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Sloshing of liquid can increase the dynamic pressure on the storage sidewalls and bottom in tanker ships and LNG careers. Different geometric shapes were suggested for storage tank to minimize the sloshing pressure on tank perimeter. In this research, a numerical code was developed to model liquid sloshing in a rectangular partially filled tank. Assuming the fluid to be inviscid, Laplace equation and nonlinear free surface boundary conditions are solved using coupled FEM-BEM. The code performance for sloshing modeling is validated against available data. To minimize the sloshing pressure on tank perimeter, rectangular tanks with specific volumes and different aspect ratios were investigated and the best aspect ratios were suggested. The results showed that the rectangular tank with suggested aspect ratios, not only has a maximum surrounded tank volume to the constant available volume, but also reduces the sloshing pressure efficiently. 相似文献
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大型补给舰船液舱晃荡载荷计算方法 总被引:5,自引:0,他引:5
随着补给舰船的大型化,补给舰船中的液舱晃荡问题开始凸显。为给大型补给舰船的液舱结构设计提供方便、可靠的晃荡载荷输入,基于改进的VOF法,以Youngs法重构自由液面,结合部分单元参数概念,提出了一种精度更高且数值稳定的、处理非矩形复杂舱室边界晃荡载荷的计算方法。通过对不同装载情况的液舱晃荡进行数值分析,并与Hirt-Nichols算法以及实验结果进行对比,证明该方法可有效改进自由表面的模拟效果,提高舱室内部速度、加速度和压力的预报精度。网格敏感性分析证明该方法的数值稳定性较好,较粗的网格也能达到较高的精度。所建立的晃荡载荷计算方法可用于对补给舰船的液舱晃荡设计载荷进行快速、准确的预报。 相似文献
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In this research,liquid sloshing behavior in a 2-D rectangular tank was simulated using ANSYS-FLUENT software subject to single or multiple-coupled external excitations(such as sway coupled with roll,and sway and roll coupled with heave).The volume of fluid(VOF) method was used to track the free surface of sloshing.External excitation was imposed through the motion of the tank by using the dynamic mesh technique.The study shows that if the tank is subjected to multiple coupled excitations and resonant excitation frequencies,liquid sloshing will become violent and sloshing loads,including impact on the top wall,will be intensified. 相似文献
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为了解三维弹性液舱内液体晃荡情况,采用ADINA模拟不同激励频率下液舱内液体的晃荡,将所得的结果与解析解进行对比,得到不同载液率下弹性液舱内液体晃荡特点,得到液舱载液率、外界激励等参数变化对液体自由表面运动及晃荡荷载的影响. 相似文献
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Sloshing phenomenon in the liquid cargo carriers has caught the attention of researchers as the interaction between the sloshing
waves and structure is one of the key point and difficulty in the study of sloshing. In this paper, we captured the free surface
with a volume of fluid (VOF) method and then calculated the motions and responses of the structure by adopting the Reynolds-averaged
Navier-Stokes (RANS) equations for the whole fluid domain. With the use of user defined functions (UDF) in Fluent, the interaction
between fluid and structure was then simulated. As a reasonable simplification, the authors studied the response of a single
cantilever in a tank under sloshing loads; Further study should pay more attention to the mechanisms of interaction between
sloshing waves and elastic structures. 相似文献
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液舱内流体晃荡特性数值研究 总被引:10,自引:1,他引:9
本文利用VOF法对矩形液舱内液体晃荡进行数值计算。首先对舱内无任何隔板时液体晃荡作了模拟,并与相关文献中的实验结果进行了比较;然后在舱底中间设置一道不同形式的防晃隔板,对液体晃荡进行了计算。从结算结果看,本文提出的方法可以用于分析液舱内液体的运动和载荷,为设计合理的液舱结构形式提供理论依据。 相似文献
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In order to explore the characteristics of the single-layer liquid sloshing in offshore dry oil storage tank and the two-layer liquid sloshing in offshore wet oil storage tank, two series of experiments were carried out: one was free surface sloshing in a closed rectangular tank partially filled with colored water, and the other was interfacial sloshing in the identical tank but completely filled with white oil and colored water. The tank was mounted on a shake table and was subjected to harmonic horizontal excitation with different excitation amplitudes and a wide range of excitation frequencies, including the first seven natural modes of single-layer or two-layer liquid system. The present study find that the frequency responses of interfacial sloshing wave are analogous to those of the free surface sloshing wave, but smaller in amplitudes. The experiments also produce results that are unique to the two-layer liquid sloshing. For example, when the external excitation frequency is equal to or close to the odd mode natural frequency of two-layer liquid system, a complicated three-dimensional (3D) gravity-capillary wave might be generated at the oil-water interface. Finally, the comparisons of free surface and interfacial sloshing in the viscous damping ratio, higher sloshing modes, impact pressure amplitude and mass center displacement were conducted, which revealed the superiority of wet storage technology in structural safety and dynamic stability. 相似文献
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在海洋工程领域,液体晃荡是一种普遍存在的物理现象。对于船舶而言,转动比平动有着更重要的影响。该文针对纵摇容器中的液体晃荡问题,采用高阶边界元方法建立自由水面满足完全非线性边界条件的时域数学模型。通过大地坐标系和随体坐标系之间的坐标变换,使得计算域仅控制在随体坐标系内。求解中采用半混合欧拉—拉格朗日方法追踪流体瞬时水面,运用四阶龙格库塔方法更新下一时间步的波面和速度势。通过与已发表试验和数值结果的对比,验证了建立模型的准确性。进而开展大量数值试验研究容器纵摇运动频率、纵摇转动中心和容器中布置一竖直隔板对晃动波面与荷载的影响。 相似文献
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大型LNG船液舱晃荡冲击载荷的合理预报是液舱结构安全性设计和评估的基础。针对部分装载的LNG船液舱的晃荡载荷开展数值预报方法研究,建立了合理的数值模型和计算方案。通过典型菱形液舱的三维晃荡模型试验,获得LNG液舱在各种运动模式下流体拍击舱壁的冲击载荷特性。在数值计算和对比分析中,首先对舱内液体在各种运动模式下的晃荡固有频率进行了搜索,然后在各个固有频率下进行了变幅值激励和耦合运动激励下的冲击压力计算,得到了不利运动工况下的冲击压力预报结果。数值模拟结果与模型试验结果的比较表明,提出的液舱晃荡数值计算方法能够合理地预报大型LNG船液舱晃荡载荷特征。在此基础上,对各种载液水平和运动模式下大型LNG船液舱内壁的压力分布进行了详细计算,可供液舱围护系统结构设计和安全性评估参考。 相似文献
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液舱晃荡载荷数值模拟中的流固耦合影响研究 总被引:2,自引:0,他引:2
为了研究大型化后LNG船液舱围护系统结构弹性对液舱内晃荡冲击压力的影响,采用基于显式时间积分方法的有限元/有限体积法程序模拟流体和结构的运动和变形及其相互作用。论述了数值模拟方法及其重要相关参数,以二维矩形刚性液舱模型为例模拟晃荡,得到的结果分别与计算流体程序和试验的结果比较,论证了该数值计算方案的可行性。进一步进行了三维刚性和三维弹性模型的液舱晃荡分析,比较了不同模型对液体运动和舱壁冲击压力的影响。文中研究结果对液舱结构晃荡冲击载荷评估具有参考价值。 相似文献
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Even in relatively calm waters, low amplitude wave-induced motions of an LNG carrier may induce large amplitude liquid sloshing inside the ship's partially filled tanks, and the interaction between ship motions and sloshing may affect the ship's seekeeping properties. A computational procedure, here referred to as the RANS-RANS method, was developed to account for this interaction, and this method was then employed to predict the free surface flow inside the tanks and the corresponding motions of the ship in regular head and beam waves. This method coupled a compressible VoF technique with a generic wave generation and absorption scheme to obtain wave-induced ship motions with and without considering the effects of sloshing in the ship's tanks. Systematic grid studies were performed to obtain a sufficiently fine grid needed to yield converging predictions. The resulting wave patterns, ship motions, and internal sloshing elevations were compared with results obtained from a computational method, here referred to as the RANS-BEM method, that relied on a boundary element method to obtain ship motions. This RANS-RANS method was validated against model test measurements. 相似文献
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针对独立B型棱形液舱的结构特点,采用基于Hilber-Hughes-Taylor格式的隐式直接积分法求解液舱运动,应用VOF法求解流体晃荡,结合部分单元参数的概念处理棱形液舱边界,计算了计及弹性支撑效应的独立B型液舱晃荡。通过目标船计算,发现计及弹性支撑效应的液舱晃荡载荷会略大于不计及弹性支撑效应的晃荡载荷;通过不含内部构件弹性支撑液舱、含内部构件弹性支撑液舱和含内部构件非弹性支撑液舱晃荡的比较,分析了独立B型液舱晃荡载荷的特点以及内部构件对波面的限制作用。探讨的计算方法可为独立B型棱形液舱晃荡载荷的预报和分析提供一定的参考。 相似文献
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