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FLOW FIELD ESTIMATION IN A S-SHAPED CHANNEL BY HIGH RESOLUTION MEASUREMENTS COMBINED WITH 3D NUMERICAL SIMULATION

机译:高分辨率测量与3D数值模拟相结合的S形通道流场估算

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摘要

At the Water Resources Institute of the University of Innsbruck experiments have been performed in an S-shaped trapezoidal channel with two bends and a slope of S = 0,005. Gravel with a mean diameter between 4,2mm and 6,4mm was used as bed material, for sediment feeding and wall roughness. Velocities were measured by means of a two-dimensional electromagnetic current meter. In areas of small water depth and low mean velocities measurement devices are not able to collect data of the whole velocity field. This deficiency can be compensated by numerical simulation. The complex flow field of curved channels implies the use of a 3D numerical model. For this purpose SSIIM-3D was applied. The collected measured data of the velocity field was used to verify the results of the numerical simulation. To investigate the areas, which are not reliably covered by the measurement, results of the numerical simulation can be favourably exploited. The same holds for the assessment of bottom shear stresses. The results obtained show that the combination of measurement and simulation enables to utilize advantages of both methods. Combined application allows dealing with certain problems in more detail and substantially improving the knowledge of flow phenomena involved.
机译:在因斯布鲁克大学水资源研究所,已在一个S形梯形通道中进行了实验,该通道具有两个折弯和S = 0,005的斜率。砾石的平均直径在4.2mm至6.4mm之间,用作沉积物,用于沉积物的输送和壁面的粗糙度。用二维电磁电流计测量速度。在水深较小,平均速度较低的地区,测量设备无法收集整个速度场的数据。这种缺陷可以通过数值模拟来弥补。弯曲通道的复杂流场意味着使用3D数值模型。为此,使用了SSIIM-3D。所收集的速度场测量数据用于验证数值模拟的结果。要调查测量未可靠覆盖的区域,可以很好地利用数值模拟的结果。底部剪切应力的评估也是如此。所获得的结果表明,测量和仿真的组合能够利用两种方法的优势。组合应用程序可以更详细地处理某些问题,并显着提高所涉及的流动现象的知识。

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