PUMPING PRESSURE AND FLOW RATE RELATIONSHIP TO REDUCE ENERGY CONSUMPTION IN IRRIGATION SYSTEMS

E. Chiorescu
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Abstract

In the context of the current energy crisis, electricity consumption, especially by large consumers, must be reduced, rationally, without affecting the quality of services provided. Pressure pumping stations (PPS) in irrigation systems are usually equipped with 4 to 8 electric pumping sets with an installed power that can even exceed 1 MW. Since the PPS serving the irrigation plots must work mainly on demand, the required flow rate in the network can vary widely even during each day of the irrigation period. Also, due to the dependence of the pressure loss on the flow carried in the pipe network, this dependence is usually represented by an increasing quadratic function, and the variation of the required flow also leads to a variation, generally significant, of the pressure required from the PPS. To ensure the necessary flow, the PPS are automated with Supervisory control and data acquisition (SCADA) systems, which optimally control the configuration of the electric pumps in operation and their speed. This article presents a mathematical model and algorithm that facilitate the determination of the correlation between the pressure and flow required from the PPS ((p-Q)C), rendered by an increasing function. The implementation of (p-Q)C in the SCADA system software at PPS 2 in the Trifești-Sculeni irrigation system, in the eastern part of Romania, determined a reduction of energy consumption by up to 16%.
水泵压力与流量关系降低灌溉系统能耗
在当前能源危机的背景下,必须在不影响所提供服务质量的前提下,合理地减少用电量,尤其是用电大户的用电量。灌溉系统中的压力抽水站通常配备4至8台电动抽水机,装机功率甚至可超过1兆瓦。由于为灌溉小区服务的PPS必须主要按需工作,因此即使在灌溉期间的每一天,网络所需的流量也会有很大变化。此外,由于压力损失依赖于管网中携带的流量,这种依赖关系通常以递增的二次函数表示,并且所需流量的变化也导致PPS所需压力的变化,通常是显著的变化。为了确保必要的流量,PPS采用了自动化的监控和数据采集(SCADA)系统,该系统可以最佳地控制运行中的电动泵的配置和速度。本文提出了一个数学模型和算法,便于确定PPS ((p-Q)C)所需的压力和流量之间的相关性,以递增函数表示。在罗马尼亚东部Trifești-Sculeni灌溉系统的PPS 2的SCADA系统软件中实施(p-Q)C,确定将能源消耗减少高达16%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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