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正八棱形套管连续式超声反应器声强分布研究 被引量:8

Study on the Distribution of Sound Intensity in Octangular Double-Tube Continuous Sonochemical Reactor
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摘要 在大尺寸正八棱形套管连续式超声场污水处理装置内采用无限大障板上活塞形振动元为模型分析了其声场分布特性,采用声强测量仪测量了该反应室轴向和径向的声强分布。结果表明:反应器内声场由各换能器近声场部分叠加而成,轴向和径向的声强分布具有相似的分布结果;多频组合的声强分布均匀性优于单频平行辐射声场,正交辐射声场各频率组合都表现出较好的声强分布均匀性,其中以30-30-30-30kHz的频率组合最佳,声强变化幅度轴向小于5%,径向小于10%;混响声场轴向和径向的声强变化幅度均小于10%,且具有较高的声强强度,平均声强约为0.95W·cm-2,大大减少了由于反应器形状而产生的空化死角,有利于超声空化效应的发生。 The distribution characteristics of sound field in the reaction chamber of a continuous sonochemical reactor with an octangular double-tube construction were studied with the model of using a vibration element of a circular piston on an infinite plate.A small hydrophone was used to measure the distribution characteristics of sound intensity in axial and radial direction in the reaction chamber.The results show that the sound intensity in the reaction chamber is a resultant of the near sound fields of different transducers,and the distribution of sound intensity in axial direction is similar to that in radial direction.The sound intensity of multi-frequency combination has a more uniform distribution than that of single frequency;and the sound intensity of the orthogonal radiation sound field formed by various combinations of frequencies shows better distribution uniformity.Among them,the frequency combination of 30-30-30-30 kHz was proved to be the best one,using this combination,the variation percentage of the sound intensity is below 5% in axial direction distribution and 10% in radial direction distribution.The variation percentage of sound intensity distribution in the reverberant sound field is below 10% in axial or radial direction,and the average sound intensity has a higher value of about 0.95 W·cm-2,which greatly diminishes the inactive cavitational zone of the reaction chamber and subsequently favors the occurrence of violent cavitations in the reaction chamber.
出处 《高校化学工程学报》 EI CAS CSCD 北大核心 2010年第5期789-794,共6页 Journal of Chemical Engineering of Chinese Universities
关键词 声化学反应器 换能器 声强 分布 sonochemical reactor transducer sound intensity distribution
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  • 1Kumar A,Gogate P R,Pandit A B.Mapping the effcacy of new designs for large scale sonochemical reactors[J].Ultrasonics Sonoshemistry,2007,14:538-544. 被引量:1
  • 2李永峰,陈宜俍,郭士岭,徐军,詹予忠,卫冬燕.超声波降解氯苯水溶液的研究[J].高校化学工程学报,2002,16(1):93-96. 被引量:13
  • 3Gogate P R,Mujumdar S,Pandit A B.Sonochemical reactors for waste water treatment:Comparison using formic acid degradation as a model reaction[J].Advances in Environmental Research,2003,7(2):283-299. 被引量:1
  • 4Gogate P R.Some aspects of the design ofsonochemical reactors[J].Ultrasonics Sonoshemistry,2003,10(6):325-330. 被引量:1
  • 5邹华生,闫晓满,黎民乐.超声场耦合曝气生物填料塔处理印染废水[J].华南理工大学学报(自然科学版),2009,37(10):140-144. 被引量:8
  • 6FENG Ruo(冯若),LI Hua-mao(李化茂).Sonochemistry and Application(声化学及应用)[M].Anhui(安徽):Anhui Science and Technology Press(安徽科学技术出版社),1992. 被引量:1
  • 7PENG Ying-qiu(彭应秋) Analysis.calculating and measuring of acoustic source and acoustic field of a plane circular piston(圆形活塞声源声场的分析,LU Chao(卢超),LI Jian(李坚),计算与测试).南昌航空工业学院学报,2004,18(1):18-21. 被引量:1
  • 8DU Gong-huan(杜功焕),ZHU Zhe-min(朱哲民),GONG Xiu-fen(龚秀芬).Acoustic Basis(声学基础)[M].Nanjing(南京):Nanjing University Press(南京大学出版社),2001.3. 被引量:2
  • 9刘岩,赵宙兴,赵启文.近场型声化学反应器中的化学反应[J].化工学报,2002,53(11):1206-1208. 被引量:4
  • 10任金莲,张明铎,牛勇,蔺春萍.改善大功率超声清洗声场均匀性的一种方法[J].压电与声光,2003,25(4):347-350. 被引量:26

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