典型文献
A valveless piezoelectric pump with novel flow path design of function of rectification to improve energy efficiency
文献摘要:
Existing valveless piezoelectric pumps are mostly based on the flow resistance mechanism to generate unidirectional fluid pumping,resulting in inefficient energy conversion because the majority of mechanical energy is consumed in terms of parasitic loss.In this paper,a novel tube structure composed of a Y-shaped tube and a cp-shaped tube was proposed considering theory of jet inertia and vortex dissipation for the first time to improve energy efficiency.After verifying its feasibility through the flow field simulation,the proposed tubes were integrated into a piezo-driven chamber,and a novel valveless piezoelectric pump with the function of rectification(NVPPFR)was reported.Unlike previous pumps,the reported pump directed the reflux fluid to another flow channel different from the pumping fluid,thus improving pumping efficiency.Then,mathematical modeling was established,including the kinetic analysis of vibrator,flow loss analysis of fluid,and pumping efficiency.Eventually,experiments were designed,and results showed that NVPPFR had the function of rectification and net pumping effect.The maximum flow rate reached 6.89 mL/min,and the pumping efficiency was up to 27%.The development of NVPPFR compensated for the inefficiency of traditional valveless piezoelectric pumps,broadening the application prospect in biomedicine and biology fields.
文献关键词:
中图分类号:
作者姓名:
Jianhui ZHANG;Xiaosheng CHEN;Zhenlin CHEN;Jietao DAI;Fan ZHANG;Mingdong MA;Yuxuan HUO;Zhenzhen GUI
作者机构:
School of Mechanical and Electrical Engineering,Guangzhou University,Guangzhou 510006,China
文献出处:
引用格式:
[1]Jianhui ZHANG;Xiaosheng CHEN;Zhenlin CHEN;Jietao DAI;Fan ZHANG;Mingdong MA;Yuxuan HUO;Zhenzhen GUI-.A valveless piezoelectric pump with novel flow path design of function of rectification to improve energy efficiency)[J].机械工程前沿,2022(03):172-188
A类:
valveless,NVPPFR,vibrator
B类:
piezoelectric,novel,flow,path,function,rectification,improve,energy,Existing,pumps,are,mostly,resistance,mechanism,generate,unidirectional,fluid,pumping,resulting,inefficient,conversion,because,majority,mechanical,consumed,terms,parasitic,loss,In,this,paper,structure,composed,shaped,cp,was,proposed,considering,theory,jet,inertia,vortex,dissipation,first,After,verifying,its,feasibility,through,simulation,tubes,were,integrated,into,driven,chamber,reported,Unlike,previous,directed,reflux,another,channel,different,from,thus,improving,Then,mathematical,modeling,established,including,kinetic,analysis,Eventually,experiments,designed,results,showed,that,had,effect,maximum,reached,up,development,compensated,inefficiency,traditional,broadening,application,prospect,biomedicine,biology,fields
AB值:
0.505341
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