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引用本文:颜红勤,蒋红樱,成立,等.泵安装位置对一体化泵站水力特性影响CFD研究[J].灌溉排水学报,0,():-.
yanhongqin,蒋红樱,chengli,et al.泵安装位置对一体化泵站水力特性影响CFD研究[J].灌溉排水学报,0,():-.
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泵安装位置对一体化泵站水力特性影响CFD研究
颜红勤1, 蒋红樱1, 成立2, 李尚红3, 王默4, 陈伟2
1.江苏省水利工程科技咨询股份有限公司;2.扬州大学水利科学与工程学院;3.江苏省江都水利工程管理处;4.海南省水利水电勘察设计研究院安徽分院
摘要:
【目的】为探究一体化泵站不同水泵安装位置对其内部流动特性以及水力性能的影响,【方法】基于CFD分析泵安装中心距、2台泵间距等关键位置参数对一体化泵站流动特性影响。【结果】计算结果表明:由于集水池内水流不对称和泵吸水影响,泵I与泵II的水力效率、泵进口流速均匀度有一定差异,其中泵I水力效率较泵II高4%左右,泵I进口流速均匀度较泵II高1%~4%。一体化泵站2台泵中心距的改变对水泵水力效率影响较小,而对泵吸水均匀性影响较大。一体化泵站2台泵间距的改变对水泵的水力效率影响较大,而当泵间距达到一定值后对泵吸入均匀影响较小,但集水池内流态随之更加恶化。【结论】建议安装2台泵的一体化泵站中心距L推荐值0.4 R,泵间距S推荐值0.6 R。研究结果对一体化泵站泵安装位置以及水力性能的改善有一定的指导意义。
关键词:  一体化泵站;安装位置;数值模拟;水力性能
DOI:
分类号:TV131.4
基金项目:国家自然科学基金(51779214);南京市水务科研项目(201803);江苏省水利科技项目(2018025);
Study on the Influence of Pump Installation Location on the Hydraulic Performance of Integrated Pumping Station by CFD
yanhongqin1, 蒋红樱1, chengli2, lishanghong3, wangmo4, chenwei2
1.Hydraulic Engineering Science and Technology Consultation Limited Company of Jiangsu Province;2.College of Hydraulic Science and Engineering,Yangzhou University;3.Jiangsu Jiangdu Water Conservancy Project Management Office;4.Anhui Branch of Hainan Provincial Water Resources and Hydropower Survey and Design Institute
Abstract:
【Background】With the rapid development of urbanization, however, a large amount of urban water is also generated, and urbanization construction is seriously affected, which requires timely delivery by pumping stations. At present, most concrete pump stations are used, but they have the disadvantages of large floor area, long construction period, large investment, labor and material resources, etc. At the same time, it is difficult to move the concrete pump station after it is completed. Integrated pumping station is a relatively new type of pumping station, which is relatively simple to manufacture, install and maintain, with the implementation of the national sponge city strategy, the integrated pump station has been promoted at home and abroad and can be widely used. In addition, the construction of integrated pumping stations can solve certain local land shortages and environmental pollution problems. So far, many domestic scholars have researched integrated pumping stations. Previous studies on integrated pumping stations mainly focused on specific applications in engineering, and there was less research on the impact of submersible axial flow pumps and their installation locations.【Objective】In order to explore the influence of different pump installation positions on the internal flow characteristics and hydraulic performance of the integrated pumping station, take two submersible axial flow pumps arranged symmetrically as the research object, under a certain flow condition, 【Method】the physical model was established by UG software, and the pump body was meshed with ICEM CFD software. The horn inlet, outlet pipe, and collecting tank were meshed with Mesh software.The influence of key position parameters such as the distance between pump installation centers and the distance between two pumps on the flow characteristics of the integrated pumping station was analyzed based on CFD. 【Result】The results showed that the hydraulic efficiency of pump I and pump II was different due to the asymmetry of water flow in the sump and the influence of pump water absorption. The hydraulic efficiency of pump I was about 4% higher than that of pump II, and the uniformity of flow velocity at the inlet of pump I was 1% ~ 4% higher than that of pump II. The change of the center distance of two pumps in the integrated pumping station has little effect on the hydraulic efficiency of the pump, but has great influence on the uniformity of water absorption of the pump. The change of the distance between the two pumps in the integrated pumping station has a great influence on the hydraulic efficiency of the pump, but when the distance reaches a certain value, it has a little influence on the suction uniformity of the pump, but the flow pattern in the sump becomes worse. 【Conclusion】In the context of this integrated pumping station, it is suggested that the recommended center distance L of the integrated pumping station with two pumps is 0.4 R, and the recommended distance S of the pump is 0.6 R. The research results have certain guiding significance for the installation position and hydraulic performance improvement of the integrated pumping station.
Key words:  integrated pumping station; installation position; numerical simulation; hydraulic performance