首页> 外文期刊>The Annals of occupational hygiene. >Experimental characterization of a plume of passive contaminant above a thermal source: capture efficiency of a fume extraction hood.
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Experimental characterization of a plume of passive contaminant above a thermal source: capture efficiency of a fume extraction hood.

机译:热源上方被动污染物羽流的实验表征:通风柜的捕集效率。

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摘要

Industrial ventilation problems can be linked to the formation of thermal plumes that develop due to natural convection above various heat sources. These plumes, independent of the energy losses and thermal constraints caused, can also be the carrier of polluting products. This article describes an experimental study of the dynamic, thermal, and mass fields that develop from a hot rectangular (0.5 x 1.25 m) horizontal source. The metrology available allows the measurement of not only the local temperatures and velocities but also the concentration of a tracer gas (helium). Mathematical models have been developed enabling representation of the fields concerned; their characterization by isothermal, iso-velocity, or iso-concentration curves; calculation of the flow rate carried by the plume at a given height; calculation of the enthalpy transport; and so on. Moreover, a pollutant capture device has been introduced, and the measurement technique used allows the determination of various efficiencies of practical interest. The ratio of capture flow to free plume flow at a particular height appears to correlate well with the mean efficiencies obtained for distinct source temperatures.
机译:工业通风问题可能与热羽的形成有关,热羽是由于各种热源上方的自然对流而形成的。这些羽流,与造成的能量损失和热量限制无关,也可能是污染产品的载体。本文介绍了从矩形热(0.5 x 1.25 m)水平源产生的动态,热和质量场的实验研究。可用的计量不仅可以测量局部温度和速度,还可以测量示踪气体(氦气)的浓度。已经开发了数学模型,可以表示相关领域;通过等温,等速或等浓度曲线来表征它们;计算给定高度下羽流所携带的流量;焓传递的计算;等等。此外,已经引入了污染物捕获装置,并且所使用的测量技术允许确定实际感兴趣的各种效率。在特定高度,捕获流与自由羽流的比率似乎与针对不同源温度获得的平均效率很好地相关。

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