化工进展
化工進展
화공진전
CHEMICAL INDUSTRY AND ENGINEERING PROGRESS
2012年
11期
2420-2423,2448
,共5页
电水动力学%气泡%非均匀电场
電水動力學%氣泡%非均勻電場
전수동역학%기포%비균균전장
electrohydrodynamic%bubble%nonuniform electric fields
为进一步探索电场强化沸腾换热的机理,利用高速摄像仪对沸腾汽泡在非均匀电场作用下的生长过程进行了可视化实验研究,实验观察到非均匀电场作用下汽泡脱离壁面时的形态。当没有施加高压电场时,汽泡脱离壁面时基本上呈球形形状;而外加电场后,汽泡脱离壁面时呈椭球状,而且随着场强的升高,汽泡脱离壁面时汽泡沿场强方向的伸长更加明显。这是由于未加电场时,汽泡的长大主要受惯性力和表面张力的支配。外加电场后,汽泡的受力增加了电场力的作用,电应力在赤道方向压缩汽泡,在极轴方向拉伸汽泡。在电场作用下,汽泡由近似球形形状变成了椭球形形状。随着场强的增大,汽泡所受的电应力加大,使得汽泡脱离壁面时沿场强方向的伸长更加显著。施加电压后,汽泡脱离频率随着场强的增大而增大,当电场强度为1.4 kV/mm时,汽泡的脱离频率为不加电压时的1.85倍。研究结果表明,电场对汽泡的行为有显著的影响作用。
為進一步探索電場彊化沸騰換熱的機理,利用高速攝像儀對沸騰汽泡在非均勻電場作用下的生長過程進行瞭可視化實驗研究,實驗觀察到非均勻電場作用下汽泡脫離壁麵時的形態。噹沒有施加高壓電場時,汽泡脫離壁麵時基本上呈毬形形狀;而外加電場後,汽泡脫離壁麵時呈橢毬狀,而且隨著場彊的升高,汽泡脫離壁麵時汽泡沿場彊方嚮的伸長更加明顯。這是由于未加電場時,汽泡的長大主要受慣性力和錶麵張力的支配。外加電場後,汽泡的受力增加瞭電場力的作用,電應力在赤道方嚮壓縮汽泡,在極軸方嚮拉伸汽泡。在電場作用下,汽泡由近似毬形形狀變成瞭橢毬形形狀。隨著場彊的增大,汽泡所受的電應力加大,使得汽泡脫離壁麵時沿場彊方嚮的伸長更加顯著。施加電壓後,汽泡脫離頻率隨著場彊的增大而增大,噹電場彊度為1.4 kV/mm時,汽泡的脫離頻率為不加電壓時的1.85倍。研究結果錶明,電場對汽泡的行為有顯著的影響作用。
위진일보탐색전장강화비등환열적궤리,이용고속섭상의대비등기포재비균균전장작용하적생장과정진행료가시화실험연구,실험관찰도비균균전장작용하기포탈리벽면시적형태。당몰유시가고압전장시,기포탈리벽면시기본상정구형형상;이외가전장후,기포탈리벽면시정타구상,이차수착장강적승고,기포탈리벽면시기포연장강방향적신장경가명현。저시유우미가전장시,기포적장대주요수관성력화표면장력적지배。외가전장후,기포적수력증가료전장력적작용,전응력재적도방향압축기포,재겁축방향랍신기포。재전장작용하,기포유근사구형형상변성료타구형형상。수착장강적증대,기포소수적전응력가대,사득기포탈리벽면시연장강방향적신장경가현저。시가전압후,기포탈리빈솔수착장강적증대이증대,당전장강도위1.4 kV/mm시,기포적탈리빈솔위불가전압시적1.85배。연구결과표명,전장대기포적행위유현저적영향작용。
In order to make further study on the electrohydrodynamic enhancement mechanisms of boiling heat transfer,the shape of boiling bubbles when departing wall in the nonuniform electric field was visually investigated with a high-speed camera.The bubble shape when departing the wall was observed in the nonuniform electric field.The bubbles leaving the wall were basically spherical in shape without the high voltage electric field.The bubbles leaving the wall were elliptical in shape in electric field.When electric field strength was increased,the bubble elongation along the field direction was more obvious.The growth of bubbles was mainly affected by the inertial force and surface tension control without electric field.When electric field was applied,the bubble force increased by the action of electric field force.Electrical stress in the equatorial direction compressed the bubbles in the polar axis direction tensile bubble.Under the action of the electric field,the bubbles were changed from spherical to ellipsoidal in shape.As the field strength increased,the bubble by electrical stress increased,the bubble detachment wall along the field direction of elongation became more obvious.When the voltagewas applied,the bubble detachment frequency increased with the field strength.When the electric field intensity was at 1.4 kV/mm,the bubble detachment frequency was as 1.85 times higher,compared to the situation without electric field.The experimental results showed that electric fields had obvious effects on the behavior of the bubbles.