设为首页 |  加入收藏
首页首页 期刊简介 消息通知 编委会 电子期刊 投稿须知 广告合作 联系我们
集卵搅拌器的数值模拟与试验研究

Numerical Simulation and Experimental Research of Specimen Mixer for Egg Collection

作者: 李帅    潘中永    吴涛涛    陈士星 
单位:江苏大学流体机械工程技术研究中心(江苏镇江212013)
关键词: 搅拌器;集卵标本盒;粪便检查;计算流体力学;滤网 
分类号:
出版年·卷·期(页码):2011·30·6(551-556)
摘要:

目的 粪便检查对于疾病的诊断意义重大。针对传统手工操作引起的检验结果误差较大,本文研制了一种集卵标本盒。方法 首先利用计算流体力学软件Fluent,采用滑移网格法和Realizable k-ε湍流模型对自行研制的集卵搅拌标本盒内不同的搅拌电压进行了数值模拟,并对比试验研究,发现数值模拟和试验研究的结果总体趋势吻合;然后改进搅拌器的形式,再对标本盒内不同形状的搅拌器进行了数值模似。通过搅拌器的流线、固体颗粒分布、监测点速度和搅拌功率等指标,评价标本盒内各种搅拌器的搅拌效果。结果 研究结果表明,当采用5V电压时,梨形搅拌器提高了采样区的浓度,标本盒内搅拌效果较好,符合标本盒内搅拌的要求。结论 该研究将在临床检验方面具有良好的应用性。
关键词

Objective Stool examination is of important significance for disease diagnosis. Because the traditional manual operation aroused much error, a specimen box for egg collection was investigated. Methods First the moving mesh and realizable k-ε turbulent model were used to compute the different voltages on the specimen box for egg collection by Fluent software. The results of the experimental research accorded with those of the numerical simulation. Then, the mixing effects of different mixers in the specimen box were studied by using the improved form of mixer based on the numerical simulation and were estimated after the analysis of certain factors such as mixer streamline, solid particle distribution, speed of monitoring sites and mixing power, etc. Results The pear-shaped mixer improved the concentration of the sampling area and met the mixing requirements better when the voltage was 5V. Conclusions The research results might have a good application in clinical examination.

参考文献:

[1]谭晓玉,庞保军.检验标本的正确采集与处理[J].实用医技杂志,2003,10(8):863-864.
[2]严丽华,邱方城,潘云军.检验标本的采集与质量控制[J].微循环学杂志,2005,15(4):141-142.
[3]朱民,何艳燕.5种分离纯化粪便中隐孢子虫卵囊方法的比较[J].上海预防医学杂志,2006,18(4):166-168.

[4]Kasat GR, Khopkar AR, Ranade VV, et al. CFD simulation of liquid-phase mixing in solid-liquid stirred reactor[J]. Chemical Engineering Science,2008,63(15):3877-3885.
[5]Ljungqvist M, Rasmuson A. Numerical simulation of the two-phase flow in an axially stirred vessel[J].Institution of Chemical Engineers,2001,79(5):533-546.
[6]Wang F, Mao ZS,Wang YF,et al. Measurement of phase holdups in liquid-liquid-solid three-phase stirred tanks and CFD simulation[J].Chemical Engineering Science, 2006,61(22):7535-7550.
[7]Ochieng A,Onyango  MS. CFD simulation of solids suspension in stirred tanks : review[J]. Hem Ind, 2010,64 (5):365-374.
[8]Darelius A, Rasmuson A, van Wachem B, et al . CFD simulation of the high shear mixing process using kinetic theory of granular flow and frictional stress models[J]. Chemical Engineering Science,2008,63(8):2188-2197.
[9]Barailler F , Heniche M, Tanguy PA. CFD analysis of a rotor-stator mixer with viscous fluids[J]. Chemical Engineering Science, 2006,61(9):2888-2894.
[10]王福军.计算流体动力学分析——CFD软件原理与应用[M].北京:清华大学出版社,2004:125-126.
[11]屈雅川,刘春香,林虹,等. 一次性新型多功能大便采样器实用性探讨[J].广西医学,2008,30(6):803-805.
[12]陈志平,章序文,林兴华.搅拌与混合设备设计选用手册[M].北京:化学工业出版社,2004:11-70.
[13]王乐勤,杜红霞,吴大转,等.多层桨式搅拌罐内混合过程的数值模拟[J].工程热物理学报,2007,28(3):  418-420.

服务与反馈:
文章下载】【加入收藏
提示:您还未登录,请登录!点此登录
 
友情链接  
地址:北京安定门外安贞医院内北京生物医学工程编辑部
电话:010-64456508  传真:010-64456661
电子邮箱:llbl910219@126.com