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Increasing Water Pump Station Throughput by Introducing VFD-Based IE4 Class Synchronous Reluctance Motors with Improved Pump Control

机译:通过引入基于VFD的IE4同步磁阻电动机,增加水泵站吞吐量,改进泵控制

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This paper outlines the reduction in energy consumption of motor-driven centrifugal pump systems by optimising key components of the system and controlling these from a system point of view. The latest developments in premium efficiency electric motors with variable frequency drive (VFD) control create an opportunity to retrofit older, motor-driven technology applications such as centrifugal pumping systems in an economically viable manner. A case study utilising a 132kW motor-driven pump installation with a delivery rate of 426m3/hr and servicing a head of 80m is studied, with the results following an energy efficiency upgrade being reported on. Energy efficiency is quantified by employing the International Performance Measurement and Verification Protocol (IPMVP) on the holistic system as opposed to the measurement of individual components as outlined in, amongst other standards for other components, the test methods for determining losses and efficiency of VSD-fed motors IEC 60034-2-3. The IPMVP protocol further provides the parameters for quantifying specific energy consumption improvement of a complete pump system. The pump system supplies water for public use in the northern region of South Africa. An overall energy saving of 36% for the complete pumping system is reported whilst maintaining unchanged water delivery; alternatively water pump station throughput can be increased by 58% without increasing energy consumption.
机译:本文通过优化系统的关键部件并从系统的角度控制这些,概述了电动离心泵系统的能耗降低。具有可变频率驱动器(VFD)控制的优质效率电动机的最新进展创建了一种在经济上可行的方式改装旧的电动机驱动技术应用,如离心泵系统。利用132kW电动机驱动泵安装的案例研究,输送速度为426米 3 /人力资源部分和维修80米的负责人,结果介绍了能效升级的结果。通过在整体系统上采用国际绩效测量和验证议定书(IPMVP)而导致的各个组件的国际绩效测量和验证议定书(IPMVP)量化能效,而其他组件的其他标准,用于确定VSD的损失和效率的试验方法联邦电机IEC 60034-2-3。 IPMVP协议还提供了用于量化完整泵系统的特定能耗改进的参数。泵系统在南非北部地区供水供水。在保持不变的水分送时,报告了完全泵送系统的总节能为36%;或者,水泵站吞吐量可以增加58%而不会增加能量消耗。

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