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Experimental study on aerosol scrubbing efficiency of self-priming venturi scrubber submerged in water pool

机译:自吸式文丘里洗涤器浸没在水池中的气溶胶洗涤效率的实验研究

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Scrubber nozzles are key pieces of equipment used to remove aerosols in a wet-type filtered containment venting system (FCVS). This study deals with the aerosol scrubbing efficiency of a scrubber nozzle operating in self-priming mode. The scrubber nozzle that has been developed in this work consists of a reducer, a throat, a diffuser, a liquid suction slit, and an end cap with a rectangular section area. The aim of this study was to characterize scrubbing efficiency under various thermal hydraulic and aerosol conditions including nozzle inlet pressure (250600 kPa(g)), nozzle inlet temperature (102-164 degrees C), nozzle inlet flow rate (air: 42-132 m(3)/h, steam: 112269 m(3)/h), submergence from the nozzle exit (0.72.7 m), aerosol size (0.5, 0.7, 3 mu m), nozzle inlet aerosol concentration (0.13 g/m(3)), and steam mass fraction in the main carrier gas (01). Aerosol scrubbing efficiency was measured based on the inlet and outlet aerosol concentrations of the scrubbing vessel with isokinetic sampling systems including a glass microfiber filter. Experimental results show that the scrubbing efficiency increased with increasing aerosol size, steam mass fraction, nozzle submergence, and inlet aerosol concentration. We also showed that the scrubbing efficiency increased with an increase in inlet pressure at low scrubber nozzle submergence. However, at higher scrubber nozzle submergence, the nozzle inlet pressure did not significantly influence the scrubbing efficiency. The aerosol scrubbing efficiency with the developed self-priming scrubber nozzle submerged in the pool was over 97% for various thermal-hydraulic conditions. Thus, the experimental results can be used to design a wet scrubber system considering upstream conditions such as operation of the FCVS. (C) 2017 Elsevier Ltd. All rights reserved.
机译:洗涤器喷嘴是用于去除湿式过滤式安全壳排气系统(FCVS)中气溶胶的关键设备。这项研究涉及以自吸模式运行的洗涤器喷嘴的气溶胶洗涤效率。在这项工作中开发的洗涤器喷嘴由一个变径管,一个喉管,一个扩散器,一个吸液缝和一个具有矩形截面的端盖组成。这项研究的目的是表征在各种热液压和气溶胶条件下的洗涤效率,包括喷嘴入口压力(250600 kPa(g)),喷嘴入口温度(102-164摄氏度),喷嘴入口流速(空气:42-132) m(3)/ h,蒸汽:112269 m(3)/ h),从喷嘴出口浸没(0.72.7 m),气溶胶尺寸(0.5,0.7,3μm),喷嘴进口气溶胶浓度(0.13 g / m(3))和主载气(01)中的蒸汽质量分数。使用装有玻璃微纤维过滤器的等速采样系统,基于洗涤容器入口和出口气溶胶浓度测量气溶胶洗涤效率。实验结果表明,洗涤效率随着气溶胶尺寸,蒸汽质量分数,喷嘴浸没和入口气溶胶浓度的增加而增加。我们还表明,在低洗涤塔喷嘴浸没下,洗涤效率随着入口压力的增加而增加。但是,在较高的洗涤器喷嘴浸入度下,喷嘴入口压力不会显着影响洗涤效率。在各种热工液压条件下,将开发的自吸式洗涤器喷嘴浸没在水池中的气溶胶洗涤效率超过97%。因此,实验结果可用于设计考虑上游条件(例如FCVS的运行)的湿式洗涤塔系统。 (C)2017 Elsevier Ltd.保留所有权利。

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