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Analysis of a cross-flow influence for a turbulence progress in an initial segment of axisymmetric duct

机译:横流对轴对称导管初始段湍流进程的影响分析

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Influence for a nondisturbed stream by cross-flow is present in many technical applications. In part of applications, this phenomenon is caused intentionally, but in others, it is a side-effect. Flow through the closed duct is one of the most frequently realized types of flow in thermal devices. The paper shows an influence of cross-flow for a laminar stream, which is flowing through closed, round duct. The considered case was calculated in numerical calculations and analyzed during experimental research. Cross-flow stream was generated by four circular nozzles located on the duct walls in some distance from the duct inlet, which was distributed along the circumference of analyzed construction in the right angle to the mainstream. Experimental research was realized by a constant temperature anemometry measurement method. A numerical model of a fluid flow was created in ANSYS Fluent software. Unsteady numerical calculations of a cross-flow influence for a mainstream was realized with the Detached Delayed Eddy Dissipation model of turbulence application. Realized research established how a cross stream can turbulent a laminar flow in a closed, circular duct. Authors showed velocity distribution in the main duct after cross-flow influence and demonstrated, that this method allows ascending turbulence of a flow in external parts of fluid flow.
机译:在许多技术应用中都存在交叉流对无干扰流的影响。在某些应用程序中,此现象是有意引起的,而在其他应用程序中,则是副作用。通过封闭管道的流量是热设备中最常见的流量类型之一。本文显示了横流对层流的影响,层流流经封闭的圆形管道。所考虑的情况通过数值计算进行了计算,并在实验研究过程中进行了分析。横流流是由位于导管壁上的四个圆形喷嘴产生的,这些喷嘴与导管入口相距一定距离,并沿分析结构的圆周与主流成直角分布。恒温风速测定法实现了实验研究。在ANSYS Fluent软件中创建了流体流动的数值模型。湍流应用的分离延迟涡耗散模型实现了主流横流影响的非稳态数值计算。已有的研究确定了横流如何在封闭的圆形管道中扰动层流。作者显示了经过横流影响后主导管中的速度分布,并证明了该方法可以使流体外部的流动湍流上升。

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