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Two-dimensional viscous numerical simulation of liquid sloshing in rectangular tank with/without baffles and comparison with potential flow solutions

机译:带有/不带挡板的矩形罐中液体晃荡的二维粘性数值模拟及与潜在流动解的比较

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A viscous fluid model based on non-inertial reference system is developed for the problem of liquid sloshing in rectangular tank with/without baffles. The accuracy of the numerical model is validated against available theoretical solutions, experimental data and numerical predictions by linear and non-linear potential flow models and different Navier-Stokes solvers. The numerical examinations indicate that the dissipative effects have significant influence on the sloshing responses in both non-baffled and baffled tanks. The sloshing responses that are associated with the natural frequencies can be finally damped out due to the physical dissipations, while they are entirely retained in the potential solutions, which accounts for the general over-predictions of sloshing amplitudes by the potential flow theory. The sloshing in baffled tank involves more dissipation due to the stronger vortical flow. The resonant frequency and amplitude are highly dependent on the baffle width and position. The relative sloshing amplitudes around the resonant condition are found to decrease with the excitation amplitude in a power law. The necessity of using viscous fluid model for sloshing predictions is addressed. The extremely long numerical computations have to be carried out in order to obtain convincing stable solutions, especially for the weakly damped sloshing motion. (C) 2015 Elsevier Ltd. All rights reserved.
机译:针对有/无挡板的矩形罐中液体晃动的问题,建立了基于非惯性参考系统的粘性流体模型。通过线性和非线性势流模型以及不同的Navier-Stokes求解器,对照可用的理论解,实验数据和数值预测对数值模型的准确性进行了验证。数值研究表明,耗散效应对非折流板和折流板罐的晃荡反应都有显着影响。与自然频率相关的晃动响应最终会由于物理耗散而被衰减,而它们却完全保留在势能解中,这说明了势流理论对晃动幅度的普遍过高预测。由于较强的涡流,折流板箱中的晃荡会导致更多的耗散。谐振频率和幅度高度取决于挡板的宽度和位置。发现在幂律中,谐振条件附近的相对晃动幅度随激励幅度而减小。解决了使用粘性流体模型进行晃荡预测的必要性。为了获得令人信服的稳定解,必须进行极长的数值计算,尤其是对于弱阻尼晃动。 (C)2015 Elsevier Ltd.保留所有权利。

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