Zhang Xiaowen, Tang Fangping
College of Hydraulic Science and Engineering, Yangzhou University, Yangzhou, 225009, China.
Sci Rep. 2022 May 23;12(1):8667. doi: 10.1038/s41598-022-12667-7.
The use of existing large pumping station equipment for upstream residual water reverse power generation is an unrealized yet valuable renewable energy project. At present, some large axial flow pump stations have begun to perform reverse power generation operations; however, related research has not yet started. In this paper, entropy generation theory is applied to a large-scale axial flow pump station system in reverse power generation operations, and the entropy generation method is used to investigate the accurate size and distribution of the mechanical energy dissipation of each component under different flow conditions. First, the energy characteristics and pressure fluctuations in the pump of the large axial flow pump station system are experimentally tested under reverse power generation conditions. The reliability of the entropy generation numerical calculation is verified both experimentally and theoretically. Then, the proportion of each component in the total entropy production is compared to illustrate how each component contributes to the total entropy production of the system and how this contribution changes as operating conditions vary. Then, the type of entropy production of each component is accurately determined under different flow conditions, revealing the changes in the proportions of the different types of entropy production of each component. Finally, components with large mechanical energy dissipations are selected, and the changes and causes of the energy dissipation distribution of the components are thoroughly analysed under different flow conditions. The research results can aid in better understanding the energy dissipation mechanism of large axial flow pump systems in reverse power generation operations.
利用现有大型泵站设备进行上游余水反向发电是一个尚未实现但极具价值的可再生能源项目。目前,一些大型轴流泵站已开始进行反向发电运行;然而,相关研究尚未展开。本文将熵产理论应用于大型轴流泵站系统的反向发电运行中,采用熵产方法研究不同流量工况下各部件机械能耗散的精确大小及分布。首先,对大型轴流泵站系统水泵在反向发电工况下的能量特性和压力脉动进行试验测试,从实验和理论两方面验证熵产数值计算的可靠性。然后,比较各部件在总熵产中的占比,以说明各部件对系统总熵产的贡献以及该贡献随运行工况的变化情况。接着,准确确定不同流量工况下各部件的熵产类型,揭示各部件不同类型熵产占比的变化规律。最后,选取机械能耗散较大的部件,深入分析不同流量工况下部件能量耗散分布的变化及原因。研究结果有助于更好地理解大型轴流泵系统反向发电运行时的能量耗散机理。