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A device to achieve low Reynolds numbers in an open surface water channel

机译:一种在露天水通道中实现低雷诺数的装置

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摘要

When investigating flow structures, and espe- cially flow transitions, research projects often seek to increase insight using complementary numerical and physical experiments. Obtaining exact Reynolds number correspondence can frequently be difficult in experiments, particularly when relatively low values are required. Often, available test facilities were designed and optimised for a specific velocity range, meaning they have restrictions on the minimum flow velocity. This study describes a device to reduce the flow velocity locally in an open surface water channel. The underlying idea is to divert a controlled fraction of the incoming flow from the working section by increasing the pressure there, resulting in reduced velocity. This idea is realised using a ‘sub-channel’ that can be inserted into the main test chamber, with a variable porosity perforated screen at its downstream end. This study assesses and optimises the flow quality inside this structure, such as usable test section length, uniformity of the velocity profiles and turbulence intensity. The results demonstrate that the device creates high quality low Reynolds number flows, which is exemplified with the canonical circular cylinder in cross-flow.
机译:在研究流量结构,尤其是流量转换时,研究项目通常会寻求通过互补的数值和物理实验来增加洞察力。在实验中通常很难获得精确的雷诺数对应关系,特别是在需要相对较低的值时。通常,可用的测试设备是针对特定速度范围进行设计和优化的,这意味着它们对最小流速有限制。这项研究描述了一种可降低露天水通道中局部流速的装置。基本思想是通过增加工作部分的压力来转移来自工作部分的受控流量,从而导致速度降低。这种想法是通过可插入主测试室的“子通道”实现的,在其下游端带有可变孔隙率的多孔筛网。这项研究评估并优化了该结构内部的流动质量,例如可用的测试截面长度,速度分布的均匀性和湍流强度。结果表明,该装置产生了高质量的低雷诺数流,这在交叉流中以典型的圆柱为例。

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