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RESEARCH ON THE UNCERTAINTY ANALYSIS IN CFD SIMULATION OF THE DREDGING DUSTPAN

机译:疏浚簸箕CFD仿真的不确定性分析研究

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The main focus of this paper is on the uncertainty analysis methodology and procedure in CFD recommended by 22nd ITTC and the benchmark database for the verification and validation of the results of dredging dustpan's inlet and outlet cross-section velocity ratio coefficient v_(iur). Compared with the previous uncertainty analysis of CFD focused on the fluid grid-convergence in the steady flow, which is less to consider other factors that may affect the accuracy of the results of numerical simulation, this study compensates for this deficiency and implements the grid-convergence and time-step-size-convergence studies respectively by using three types of grids and time step sizes with refinement ratio under the condition of unsteady flow. Through confirming the validity of CFD uncertainty analysis, the agreement between the numerical simulation correction values from the grid-convergence and time-step-size-convergence and the benchmark test data is found to be quite satisfactory. The results obtained in this study have shown that it is indispensable to carry out the time-step-size-convergence studies for CFD uncertainty analysis during the unsteady flow calculation because the numerical simulation errors respectively caused by the grid and time-step-size in the convergence study have the same order of magnitude. In further the present study of simultaneously conducting both grid-convergence and time-step-size-convergence is demonstrated efficient and effective in the CFD uncertainty analysis.
机译:本文的主要重点是在第22个ITTC和基准数据库推荐的CFD中的不确定性分析方法和程序,用于验证和验证疏浚簸箕入口和出口横截面速度比系数V_(IUR)的结果。与先前对稳定流量的CFD的不确定性分析相比,稳定流动的流体电网收敛性,这少考虑可能影响数值模拟结果的准确性的其他因素,这项研究补偿了这种缺陷并实现了网格 - 通过在不稳定流量的条件下使用三种类型的网格和时间步分别具有三种网格和时间步分别的收敛和时间阶梯大小收敛性研究。通过确认CFD不确定性分析的有效性,发现来自电网收敛和时间步大小收敛的数值模拟校正值与基准测试数据之间的协议是非常令人满意的。本研究中获得的结果表明,在不稳定的流量计算过程中对CFD不确定性分析进行时间级尺寸收敛研究是必不可少的,因为网格和时间梯度分别引起的数值模拟误差收敛研究具有相同的数量级。此外,在同时进行电网收敛和时间阶梯大小收敛的本研究中,在CFD不确定性分析中证明了有效且有效。

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