共查询到18条相似文献,搜索用时 359 毫秒
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以大涡模拟和mixture两相流模型计算微气泡对湍流边界层的影响,以达到减小湍流边界层阻力的目的.数值模拟中,在同一水流速度和不同气泡喷射速度下,阻力随着气泡的喷射速度的增加而得到很大的减小,但当气泡量达到饱和时,减阻效果下降.数值模拟结果表明,在湍流边界层中注入微气泡是一种有效的减阻方式. 相似文献
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为了研究船舶微气泡减阻规律,本文基于OpenFOAM中两相欧拉数值模型,对低速散货船进行微气泡减阻数值研究。对气液两相分别建立控制方程,考虑五种相间作用力及气泡聚合和破碎,采用考虑气泡影响的改进k-ε湍流模型,忽略自由面影响,采用叠模模型研究喷气量、气泡直径、航速及吃水等因素对船舶微气泡减阻的影响,分析气体体积分数、湍流粘度和气泡直径分布等。结果表明:微气泡可以同时减少船舶摩擦阻力、粘压阻力和总阻力;喷气量直接影响减阻率,喷气量越大,减阻率越高;较小气泡的平均气体体积分数较大且气体分布更均匀,同时湍流运动粘度较小,可以更有效减阻;气泡沿着流向会聚并,气泡越小聚并越剧烈;较高航速和小吃水更有利于减阻。 相似文献
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基于OpenFOAM的平板微气泡减阻数值分析 总被引:2,自引:0,他引:2
《船舶力学》2020,(8)
本文基于OpenFOAM两相欧拉求解器(twoPhaseEulerFoam)对二维平板进行微气泡减阻数值模拟。模型直接求解两相N-S方程,同时采用标准k-ε湍流模型,并考虑两相间作用力的影响,通过求解界面输运方程来模拟气泡的聚并和破碎。将数值结果和Madavan[1]试验结果进行对比,验证了模型的可行性。分析了不同流速下气泡直径、通气速度、浮力对减阻率的影响,并且研究了气泡对边界处流体速度分布、气体体积分数的影响。从数值结果可以看出通气速度较大且气泡直径较小时,减阻效率高,并且浮力对减阻有一定影响。 相似文献
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采用欧拉方法的混合两相流模型及标准k-ε湍流模型,对采用控制气泡逸出技术的高速艇进行数值模拟,得到模型在喷气与不喷气状态下航行时的粘性流场,探讨不同控制气泡逸出方法对摩擦阻力减阻效果的影响,以寻求出使气泡在艇底保持及运动稳定性较好的最佳减阻措施。计算结果表明:在艇底加防溅条没有达到预期的减阻效果,优化后的新船型明显提高微气泡的减阻率。 相似文献
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Ship hull form of the underwater area strongly influences the resistance of the ship.The major factor in ship resistance is skin friction resistance.Bulbous bows,polymer paint,water repellent paint(highly water-repellent wall),air injection,and specific roughness have been used by researchers as an attempt to obtain the resistance reduction and operation efficiency of ships.Micro-bubble injection is a promising technique for lowering frictional resistance.The injected air bubbles are supposed to somehow modify the energy inside the turbulent boundary layer and thereby lower the skin friction.The purpose of this study was to identify the effect of injected micro bubbles on a navy fast patrol boat(FPB) 57 m type model with the following main dimensions:L=2 450 mm,B=400 mm,and T=190 mm.The influence of the location of micro bubble injection and bubble velocity was also investigated.The ship model was pulled by an electric motor whose speed could be varied and adjusted.The ship model resistance was precisely measured by a load cell transducer.Comparison of ship resistance with and without micro-bubble injection was shown on a graph as a function of the drag coefficient and Froude number.It was shown that micro bubble injection behind the mid-ship is the best location to achieve the most effective drag reduction,and the drag reduction caused by the micro-bubbles can reach 6%-9%. 相似文献
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Madan Mohan Guin Hiroharu Kato Hajime Yamaguchi Masatsugu Maeda Masaru Miyanaga 《Journal of Marine Science and Technology》1996,1(5):241-254
Determination of the flow structure near the wall is essential for a clear insight into the phenomenon of skin friction reduction
by microbubbles in a turbulent boundary layer. An important parameter, is the bubble concentration or void fraction in the
wall region in drag-reducing conditions. The purpose of this paper is to show drag-reducing effects due to microbubbles in
a water channel and, more importantly, to show the dependence of the drag-reduction values on the near-wall void fraction.
A two-dimensional channel with an aspect ratio of 10 was specially built for this purpose with provisions for air injection
through porous plates. Skin friction was directly measured by a miniature floating element transducer with a 5-mm circular
sensing disk mounted flush on the top wall 67 channel-heights downstream of the injector. The wall friction in the presence
of air bubbles was found to be reduced under the same bulk velocity when compared with the value without air. Detailed void
fraction profiles across the channel were obtained by a sampling probe and a fiber-optic probe. Better collapse of the drag
reduction data, independent of different profile shapes, was found when plotted against the near-wall void fraction than against
a cross-sectional mean void fraction. While this dependence reconfirms that the phenomena are essentially inner-region dependent,
the lack of influence of the bubble distribution patterns away from the wall implies lack of outer region influence. 相似文献
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采用船型优化方法就超大型集装箱船10 000TEU的能效设计指数(EEDI)进行优化.文中以降低对主机功率的需求、提高能效设计水平为目标,优化该超大型集装箱船的阻力性能.优化时利用平移法和径向基函数方法进行船体曲面重构,并分别采用基于Rankine源非线性势流理论和边界层动量积分计算兴波阻力和摩擦阻力,最后同时使用遗传算法(NSGA-Ⅱ)和序列二次规划算法(NLPQL)在设计空间中探索满足约束条件的阻力最优船型.结果表明,通过该优化方法获得的最优船型,其能效设计指数优化程度明显,能够满足现阶段IMO对新造集装箱船计及折减系数后的强制要求. 相似文献
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板桩侧摩阻力的大小和分布模式对板桩的沉降有较大影响,进而对板桩加固护岸结构的稳定产生影响,桩端至于相对硬土层的板桩护岸结构,对板桩沉降是一项重要研究内容。为了研究加固护岸板桩桩侧摩阻力的分布模式和大小,结合长湖申航道湖州段板桩加固护岸实体工程,通过在板桩预制过程中将钢筋应力计埋入板桩轴心处,完整测试了板桩在凝固硬化过程中钢筋应力计受力情况和护岸荷载施加过程中的板桩荷载传递机制,详细介绍了钢筋应力计的焊接及埋设方式。现场试验结果表明:混凝土凝固硬化过程对埋入板桩的钢筋应力计会产生较大的拉压应力并逐步趋于稳定;施工荷载对钢筋应力计受力的影响较大,在分析护岸荷载施加过程中板桩荷载传递机制时,需要对钢筋应力计进行重新标定;在护岸荷载作用下,桩身的上部轴力变化较大,而中部及下部轴力不仅变化较小而且轴力较大,即桩顶荷载易于向下传递;桩侧摩阻力在靠近桩顶附近得到了较大发挥,在距桩顶0.3 m范围内的桩侧摩阻力约占整个桩身摩阻力的40%;JGJ 94—2008《建筑桩基技术规范》推荐的极限桩侧摩阻力较大,实测最大值仅为推荐值的63.9%。 相似文献
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