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首页> 外文期刊>Journal of offshore mechanics and arctic engineering >Friction Factor Estimation for Turbulent Flows in Corrugated Pipes with Rough Walls
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Friction Factor Estimation for Turbulent Flows in Corrugated Pipes with Rough Walls

机译:粗壁波纹管湍流流动的摩擦因数估计

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The motivation of the investigation is the critical pressure loss in cryogenic flexible hoses used for LNG transport in offshore installations. Our main goal is to estimate the friction factor for the turbulent flow in this type of pipes. For this purpose, two-equation turbulence models (k - ε and k - ω) are used in the computations. First, the fully developed turbulent flow in a conventional pipe is considered. Simulations are performed to validate the chosen models, boundary conditions, and computational grids. Then a new boundary condition is implemented based on the "combined" law of the wall. It enables us to model the effects of roughness (and maintain the right flow behavior for moderate Reynolds numbers). The implemented boundary condition is validated by comparison with experimental data. Next, the turbulent flow in periodically corrugated (flexible) pipes is considered. New flow phenomena (such as flow separation) caused by the corrugation are pointed out and the essence of periodically fully developed flow is explained. The friction factor for different values of relative roughness of the fabric is estimated by performing a set of simulations. Finally, the main conclusion is presented: The friction factor in a flexible corrugated pipe is mostly determined by the shape and size of the steel spiral, and not by the type of the fabric, which is wrapped around the spiral.
机译:研究的动机是在海上设施中用于液化天然气运输的低温柔性软管中的临界压力损失。我们的主要目标是估算此类管道中湍流的摩擦因数。为此,在计算中使用了两方程湍流模型(k-ε和k-ω)。首先,考虑常规管道中充分产生的湍流。执行仿真以验证所选模型,边界条件和计算网格。然后根据墙的“组合”定律实现新的边界条件。它使我们能够对粗糙度的影响进行建模(并为中等的雷诺数保持正确的流动行为)。通过与实验数据进行比较,验证了实现的边界条件。接下来,考虑周期性波纹(柔性)管中的湍流。指出了由波纹引起的新的流动现象(例如流动分离),并解释了周期性充分发展的流动的本质。通过执行一组模拟,可以估算出织物相对粗糙度的不同值的摩擦系数。最后,得出了主要结论:挠性波纹管中的摩擦系数主要取决于螺旋钢的形状和尺寸,而不取决于缠绕螺旋的织物的类型。

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