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Modulation of transient pressure by an air pocket in a horizontal pipe with an end orifice

机译:用末端孔口的水平管中的空气口袋调制瞬态压力

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In urban drainage systems, a sudden increase in the flow rate can cause the transition of the flow from open channel to pipe flow, and the entrapment of large air pockets in sewers, which might result in serious geysers and water-hammer like pressure events. This paper presents a numerical analysis of flow processes associated with the pressurization and release of an air pocket in order to study its influence on transient pressure in a horizontal pipe with an end orifice. The influence of the air pocket inside the pipe on the peak pressure can be described in two distinct regimes. In regime I for the pipe with a small orifice, the peak pressure is modulated by the pressurization and expansion of the air pocket and its subsequent damping. In regime II for the pipe with a large orifice, air can be quickly expelled, and the water column directly impinges on the pipe end wall and causes water-hammer like pressure. With the increase of the orifice size, the peak pressure decreases due to the change in the water velocity. In the study cases, the peak pressure in regime I is about two times the inlet pressure, while it can be more than forty times in regime II.
机译:在城市排水系统中,流速的突然增加可能导致流动从开放通道转换到管道流动,以及下水道中的大型气袋的扣留,这可能导致严重的喷泉和水锤等压力事件。本文介绍了与气动口袋的加压和释放相关的流程的数值分析,以研究其对具有终端孔的水平管中的瞬态压力的影响。在两个不同的制度中可以描述管道内的气口内的气口的影响。在具有小孔的管道的制度I中,通过气袋的加压和膨胀和随后阻尼的加压和膨胀来调节峰值压力。在具有大孔口的管道的制度II中,空气可以快速排出,水柱直接撞击管端壁并使水锤相同的压力。随着孔口尺寸的增加,由于水速度的变化,峰值压力降低。在研究病例中,制度I中的峰值压力是入口压力大约两倍,而在制度II中可能超过四十次。

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