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Liquid dynamics sloshing in cylindrical containers: A 3D free-surface reconstruction dataset

机译:圆柱形容器中的液体动力学晃动:3D自由曲面重建数据集

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摘要

The present dataset provides experimental measurements of the 3D liquid/gas interface shape during lateral water sloshing in a partially filled cylindrical container. The measurement technique used to acquire the data is the Reference Image Topography [1] based on a Synthetic Schlieren Free-Surface Reconstruction method [2]. A modified version of the processing algorithm has been used. This one transforms the coordinate system from Cartesian to polar so that the computational domain only includes the area where the fluid is present. Moreover, it uses the conservation of the fluid volume into the investigated area that permits to obtain the absolute height. This allows overcoming the strong limitation of the RIT method regarding the inability to detect changes of the mean surface height, at the condition that the complete and only liquid domain recorded in the images is used in the inversion algorithm. The complete details of the post-processing of the images is reported in the paper associated to this DIB [3]. The dataset includes the external excitation history and maps of the liquid/gas interface acquired during the experiment. These data are considered fundamental for the validation of CFD simulations of sloshing and of simplified theoretical models. A set of 12 test cases are reported in this DIB. A part of these test cases refers to steady state sloshing and a part to sloshing damping. In the last cases, also the 3D map of damping coefficients, calculated using the logarithmic decrement method, is provided.
机译:本数据集提供了在部分填充的圆柱形容器中的横向水晃动期间的3D液/气界面形状的实验测量。用于获取数据的测量技术是基于合成的Schlieren自由表面重建方法[2]的参考图像形貌[1]。已经使用了处理算法的修改版本。这一个将来自笛卡尔的坐标系转换为极性,使得计算域仅包括流体存在的区域。此外,它使用将流体体积的保护储存到所研究的区域中,该区域允许获得绝对高度。这允许克服RIT方法的强度限制,关于无法检测平均表面高度的变化,在图像中记录在图像中的完整和唯一的液域在反转算法中使用的条件。在与此Dib [3]相关联的文件中报告了图像后后处理的完整细节。数据集包括在实验期间获取的液体/气体接口的外部激励历史记录和地图。这些数据被认为是验证晃动和简化理论模型的CFD仿真的基础。在该DIB中报告了一组12个测试用例。这些测试用例的一部分是指稳定状态晃动和缝隙阻尼的零件。在最后一个情况下,还提供了使用对数减量方法计算的阻尼系数的3D地图。

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