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首页> 外文期刊>Chemical Engineering Science >TURBULENT FLOW IN CLOSED AND FREE-SURFACE UNBAFFLED TANKS STIRRED BY RADIAL IMPELLERS
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TURBULENT FLOW IN CLOSED AND FREE-SURFACE UNBAFFLED TANKS STIRRED BY RADIAL IMPELLERS

机译:径向叶轮搅动的密闭自由表面罐内的湍流

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摘要

The three-dimensional turbulent flow field in unbaffled tanks stirred by radial impellers was numerically simulated by a finite-volume method on body-fitted, co-located grids. Simulations were run, with no recourse to empirical input, in the rotating reference frame of the impeller. Free-surface problems were also simulated, in which the profile of the central vortex was computed as part of the solution by means of an iterative technique. Predicted velocity and turbulence fields in the whole vessel and power consumptions were assessed against available literature data; free-surface profiles were also compared with original experimental data obtained in a model tank. Both the eddy-viscosity k-epsilon turbulence model and a second-order differential stress (DS) model were used and compared: satisfactory results were obtained only by using the latter model. The need for including source terms arising from fluctuating Coriolis forces in the Reynolds stress transport equations is highlighted. Copyright (C) 1996 Elsevier Science Ltd [References: 34]
机译:通过有限体积方法,在安装在身体上的同位网格上,对由径向叶轮搅拌的无挡板水箱内的三维湍流场进行了数值模拟。在不依赖经验输入的情况下,在叶轮的旋转参考系中进行了模拟。还模拟了自由表面问题,其中通过迭代技术计算了中心涡旋的轮廓作为解决方案的一部分。根据可用的文献数据评估了整个船舶的预计速度场和湍流场以及功率消耗;自由表面轮廓也与在模型罐中获得的原始实验数据进行了比较。涡粘性kε湍流模型和二阶微分应力(DS)模型都被使用并进行了比较:只有使用后者模型才能获得令人满意的结果。强调了在雷诺应力传递方程中包括因科里奥利力波动而产生的源项的需求。版权所有(C)1996 Elsevier Science Ltd [参考:34]

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