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The use of CFD coupled with physical testing to develop a new range of vortex flow controls with attributes approaching the ideal flow control device

机译:使用CFD与物理测试耦合,以开发新系列的涡流流量控制,其中属性接近理想的流量控制装置

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Vortex flow controls (VFC) are devices which are well suited for use in drainage systems, as they exhibit non-constant, non-linear discharge coefficients that can be tailored to approach that of a constant flow-rate device. Also, they have no mechanical components or power requirements and have a reduced risk of blockage compared with traditional flow controls. However, due to their complex bi-stable discharge behaviour and the influences of turbulence, the design and scaling of these devices, is not a trivial process. In this paper a VFC design methodology is presented that enables the VFC geometry to be determined and optimized to approach the ideal hydraulic behaviour, for a given discharge limit. This is achieved through the calibration of simplified, axi-symmetric vortex solutions of the Navier-Stokes relationships, by means of Computational Fluid Dynamic (CFD) analysis and experimental hydraulic assessment.
机译:Vortex流量控制(VFC)是适合于排水系统的装置,因为它们具有可以定制的非恒定的非线性放电系数,以接近恒定流量装置。此外,与传统流量控制相比,它们没有机械部件或功率要求,并且具有降低的堵塞风险。然而,由于它们复杂的双稳态放电行为和湍流的影响,这些装置的设计和缩放,不是琐碎的过程。在本文中,提出了一种VFC设计方法,其使得能够确定和优化的VFC几何体以获得给定的放电极限的理想液压行为。这是通过计算流体动力学(CFD)分析和实验水力评估来校准Navier-Stokes关系的简化的Axi-ordric涡旋解决方案来实现。

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