Bender M
Am Ind Hyg Assoc J. 1979 Feb;40(2):118-27. doi: 10.1080/15298667991429417.
Using field observations, modelling techniques and theoretical analysis, parameters describing the performance and collection efficiency of large industrial canopy fume hoods are established for, a) steady state collection of fume and b) collection of plumes with fluctuating flowrates. Hopper and pool type hoods are investigated. A baffle plate arrangement for placement within hoods is proposed. It prevents recirculation and spillage of fume. Temporary storage of fume surges within the hood is shown to be possible. At a cost of $6 per m3/hr ($10 per ft3/min) of installed fume control system capacity the arrangement promises to save millions of dollars on large new installations and to significantly improve the collection efficiency of many existing systems. A practical application of the results is proposed for the design of electric arc furnace canopy hoods.
通过现场观测、建模技术和理论分析,针对以下两种情况建立了描述大型工业顶篷式通风柜性能和收集效率的参数:a)烟气的稳态收集;b)流量波动羽流的收集。对料斗式和池式通风柜进行了研究。提出了一种用于放置在通风柜内的挡板布置方式。它可防止烟气再循环和溢出。结果表明,通风柜内能够临时存储烟气波动。以每立方米每小时6美元(每立方英尺每分钟10美元)的安装烟气控制系统容量成本计算,该布置方式有望在大型新装置上节省数百万美元,并显著提高许多现有系统的收集效率。建议将这些结果实际应用于电弧炉顶篷式通风柜的设计。