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CHARACTERISTICS OF SWIRL ANGLE IN PUMP INTAKE FLOW NEAR THE MINIMUM INLET SUBMERGENCE

机译:最小进水口附近水泵进水流的旋流角特性

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Swirling flow in pump sump intake has been the subject of discussion for the past decades due to the detrimental effects brought about by its existence. Among the effects of swirling flow are reduced pump efficiency, cavitation, excessive vibration and load imbalance at the pump impeller which are caused by hydraulic problems associated to swirling flow such as swirls and vortices. One of the remedial measures for preventing such occasion is by keeping the pump inlet submerged above a defined value known as the minimum inlet submergence. It is the minimum submergence required to reduce the probability of the occurrence of free surface vortices. However, this requirement may not be fulfilled in some situations due to on site conditions or operational restrictions. In this paper, an experimental study was conducted to investigate the characteristics of swirl angle in the pump intake flow when the pump inlet is submerged near the value of minimum inlet submergence. The ratio of pump submergence to the minimum submergence was varied between 0.8 to 1.2 with constant inlet Froude Number which referred to as submergence ratio. The strength of the swirl in the intake flow was determined by measuring the swirl angle which was accomplished using a swirl meter attached in the suction pipe. Measurements using Acoustic Doppler Velocimeter (ADV) was performed to capture the velocity profile in the intake sump. The swirl angle distribution across the range of submergence ratios was dominated by a subsurface vortex formed at the sump floor. As soon as the submergence was reduced below the minimum submergence, a free surface vortex emerged near the pump inlet and brought a swirl retardation effect to the swirl meter rotation resulting in a bigger fluctuation of the swirl meter reading. An anti vortex device (AVD) called the floor splitter commonly used to reduce vorticity at pump inlet was installed and its effect on the reduction of swirls and vortices was evaluated.
机译:在过去的几十年里,由于水泵进水口的存在带来的不利影响,旋流一直是人们讨论的主题。旋流的影响包括泵效率降低,气蚀,泵叶轮过度振动和负载不平衡,这些是由与旋流相关的液压问题(例如旋涡和涡流)引起的。防止这种情况的补救措施之一是通过将泵入口浸没在一个称为最小入口浸没的限定值之上。这是减少自由表面涡旋发生概率所需的最小浸入量。但是,由于现场条件或操作限制,在某些情况下可能无法满足此要求。本文进行了一项实验研究,研究了当泵入口被淹没在最小入口淹没值附近时,泵吸入流中的涡流角特性。泵的浸入度与最小浸入度之比在0.8到1.2之间变化,入口弗劳德数恒定,这称为浸入率。通过测量涡流角来确定进气流中的涡流强度,该涡流角是通过使用安装在吸管中的涡流计实现的。使用声学多普勒测速仪(ADV)进行测量以捕获进气槽中的速度曲线。整个浸没率范围内的旋流角分布主要由在集水坑底部形成的地下涡旋支配。一旦浸入量减少到最小浸入量以下,在泵入口附近就会出现自由表面涡旋,并给旋流计旋转带来旋流滞后效应,从而导致旋流计读数出现较大波动。安装了通常用于降低泵入口涡度的防涡流装置(AVD),称为地板分离器,并评估了其对减少涡流和涡旋的影响。

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