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首页> 外文期刊>Proceedings >3D Gas Distribution with and without Artificial Airflow: An Experimental Study with a Grid of Metal Oxide Semiconductor Gas Sensors
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3D Gas Distribution with and without Artificial Airflow: An Experimental Study with a Grid of Metal Oxide Semiconductor Gas Sensors

机译:有或没有人造气流的3D气体分布:金属氧化物半导体气体传感器网格的实验研究

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Gas distribution modelling can provide potentially life-saving information when assessing the hazards of gaseous emissions and for localization of explosives, toxic or flammable chemicals. In this work, we deployed a three-dimensional (3D) grid of metal oxide semiconductor (MOX) gas sensors deployed in an office room, which allows for novel insights about the complex patterns of indoor gas dispersal. 12 independent experiments were carried out to better understand dispersion patters of a single gas source placed at different locations of the room, including variations in height, release rate and air flow profiles. This dataset is denser and richer than what is currently available, i.e., 2D datasets in wind tunnels. We make it publicly available to enable the community to develop, validate, and compare new approaches related to gas sensing in complex environments.
机译:气体分布模型可以在评估气体排放的危害以及爆炸物,有毒或易燃化学品的定位时提供潜在的救生信息。在这项工作中,我们在办公室中部署了三维(3D)金属氧化物半导体(MOX)气体传感器网格,这使人们对室内气体扩散的复杂模式有了新的见解。进行了12个独立的实验,以更好地理解放置在房间不同位置的单个气体源的分散模式,包括高度,释放速率和气流分布的变化。该数据集比当前可用的数据集(即风洞中的2D数据集)更密集,更丰富。我们将其公开提供,以使社区能够开发,验证和比较与复杂环境中的气体传感有关的新方法。

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