地改变了下游的气流模式,从体热引起的上升流到以射流为主的流。主观评估表明,层通风为两排的乘员提供了热舒适感。因此,可以在多排人员的房间中进行分层通风。

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