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Computational Fluid Dynamic Studies of Vortex Amplifier Design for the Nuclear Industry—I. Steady-State Conditions

机译:核工业涡激放大器设计的计算流体动力学研究 - I.稳态条件

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摘要

In this study the effects of changes to the geometry of a vortex amplifier are investigated using computational fluid dynamics (CFD) techniques, in the context of glovebox operations for the nuclear industry. These investigations were required because of anomalous behavior identified when, for operational reasons, a long-established vortex amplifier design was reduced in scale. The aims were (i) to simulate both the anomalous back-flow into the glovebox through the vortex amplifier supply ports, and the precessing vortex core in the amplifier outlet, then (ii) to determine which of the various simulated geometries would best alleviate the supply port back-flow anomaly. Various changes to the geometry of the vortex amplifier were proposed; smoke and air tests were then used to identify a subset of these geometries for subsequent simulation using CFD techniques. Having verified the mesh resolution was sufficient to reproduce the required effects, the code was then validated by comparing the results of the steady-state simulations with the experimental data. The problem is challenging in terms of the range of geometrical and dynamic scales encountered, with consequent impact on mesh quality and turbulence modeling. The anomalous nonaxisymmetric reverse flow in the supply ports of the vortex amplifier has been captured and the mixing in both the chamber and the precessing vortex core has also been successfully reproduced. Finally, by simulating changes to the supply ports that could not be reproduced experimentally at an equivalent cost, the geometry most likely to alleviate the back-flow anomaly has been identified.
机译:在这项研究中,在核工业手套箱操作的背景下,使用计算流体动力学(CFD)技术研究了涡旋放大器几何形状变化的影响。需要进行这些研究的原因是,由于操作原因,确定了长期存在的涡流放大器设计的规模时,发现了异常行为。目的是(i)模拟通过涡流放大器供应端口流入手套箱的异常回流以及放大器出口中的旋进涡流核,然后(ii)确定各种模拟几何中的哪一种最能缓解供给端口回流异常。提出了涡流放大器的几何形状的各种变化。然后使用烟雾和空气测试来识别这些几何形状的子集,以便随后使用CFD技术进行模拟。验证了网格分辨率足以再现所需的效果之后,通过将稳态仿真的结果与实验数据进行比较来验证代码。就遇到的几何和动态比例的范围而言,此问题具有挑战性,因此对网格质量和湍流建模产生影响。涡流放大器供应端口中异常的非轴对称逆流已被捕获,腔室和进旋涡流芯中的混合也已成功复制。最后,通过模拟无法以等价成本通过实验再现的供气口变化,已经确定了最有可能缓解回流异常的几何形状。

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