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Experimental visualisation of wake flows induced by different shaped moving manikins

机译:不同形状的人体模型引起的尾流的实验可视化

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Traditional smoke visualisation is based on stationary objects with a moving fluid. This paper presents wake flow from moving manikins investigated by a new smoke visualisation technique. Three scaled models 1/5th of realistic manikin models were used, including two body shapes (thin and wide) and two gestures (standing and walking). Smoke visualisation was produced by a chemical reaction between acetic acid (CH3COOH) and cyclohexylamine (C6H13 N) to generate smoke. Highspeed photography and image processing techniques were used to determine the qualitative and quantitative data on the airflow patterns and separation points from the manikin motion. Detailed flow separation images showed that regular vortices were produced off the head and the shoulder, while flow separating at the hand swirled behind and inwards. Analysis of flow over the head revealed how the separation point shifted from the back of the head to the front as the velocity decreased. When the manikin came to a stop, the results also showed increased airflow activity around the face which increases the risk of inhaled particulate matter from the surroundings. Image processing analysis produced quantitative data which included the vortex shedding frequency coming off the shoulder, and the separation point from the manikin head. It is expected that the experimental results will provide validation data for future computational fluid dynamic (CFD) modelling results.
机译:传统的烟雾可视化基于具有移动流体的静止物体。本文介绍了通过新型烟雾可视化技术研究的运动人体模型的尾流。使用了三个比例模型,它们是逼真的人体模型的1/5,包括两个身体形状(瘦而宽)和两个手势(站立和行走)。烟气的可视化是通过乙酸(CH3COOH)与环己胺(C6H13 N)之间的化学反应产生的。高速摄影和图像处理技术用于确定有关人体模型运动的气流模式和分离点的定性和定量数据。详细的流动分离图像显示,在头部和肩膀上产生了规则的涡流,而在手上的流动分离则向后和向内旋转。对头上流的分析表明,随着速度降低,分离点如何从头后向前移。当人体模型停止运动时,结果还表明面部周围的气流活动增加,这增加了从周围环境吸入颗粒物的风险。图像处理分析产生了定量数据,其中包括从肩部流出的涡旋脱落频率以及与人体模型头部的分离点。预计实验结果将为未来的计算流体动力学(CFD)建模结果提供验证数据。

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