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真空空气组份取样器(美国)
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《化工科技市场》 CAS 2002年第11期40-40,共1页
本发明涉及一种空气取样器,该取样器中安装有疏水性过滤器和截留流体。将空气通过截留流体,截留流体可以将不需要的气体吸收掉从而将最终试验用气体进行纯化。在将气体放出取样器前,使通过了截留流体并鼓泡的气体通过疏水性过滤器。... 本发明涉及一种空气取样器,该取样器中安装有疏水性过滤器和截留流体。将空气通过截留流体,截留流体可以将不需要的气体吸收掉从而将最终试验用气体进行纯化。在将气体放出取样器前,使通过了截留流体并鼓泡的气体通过疏水性过滤器。疏水性过滤器的作用是防止水分从取样器中散失,由于取样器的器身内存在悬浮的液滴,取样流体的消失速度不是很快,这样可以保证空气流动的较高速度。由于疏水性过滤器的存在,可以将取样器进行倒置以冲洗器壁,而不会发生液体的损失,截留液体可以倒入或倒出取样器。 展开更多
关键词 真空空气 组份 取样器 美国 疏水性过滤器 截留流体
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An improved CFD model of gas flow and particle interception in a fiber material 被引量:2
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作者 Zhiwei Sun Jianhui Wen +3 位作者 Xiao Luo Wen Du Zhiwu Liang Kaiyun Fu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第3期264-273,共10页
An improved CFD model of gas flow and particle interception in a fiber material which fiber size is Y-shape was developed in this work. The porous medium model was used to build the model of the whole size of fiber fi... An improved CFD model of gas flow and particle interception in a fiber material which fiber size is Y-shape was developed in this work. The porous medium model was used to build the model of the whole size of fiber filter medium. Mixture model was adopted. The algorithm of particle interception in the whole size of fiber filter medium was derived and UDF(User Defined Function) that described kinds of particle filtering mechanisms in filter fibrous media was added to the Fluent default conservation equation as source term for simulation. The inertial resistance of the filter was taken into consideration, which provided a more precise measurement of the smoke flow and the particle interception in the filter under higher smoke speed conditions. The commercial software, Fluent 6.3, was used to simulate the smoke flow and particle interception in the filter in a single suction. The velocity and pressure profiles of smoke or nicotine particle in the filter, as well as nicotine particle volume fraction profile were well simulated. Finally, the comparisons of nicotine particle filtration efficiency between Fluent simulation results in this work and experimental results, as well as the model prediction in the literature were made to validate the simulation model. The comparisons showed that the particle entrapment model from simulation results was in good agreement with that from the experimental results. In addition, the Fluent simulation results are closer to reality both at the beginning and the end of the smoke process comparing with the model predicted results in the literature. 展开更多
关键词 Numerical simulation Y-shape fiber Particle interception Flow field distribution Filtration efficiency UDF
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