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Increasing Energy Efficiency in Water Collection Systems by Submersible PMSM Well Pumps

机译:通过潜水PMSM井泵提高水收集系统中的能效

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摘要

Water collection based on groundwater abstraction has a high energy consumption that depends primarily on the operation and performance of submersible well pumps. The fact of the matter is that these machines still work with a global energy efficiency of less than 50%, and further investigations of the energy aspects in well pumps are needed. The present study introduces measures to increase the global efficiency of submersible well pumps linked to electrical energy savings. Common submersible pumps with asynchronous motors (ASMs) were compared with innovative permanent magnet synchronous motor (PMSM) technology in real well fields in Berlin and Hamburg waterworks. This study confirms that PMSM pumps showed a 6.8%-points higher global efficiency compared to ASM pumps at optimal working points. The investigation of the impact of well field operation on local pump efficiency offers an additional increase in the global efficiency. In this context, the influence of variable speed control on the global efficiency and the energy consumption was analyzed. Global efficiencies of over 70%, and potential energy savings of up to 20%, were determined for the speed-controlled PMSM pump. This offers water suppliers new incentives to optimize their water collection systems for less energy consumption.
机译:基于地下水抽象的水收集具有高能耗,主要取决于潜水井泵的操作和性能。问题的事实是,这些机器仍然具有小于50%的全球能量效率,并且需要进一步调查井泵的能量方面。本研究介绍了增加与电能节约相关的潜水井泵的全球效率的措施。将具有异步电动机(ASMS)的普通潜水泵与柏林和汉堡水厂的实际井场中的创新永磁同步电动机(PMSM)技术进行比较。本研究证实,与最佳工作点的ASM泵相比,PMSM泵显示出6.8%的全球效率。对井场操作对局部泵效率的影响的调查提供了全球效率的额外增加。在这种情况下,分析了变速控制对全球效率和能量消耗的影响。为速度控制的PMSM泵确定全球超过70%的效率,高达20%的潜在节能。这提供了水供应商的新动作,以优化其水收集系统,以减少能源消耗。

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