详细信息
非对称坡面腔底无阀压电泵流场分析 ( EI收录)
Analysis of Flow Field of Piezoelectric Pump with Unsymmetrical Slopes Element
文献类型:期刊文献
中文题名:非对称坡面腔底无阀压电泵流场分析
英文题名:Analysis of Flow Field of Piezoelectric Pump with Unsymmetrical Slopes Element
作者:黄毅[1];成伟[1];张建辉[1];夏齐霄[2];胡笑奇[1]
第一作者:黄毅
通讯作者:Huang, Y.
机构:[1]南京航空航天大学精密驱动研究所;[2]北京联合大学机电学院
第一机构:南京航空航天大学精密驱动研究所,南京210016
年份:2010
卷号:30
期号:3
起止页码:295-299
中文期刊名:振动.测试与诊断
外文期刊名:Zhendong Ceshi Yu Zhenduan/Journal of Vibration, Measurement and Diagnosis
收录:CSTPCD;;EI(收录号:20103013093984);Scopus(收录号:2-s2.0-77954801593);北大核心:【北大核心2008】;CSCD:【CSCD_E2011_2012】;
基金:国家自然科学基金资助项目(编号:50575007;50775109)
语种:中文
中文关键词:非对称坡面;压电泵;用户自定义函数;流量
外文关键词:unsymmetrical slopes element piezoelectric pump user defined function volume flow rate
摘要:无阀压电泵需要外接用于产生单向流动流管,阻碍了压电泵的微小型化,针对这一缺点提出了非对称坡面腔底无阀压电泵,该压电泵将用于产生单向流动的部件——非对称坡面集成于泵腔的底部。对非对称坡面腔底无阀压电泵进行了计算机建模,基于商用Fluent12软件运用自定义函数(user defined functions,简称UDF)对压电振子运动形式进行了模拟;采用RNGκ-ε湍流模型对瞬态N-S方程进行了求解,分析了泵腔内流场;得出了从20°到70°不同坡面角度下的平均流量,在坡面角为20°时,可以得到最大平均流量为0.864 ml/min,并通过流量测量试验测得该泵的最大流量达到了8.6 ml/min。从仿真和试验的角度验证了该泵的可行性。
This research presented a piezoelectric pump with unsymmetrical slopes element(PPUSE) to overcome drawbacks existing in the common valveless piezoelectric pumps with stream tubes which was used to create the unidirectional flow and meanwhile the barriers to pump minimization.The type of piezoelectric pump arranged the unidirectional flow generating part: the unsymmetrical slopes element in the base of the chamber.A numerical modeling was conducted for the PPUWSE;the moving of piezoelectric vibrator was simulated by using user defined function(UDF) of the commercial software FLUENT12 and the flow field in the pump chamber was analyzed by using the solve method of transient state N-S functions based on turbulence model.As a result,the average flow rates of different slope angles ranging from 20 to 70 degree were calculated,among which the maximum average flow rate reaches 0.864 ml/min when the slope angle is 20 degree.Tests show that the maximum flow rate is 8.6ml/min.The feasibility of the pump was verified by both the simulation and the test.
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