哈尔滨工程大学学报
哈爾濱工程大學學報
합이빈공정대학학보
JOURNAL OF HARBIN ENGINEERING UNIVERSITY
2015年
8期
1019-1023
,共5页
非球形气泡动力学%边界元方法%势流理论%多气泡%等间距%不等间距%射流速度
非毬形氣泡動力學%邊界元方法%勢流理論%多氣泡%等間距%不等間距%射流速度
비구형기포동역학%변계원방법%세류이론%다기포%등간거%불등간거%사류속도
non-spherical bubble dynamics%boundary element method%potential flow theory%multiple bubbles%i-dentical inter-bubble distance%different inter-bubble distances%jet velocity
为了研究多个气泡相互耦合作用时其表现出的运动特性,采用基于势流理论的边界元方法对多气泡间耦合作用进行数值模拟。将数值解与Rayleigh?Plesset方程解析解对比,使得数值模型的有效性和收敛性得以验证;然后,建立3个气泡的数值模型,研究无量纲参数气泡间距d对气泡运动和形态的影响。等间距布置3个气泡,当d=1.8时,中间的气泡在抑制作用下呈现“圆柱状”,随着气泡间距的增大,其最终趋于“球形”,且气泡上、下2个气泡射流速度增大;不等间距布置3个气泡,距离远的气泡最先发生射流,射流完成时该气泡已开始回弹。
為瞭研究多箇氣泡相互耦閤作用時其錶現齣的運動特性,採用基于勢流理論的邊界元方法對多氣泡間耦閤作用進行數值模擬。將數值解與Rayleigh?Plesset方程解析解對比,使得數值模型的有效性和收斂性得以驗證;然後,建立3箇氣泡的數值模型,研究無量綱參數氣泡間距d對氣泡運動和形態的影響。等間距佈置3箇氣泡,噹d=1.8時,中間的氣泡在抑製作用下呈現“圓柱狀”,隨著氣泡間距的增大,其最終趨于“毬形”,且氣泡上、下2箇氣泡射流速度增大;不等間距佈置3箇氣泡,距離遠的氣泡最先髮生射流,射流完成時該氣泡已開始迴彈。
위료연구다개기포상호우합작용시기표현출적운동특성,채용기우세류이론적변계원방법대다기포간우합작용진행수치모의。장수치해여Rayleigh?Plesset방정해석해대비,사득수치모형적유효성화수렴성득이험증;연후,건립3개기포적수치모형,연구무량강삼수기포간거d대기포운동화형태적영향。등간거포치3개기포,당d=1.8시,중간적기포재억제작용하정현“원주상”,수착기포간거적증대,기최종추우“구형”,차기포상、하2개기포사류속도증대;불등간거포치3개기포,거리원적기포최선발생사류,사류완성시해기포이개시회탄。
To study the complex bubble dynamic behaviors in multiple?bubble interactions, the boundary element method ( BEM ) based on the potential flow theory was adopted to perform numerical simulation of the coupling effect among multiple bubbles. Firstly, both the validity and convergence of the numerical model were confirmed by comparison between numerical results and the analytical solution derived from Rayleigh?Plesset equation. Next, the numerical model of three bubbles was established to study the effect of the dimensionless parameter?inter?bubble distance d on the bubble motion and shape. In the cases with identical inter?bubble distance, the bubble in the mid?dle assumes a cylinder?like shape when d=1.8, and it tends to be a sphere with the increase of d , besides the in?crease of the jet velocity of upper and lower bubbles;in the cases with different inter?bubble distances, the farther bubble forms jet earliest and it starts to rebound before the jet impact.