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Effects of the Air Volume in the Air Chamber on the Performance of Water Hammer Pump System

机译:气室中的风量对水锤泵系统性能的影响

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Recently, as global-scale problems, such as global warming and energy depletion, have attracted attention, the importance of future environmental preservation has been emphasized worldwide, and various measures have been proposed and implemented. This study focuses on water hammer pumps that can effectively use the water hammer phenomenon and allow fluid transport without drive sources, such as electric motors. An understanding of operating conditions of water hammer pumps and an evaluation of their basic hydrodynamic characteristics are significant for determining whether they can be widely used as an energy-saving device in the future. However, conventional studies have not described the pump performance in terms of pump head and flow rate, common measures indicating the performance of pumps. As a first stage for the understanding of water hammer pump performance in comparison to the characteristics of typical turbo pumps, the previous study focused on understanding the basic hydrodynamic characteristics of water hammer pumps and experimentally examined how the hydrodynamic characteristics were affected by the inner diameters of the drive and lift pipes and the angle of the drive pipe. This paper suggests the effect of the air volume in the air chamber that affects the hydrodynamic characteristics and operating conditions of the water hammer pump.
机译:近来,随着诸如全球变暖和能量消耗之类的全球性问题引起关注,全世界范围内都强调了未来环境保护的重要性,并且已经提出并实施了各种措施。这项研究的重点是可以有效利用水锤现象并允许在没有驱动源(例如电动机)的情况下进行流体输送的水锤泵。了解水锤泵的工作条件并评估其基本水动力特性,对于确定其在将来是否可以广泛用作节能装置具有重要意义。但是,常规研究尚未从泵压头和流量方面描述泵的性能,常用的指标表明泵的性能。作为了解水锤泵性能与典型涡轮泵特性相比的第一阶段,先前的研究着重于了解水锤泵的基本流体力学特性,并通过实验研究了流体力学特性如何受到内径的影响。驱动和提升管以及驱动管的角度。本文提出了气室中空气量的影响,该影响会影响水锤泵的流体力学特性和工作条件。

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