首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 171 毫秒
1.
Using the supercavitation phenomenon is necessary to reach high velocities underwater. Supercavitation can be achieved in two ways: natural and artificial. In this article, the simulation of flows around a torpedo was studied naturally and artificially. The validity of simulation using theoretical and practical data in the natural and artificial phases was evaluated. Results showed that the simulations were consistent with the laboratory results. The results in different injection coefficient rates, injection angles, andcavitation numbers were studied. The obtained results showed the importance of cavitation number, injection rate coefficient, and injection angle in cavity shape. At the final level, determining the performance conditions using the Design of Experiment(DOE) method was emphasized, and the performance of cavitation number, injection rate coefficient, and injection angle in drag and lift coefficient was studied. The increase in injection angle in the low injection rate coefficient resulted in a diminished drag coefficient and that in the high injection rate coefficient resulted in an enhanced drag coefficient.  相似文献   

2.
高速航行体的自然超空泡流阻力特性研究   总被引:1,自引:0,他引:1  
利用Fluent6.2对水下带圆盘空化器高速航行体的自然超空泡流动进行了数值模拟,计算分析了超空泡高速航行体的阻力特性,研究了空化器直径、航行体长细比对航行体超空泡减阻效果的影响,分析了高速航行体的超空泡减阻率。结果表明,超空泡形态下随着航行体速度衰减,航行体压差阻力系数缓慢减小,粘性阻力系数迅速增大,航行体的总阻力系数增加;航行体阻力系数与头部空化器直径的平方成反比;增加航行体的长细比,可以获得更小的阻力系数;高速航行体的超空泡减阻率可达95%以上。最后将仿真计算结果与水靶道试验进行了对比,二者基本相符。  相似文献   

3.
基于均相流输运模型对NACA661-012型水翼进行了空化数值模拟,计算了不同空化数K和不同攻角α下的升力系数与阻力系数.从流场、压力场和边界层的变化分析了空化的产生发展对水翼升力和阻力的影响.当攻角α大于8°以后,空化流动的不稳定性增强,空泡呈现出周期性的生长溃灭,并伴有升力系数和阻力系数的周期性波动.计算结果与实验进行了对比,结果吻合较好.  相似文献   

4.
水下航行体通气超空泡减阻特性实验研究   总被引:7,自引:1,他引:6  
为了研究超空泡的减阻效果,保证在较低流速下生成超空泡,在水洞中开展了水下航行体通气超空泡的实验研究.采用通气的方法在较低水速下生成人工通气超空泡,通过改变通气率和弗劳德数,获得了不同条件下通气空泡的长度,以及不同空泡长度下的模型阻力系数.研究表明,来流速度不变时,空泡长度随通气率的增加而增加,阻力系数随空泡长度的增加先递增后递减;空化器直径对阻力系数的影响较大,在大弗劳德数条件下,阻力系数会因空化器直径过大而出现随通气量的增加而变大的趋势.利用商用软件对超空泡形态及阻力系数作了数值仿真,并与实验结果作了对比,两者符合较好.  相似文献   

5.
超空泡回转体减阻特性研究   总被引:5,自引:0,他引:5  
基于Fluent 6.0的气泡两相流模型对超空泡回转体的减阻特性进行了数值研究.内容包括:外形对阻力及超空泡形状的影响;超空泡控制;阻力系数随空泡数的变化规律;长细比对减阻率的影响.超空泡减阻机理的研究表明:超空泡不仅可以减小回转体的摩擦阻力,还可以减小回转体的压差阻力.在外形、长细比和空泡数以及工程可实现性等诸多因素中,存在着一个最佳组合,使减阻率最高.  相似文献   

6.
佟力永 《船舶力学》2015,(7):765-772
舵片是保证超空泡航行体运动稳定性和控制航行弹道的重要部分。文章基于均质平衡流模型和SST(Shear Stress Transport)湍流模型,计算了单独舵片的流体动力特性,并与试验数据进行了对比,结果符合较好,验证了计算模型的有效性。基于此方法,计算了单独舵片发生空化后在不同操舵状态下的非定常流体动力变化。结果表明,在攻角相同时,操舵状态下舵片的非定常升力系数和定常结果差别不大,而非定常阻力系数大于定常结果,并且操舵速度越快,阻力系数越大。另外计算了舵片发生空化后的流体动力系数,结果显示在攻角相同时,舵片的阻力系数和升力系数均小于其在全湿状态下的结果;在空化状态下,舵片升力系数的斜率小于全湿状态,并且舵片升力系数的斜率是变化的,存在某临界攻角,攻角大于此临界值时,升力系数的斜率减小,而此临界攻角恰好为舵片的吸力面刚刚出现空化时的攻角;操舵状态下舵片的阻力系数和升力系数的变化规律与定常结果一致,但是数值偏小。  相似文献   

7.
文章在均质平衡多相流模型的基础上耦合输运方程型空化模型,通过求解混合介质的RANS方程、RNG k-ε湍流输运方程以及各相的质量输运方程,采用通用CFD软件—FLUENT数值模拟了水洞中带圆盘空化器航行体模型的定常通气空泡流动,研究了圆形截面闭式空泡水洞中洞壁效应对通气空化数和压力场的影响。得到的阻塞空化数线性正比于圆盘水洞直径比,且与三维圆盘自然空泡流的势流近似解基本一致,分析了洞壁效应作用下空化流场内的压力分布特点,并根据计算结果拟合了一定适用条件下通气空泡长度、最大直径和模型阻力系数的近似公式。  相似文献   

8.
在高速水洞内,进行了某水下航行体模型自然状态和通气产生超空泡状态下的阻力试验,并针对实验中的尾撑影响、阻力成分和尺度效应问题,用数值模拟方法进行了分析.结果表明,自然状态下非流线型航行体的阻力比流线型的增加很多,压差阻力为主要成分;通气形成超空泡后可以大大降低航行体的阻力;尾撑使得阻力测量值偏大;自然状态下航行体原型比模型的阻力系数小,通气后二者基本相同.  相似文献   

9.
襟翼舵作为一种可靠的、高升力的舵在最近几年内引起了广大设计工作者的重视影响,同时也有不少成熟的研究成果。对襟翼舵的研究主要集中在展弦比,主副舵面积比,转角比等方面,这些因素对襟翼舵的整体影响规律也已得到不少专家的解释。本文主要研究襟翼舵主副舵间间隙大小以及尺度效应对其水动力性能的影响,以普通NACA0020翼型为基本剖面建立不同间隙大小的襟翼舵模型,采用RANS方法计算得到了不同缝隙大小以及不同缩尺比下的襟翼舵升力阻力以及压力分布,并对周围涡结构以及流场进行分析,发现升力系数随着缝隙增大而减小,阻力系数先减小再增大的规律。同时随着襟翼舵尺度的增大,升力系数会随之增大,阻力系数会随之减小。文中以计算模型和实验数据进行对比,两者误差在5%以内,证明了计算结果的可靠性。  相似文献   

10.
周军伟  倪豪良 《船舶力学》2015,(12):1445-1462
文章运用数值模拟研究了导管螺旋桨叶梢泄漏涡机理,并提供了一种推迟泄漏涡空化的方法。通过分析不同间隙时的泄漏涡的空泡数发现,随着间隙增大,最小空泡数发生了位置向下游移动,靠近桨叶吸力面,其数值减小。间隙尺寸影响梢涡空泡数的机理很复杂,可以从三个方面来解释:第一、间隙大小改变了泄漏流动速度,从而影响了泄漏涡水动力参数;第二、间隙大小影响叶梢区域压强分布,泄漏涡压强随之改变;第三、间隙大小改变了间隙内黏流的产生和发展,影响泄漏涡黏性分布。而且叶梢泄漏涡核是导管螺旋桨空泡初生位置。文中研究一种叶梢喷射流方法降低叶梢涡核压降,推迟空化初生,探究了不同喷射速度和喷射间隙高度、喷射角度对泄漏涡空泡数的影响。从模拟结果看,叶梢喷射可以降低叶梢翼型载荷,改善泄漏涡核压强分布,推迟泄漏涡空化。比较不同喷射速度,发现速度越高,越能有效提高泄漏涡核压强,速度足够高时甚至可以“吹掉”涡核;研究不同喷射间隙高度发现,间隙越高,越能有效提高泄漏涡核压强,但由于会降低了叶梢更大区域的载荷,降低了桨叶推力;喷射角度的研究表明,轻微的正向预旋对推迟叶梢空化有利。  相似文献   

11.
The chain/wire rope/chain combination is a commonchoice for mooring offshore floating platforms. However, data ofthe drag coefficients of chain links are rather limited, resulting inuncertainties with the calculations of the drag force, and hence thedamping of the mooring system. In this paper, the importance of theselection of the drag coefficient is first investigated. Thecomputational fluid dynamics (CFD) method is then used todetermine the drag coefficients of a studless chain under steadyflows. Numerical model validation is first completed by simulatinga smooth circular cylinder under steady flows. In particular, theperformance of different turbulence models is assessed through thecomparisons between the calculations and the experimental results.The large eddy simulation (LES) model is finally selected for thesimulation of steady flows past a chain. The effects of the Reynoldsnumber on the drag coefficient of a stud-less chain is also studied.The results show that the calculated drag coefficients of a stud-lesschain are fairly consistent with the available experimental data.  相似文献   

12.
通过分离涡模拟法(detached eddy simulation,DES)对半潜式钻井服务支持平台拖航阻力进行了研究,重点对平台拖航阻力、阻力系数和平台表面附近流场分布等特性进行了研究。研究表明:流方向下平台各结构所受阻力各不相同,下浮体占据总阻力比最大(尤其是90°来流方向下)。阻力系数及升力系数时历曲线变化具有“脉动性”。通过平台表面附近流场分布可以分析涡形成及受力原因,逆方向流及涡之间相互作用使得阻力有所减小。  相似文献   

13.
[目的]采用数值模拟方法探究潜艇近冰面航行时的水动力性能.[方法]选取Suboff全附体潜艇模型为研究对象,在STAR-CCM+软件中采用RANS方法,再结合SST k-ω湍流模型和体积分数法计算艇体的水动力性能.然后进行网格无关性验证以及近冰面水动力特性分析的方法验证,以确定计算方法的有效性.[结果]结果表明,潜艇近...  相似文献   

14.
为研究运行参数对天然气-柴油双燃料船用发动机燃烧和排放的影响,运用AVL_FIRE仿真软件基于4190Z_LC-2型船用中速柴油机,构建燃烧室高压循环模型。通过将仿真数据和台架试验得到的缸压曲线进行对比,验证模型的准确性。采用模型仿真,研究运行参数对燃烧和排放性能的影响。结果表明:天然气替代率可以明显改善NO的排放,过高的替代率会降低指示功率,损失部分动力性;提高进气温度可改善燃烧质量,合适的进气温度可以改善动力性和经济性;提高进气压力有增压效果,适当提高进气压力可获得较好的动力性和排放性;喷油提前角的增大,会延长滞燃期,缩短后燃期,而合适的喷油提前角可以避免工作粗暴,改善柴油机动力性。  相似文献   

15.
The hydrodynamic performance of a three-dimensional finite-length rotating cylinder is studied by means of a physical tank and numerical simulation. First, according to the identified influencing factors, a hydrodynamic performance test of the rotating cylinder was carried out in a circulating water tank. In order to explore the changing law of hydrodynamic performance with these factors, a particle image velocimetry device was used to monitor the flow field. Subsequently, a computational field dynamics numerical simulation method was used to simulate the flow field, followed by an analysis of the effects of speed ratio, Reynolds number, and aspect ratio on the flow field. The results show that the lift coefficient and drag coefficient of the cylinder increase first and then decrease with the increase of the rotational speed ratio. The trend of numerical simulation and experimental results is similar.  相似文献   

16.
To deal with the effect of compressible fluids on the supercavitating flow over the subsonic disk cavitator of a projectile, a finite volume method is formulated based on the ideal compressible potential theory. By using the continuity equation and Tait state equation as well as Riabouchinsky closure model, an “inverse problem” solution is presented for the supercavitating flow. According to the impenetrable condition on the surface of supercavity, a new iterative method for the supercavity shape is designed to deal with the effect of compressibility on the supercavity shape, pressure drag coefficient and density field. By this method, the very low cavitation number can be computed. The calculated results agree well with the experimental data and empirical formula. At the subsonic condition, the fluid compressibility will make supercavity length and radius increase. The supercavity expands, but remains spheroid. The effect on the first 1/3 part of supercavity is not obvious. The drag coefficient of projectile increases as the cavitation number or Mach number increases. With Mach number increasing, the compressibility is more and more significant. The compressibility must be considered as far as the accurate calculation of supercavitating flow is concerned.  相似文献   

17.
基于流固耦合的螺旋桨性能分析及参数优化   总被引:1,自引:0,他引:1  
为了研究某型螺旋桨水动力及强度特性.首先建立螺旋桨实体模型,再在CFX中设置计算条件,运用CFD有限元方法计算与分析不同进速下螺旋桨的推力系数、转矩系数、敞水效率以及桨叶压力分布等水动力参数特性及其变化趋势;然后通过Workbench平台应用流固耦合方法,将CFX求解得到的螺旋桨表面压力载荷加载到螺旋桨结构强度分析模型上,对螺旋桨的强度进行计算.最后通过改变纵倾角和螺距对螺旋桨结构进行优化,并将仿真结果与原桨比较,结果表明适当增大纵倾角能增大螺旋桨强度,适当降低螺距能提高螺旋桨敞水效率、提高抗空泡性能并增大螺旋桨强度.  相似文献   

18.
To deal with the effect of compressible fluids on the supercavitating flow over the subsonic disk cavitator of a projectile, a finite volume method is formulated based on the ideal compressible potential theory. By using the continuity equation and Tait state equation as well as Riabouchinsky closure model, an "inverse problem" solution is presented for the supercavitating flow. According to the impenetrable condition on the surface of supercavity, a new iterative method for the supercavity shape is designed to deal with the effect of compressibility on the supercavity shape, pressure drag coefficient and density field. By this method, the very low cavitation number can be computed. The calculated results agree well with the experimental data and empirical formula. At the subsonic condition, the fluid compressibility will make supercavity length and radius increase. The supercavity expands, but remains spheroid. The effect on the first 1/3 part of supercavity is not obvious. The drag coefficient of projectile increases as the cavitation number or Mach number increases. With Mach number increasing, the compressibility is more and more significant. The compressibility must be considered as far as the accurate calculation of supercavitating flow is concerned.  相似文献   

19.
二维圆柱绕流数值模拟   总被引:1,自引:0,他引:1  
杨烁  吴宝山 《中国造船》2007,48(B11):533-540
对于椭球体绕流问题,可以考虑利用二维切片法的思想将其剖成一个个圆剖面,研究圆剖面的二维流动问题即二维圆柱绕流问题。采用Fluent软件,分别用多种流动模型在高雷诺数下对定常和非定常状态的圆柱绕流进行了数值模拟,计算得到圆柱绕流的升阻力系数、分离点位置、Strouhal数、流函数等结果,并与文献中的实验结果进行了比较,得到相应比较合理的计算模型。  相似文献   

20.
基于两相流理论,对集装箱船船模进行微气泡减阻性能数值仿真研究。分析船模在不同喷气口位置、流体含气率、不同喷射速度和角度下的流场分布和减阻效果。结果表明:当流体微气泡含量过高时,会增大船体摩擦阻力,流体含气率为10%~20%时,有较好的减阻效果,喷气口位置在距离球鼻艏后缘约三分之一船长附近具有较高的空气覆盖率,喷气口喷气方向垂直向下所产生的减阻效果比喷气方向偏向船侧效果要好,且船速较高时可允许较高含气率流体注入流场并增大减阻效果。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号