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Flow throttling in surge tanks using porous structures

机译:使用多孔结构流动在电涌罐中节流

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Well-designed local loss throttles at inlet of pressurized and open surge tanks are beneficial in terms of reducing tank size and faster dampening of pressure oscillation. This research investigates porous structures experimentally as a possibility to increase the head loss at surge tanks throttle. Both scenarios of valve closure from upstream and downstream of the pipeline are considered to model pump trip and load rejection in hydropower plants. Performance of porous structure is examined and compared with the case of using simple and differential orifice throttles. Layered porous media is also studied to examine feasibility of achieving variable throttling effect for inflow and outflow from the surge tank. Results confirm considerable advantages of porous throttling over customary orifice throttling for faster transient dampening. This is due to lower head loss coefficient of porous throttle in high velocity flow and higher head loss coefficient in low velocity flow in comparison with the orifice throttle. In a layered porous structure, flow from smaller to larger spheres showed to have an average of 15% lower head loss than the flow from larger to smaller spheres. The Reynolds similarity of the porous spheres is also shown to be governing parameter in up and downscaling of the modeling results in practice.
机译:在加压和开孔罐入口处设计的精心设计的局部损失节流在减少罐尺寸和更快的压力振荡抑制方面是有益的。本研究通过实验研究了多孔结构,以增加电涌坦克油门的头部损耗。从管道上游和下游的阀门闭合的这两种情况都被认为是模拟水电站中的泵跳闸和负载排斥。检查多孔结构的性能,并与使用简单和差动孔口节流的情况进行比较。还研究了层状多孔介质,以检查实现可变节流效果的可行性,用于从浪涌罐中流入和流出。结果确认多孔节流过常规孔口限制的相当优势,以便更快的瞬态阻尼。这是由于与孔口油门相比,高速流动中的多孔节流阀的较低的磁通节流系数和低速流动的更高的头部损失系数。在层状多孔结构中,从较小到较大的球体的流动显示为比从较大到更小的球体的流量的平均下的磁头损失为15%。多孔球体的雷诺相似性也被认为是在实践中的建模结果的上升和缩小的控制参数。

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