Gonçalves J A S, Costa M A M, Aguiar M L, Coury J R
Department of Chemical Engineering, Federal University of São Carlos, Via Washington Luiz, Km. 235, 13565-905 São Carlos, SP, Brazil.
J Hazard Mater. 2004 Dec 10;116(1-2):147-57. doi: 10.1016/j.jhazmat.2004.08.030.
Droplet distribution is of fundamental importance to the performance of a Venturi scrubber. Ensuring good liquid distribution can increase performance at minimal liquid usage. In this study, droplet dispersion in a rectangular Pease-Anthony Venturi scrubber, operating horizontally, was examined both theoretically and experimentally. The Venturi throat cross-section was 24 mm x 35 mm, and the throat length varied from 63 to 140 mm. Liquid was injected through a single orifice (1.0 mm diameter) on the throat wall. This arrangement allowed the study of the influence of jet penetration on droplet distribution. Gas velocity at the throat was 58.3 and 74.6 m/s, and the liquid flow rate was 286, 559 and 853 ml/min. A probe with a 2.7 mm internal diameter was used to isokinetically remove liquid from several positions inside the equipment. It was possible to study liquid distribution close to the injection point. A new model for droplet dispersion, which incorporates the new description of the jet atomization process developed by the present authors in the first article of this series, is proposed and evaluated. The model predicted well the experimental data.
液滴分布对于文丘里洗涤器的性能至关重要。确保良好的液体分布可以在使用最少液体的情况下提高性能。在本研究中,对水平运行的矩形皮斯 - 安东尼文丘里洗涤器中的液滴分散进行了理论和实验研究。文丘里管喉部横截面为24毫米×35毫米,喉部长度从63毫米到140毫米不等。液体通过喉部壁上的单个孔口(直径1.0毫米)注入。这种布置使得能够研究射流穿透对液滴分布的影响。喉部的气体速度为58.3和74.6米/秒,液体流量为286、559和853毫升/分钟。使用内径为2.7毫米的探头从设备内部的几个位置等速去除液体。从而有可能研究靠近注入点的液体分布。提出并评估了一种新的液滴分散模型,该模型纳入了本系列第一篇文章中作者开发的射流雾化过程的新描述。该模型对实验数据预测良好。