空气动力学学报
空氣動力學學報
공기동역학학보
ACTA AERODYNAMICA SINICA
2014年
5期
634-640
,共7页
张智伟%易淼荣%敬军%秦丰华%杨基明
張智偉%易淼榮%敬軍%秦豐華%楊基明
장지위%역묘영%경군%진봉화%양기명
仿生航行器%双尾鳍%三维%推进性能
倣生航行器%雙尾鰭%三維%推進性能
방생항행기%쌍미기%삼유%추진성능
biomimetic underwater vehicle%double fin%three-dimensional%propulsion performance
采用格子波尔兹曼方法及浸没边界法,发展了一套适用于自由游动的三维数值研究程序。进而以多尾鳍推进仿生航行器为原型,讨论了尾鳍数目、形状、材料刚度等构型参数及振幅、频率等尾鳍摆动参数对推进性能的影响。结果表明对称布置、反对称摆动的双尾鳍能够明显消除侧向力而避免航行器主体的横向晃动,且推力大于两个单独尾鳍的简单加和;在中等 Reynolds 数下,具有波动性质的柔性尾鳍不论是推进速度还是推进效率均优于刚性尾鳍;当尾鳍单纯摆动推进时,具有完整鳍面的半椭圆形尾鳍的推进性能优于后部有缺口的深叉形尾鳍。
採用格子波爾玆曼方法及浸沒邊界法,髮展瞭一套適用于自由遊動的三維數值研究程序。進而以多尾鰭推進倣生航行器為原型,討論瞭尾鰭數目、形狀、材料剛度等構型參數及振幅、頻率等尾鰭襬動參數對推進性能的影響。結果錶明對稱佈置、反對稱襬動的雙尾鰭能夠明顯消除側嚮力而避免航行器主體的橫嚮晃動,且推力大于兩箇單獨尾鰭的簡單加和;在中等 Reynolds 數下,具有波動性質的柔性尾鰭不論是推進速度還是推進效率均優于剛性尾鰭;噹尾鰭單純襬動推進時,具有完整鰭麵的半橢圓形尾鰭的推進性能優于後部有缺口的深扠形尾鰭。
채용격자파이자만방법급침몰변계법,발전료일투괄용우자유유동적삼유수치연구정서。진이이다미기추진방생항행기위원형,토론료미기수목、형상、재료강도등구형삼수급진폭、빈솔등미기파동삼수대추진성능적영향。결과표명대칭포치、반대칭파동적쌍미기능구명현소제측향력이피면항행기주체적횡향황동,차추력대우량개단독미기적간단가화;재중등 Reynolds 수하,구유파동성질적유성미기불론시추진속도환시추진효솔균우우강성미기;당미기단순파동추진시,구유완정기면적반타원형미기적추진성능우우후부유결구적심차형미기。
A numercial code for 3-dimensional fluid flow around swimming bodies were developed .The Immersed Boundary method (IBM)was applied to characterize the moving and deformable fluid-body inter-face in terms of a momentum forcing so that bodies′motion and fluid flow were uncoupled.The fluid flow was solved by Lattice Boltzmann method (LBM)which was well suited to be parallelized and the body mo-tion was devided into beating which was pre-specified and swimming which was calculatied according to the resultant forces and moments.Then,the self-propulsion of a biomimetic unmanned underwater vehicle (UUV)with multiple fins was simulated,and the effects of fins′properties and of beating parameters on the propulsion performance were discussed in detail.It was shown that the lateral force generated by symmetric double fins almost vanished,and the trust was enhanced where the vehicle cruise speed was larger than twice the speed by single fin.UUV propelled by flexible fins swam much faster than that by rigid ones.Under the condition of present work,the optimized wavelength of the flexible fin is about 1.25 times the fin length, and the vehicle swam faster with lager beating amplitude or with higher frequency.The propulsion perform-ance of Semi-oval-shaped caudal fin was better than that of deeply forked tail fin when the vehicle paraded with low speed.