°</sup>,5<sup>°</sup>,10<sup>°</sup> 和 15<sup>°</sup> )的翼型擋體無閥壓電泵,并進(jìn)行了輸出流量和背壓的試驗(yàn)測(cè)試。同時(shí),利用COM-SOL軟件對(duì)含翼型擋體的流管進(jìn)行了內(nèi)流場(chǎng)模擬仿真,分析了渦旋結(jié)構(gòu)和能量耗散特性。試驗(yàn)結(jié)果表明,美國(guó)國(guó)家航空咨詢委員會(huì)(National Advisory Commitee for Aeronautics,NACA)OOl5型翼型擋體無閥壓電泵在攻角為O°時(shí)輸出性能最佳,最大流量達(dá)到 235.56ml/min ,最大背壓為 842.8Pa 。隨著攻角的增大,壓電泵的輸出性能逐漸降低。流場(chǎng)仿真結(jié)果顯示,流體反向流過翼型時(shí),流場(chǎng)渦旋尺度大于正向流動(dòng)時(shí)的渦旋,且NACA63-412翼型周圍的渦旋更為密集且尺度更大。隨著攻角的增大,流場(chǎng)的渦流結(jié)構(gòu)呈現(xiàn)聚集、增多的趨勢(shì),渦流強(qiáng)度也隨之增大,導(dǎo)致能量耗散加劇。研究表明,翼型攻角對(duì)壓電泵的輸出性能有顯著影響,攻角增大會(huì)加劇流場(chǎng)能量耗散,從而降低泵的輸出性能。本研究為高性能無閥壓電泵的設(shè)計(jì)和優(yōu)化提供了新的思路和理論依據(jù)。-龍?jiān)雌诳W(wǎng)" />

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翼型擋體無閥壓電泵在不同攻角下的輸出性能

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關(guān)鍵詞:壓電泵;翼型擋體;能量耗散;渦識(shí)別

中圖分類號(hào):TH38 文獻(xiàn)標(biāo)識(shí)碼:A

doi:10.37188/OPE.20253308.1202 CSTR:32169.14.OPE.20253308.1202

Abstract:This study explored the effect of varying the angle of attack of airfoil on the output performance of the valveless piezoelectric pump. It placed symmetrical and asymmetrical airfoils in the tube respectively,and designed valveless piezoelectric pumps with airfoil baffles at various angles of attack (0°,5°,10° and 15° ). Output performance tests were conducted on the piezoelectric pump. Additionally,flow field simulations using COMSOL software were performed to analyze the vortex structures and energy dissipation characteristics. The experimental results showed that the National Advisory Commitee for Aeronautics (NACA) Ool5 piezoelectric pump performs optimally at a 0° angle of attack,achieving a maximum flow rate of 235.56ml/min . Under the same angle of attack,the performance of the piezoelectric pump with symmetrical airfoil baffles was better than that of the piezoelectric pump with asymmetrical airfoil baffles. As the angle of attack increased,the piezoelectric pump performance decreased.The simulation results indicated that the scale of the vortices around the airfoil bafle during the reverse flow was higher than that during the positive flow;under the same angle of attack,the vortices around the NACA63-412 airfoil were significantly denser and larger than those around the NACAOol5 airfoil. Increasing the angle of attack led to vortex aggregation and intensity rise,accompanied by escalated energy dissipation. The study concludes that the angle of atack significantly affects the pump's performance,with larger angles exacerbating energy dissipation and reducing output. This research provides new insights and theoretical foundations for the design and optimization of high-performance valveless piezoelectric pumps.

Key words: piezoelectric pump;airfoil baffle;energy dissipation;vortex identification

1引言

以壓電材料為驅(qū)動(dòng)源的壓電作動(dòng)器具有響應(yīng)迅速、能量密度高、無電磁干擾和易于微小化的特點(diǎn),在生物醫(yī)療、電子散熱以及微型機(jī)器人等領(lǐng)域具有廣泛應(yīng)用前景[1-8]。(剩余13936字)

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