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Study on Bubble Velocity under Bubble Flow Scenario in the Horizontal Water Transmission Pipeline

机译:水平水传输管道泡沫流程下泡沫速度研究

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In order to put forward some feasible suggestions for the air emission in water transmission pipeline, this article mainly studies the bubble velocity under bubble flow scenario in the horizontal water transmission pipe. It was assumed that the bubble in the horizontal pipe could be regarded as a rigid body with a spherical shape, and the concept of sliding friction was introduced into the stress analysis to represent for the interaction between the bubble and the pipe wall. Taking all the forces on the bubble into consideration, a completely theoretical model was established to calculate the bubble velocity. During the experiments, the method of continuous photographing was employed to record the bubble size and velocity, and the experimental data was used to verify the accuracy of the model. It was found that the experimental data fitted well with the theoretical model after multiplying a correction factor. Ultimately, the corrected model was used to study the effects of pipe diameter, pipe variety, pipe pressure and temperature on the bubble size and bubble velocity, and it was proposed that more air release valves should be installed at the terminal part of the water transmission pipeline for air emission.
机译:为了提出对水传输管道的空气排放的一些可行建议,本文主要研究水平散热管中的泡沫流程下的气泡速度。假设水平管中的气泡可以被视为具有球形的刚体,并且将滑动摩擦的概念引入应力分析中以表示气泡和管壁之间的相互作用。考虑到泡沫上的所有力量,建立了完全理论模型来计算泡沫速度。在实验期间,采用连续拍摄的方法来记录气泡尺寸和速度,并且实验数据用于验证模型的准确性。结果发现,在乘以校正因子后,实验数据与理论模型很好。最终,校正模型用于研究管道直径,管道多样,管道压力和温度对气泡尺寸和气泡速度的影响,提出了更多的空气释放阀应安装在水传动的终端部分处用于空气排放的管道。

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