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Development of a new methodology to obtain the characteristic pump curves that minimize the total cost at pumping stations.

机译:开发一种新的方法来获得特征性的泵曲线,从而将泵站的总成本降至最低。

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摘要

In this paper, a new methodology to obtain the optimal characteristic and efficiency curves (Q-H and Q- eta ) at pumping stations is presented. The design flow, the design pressure head, and the discharge distribution throughout the irrigation season are the three main parameters to design pumping stations. The purpose of this study is to develop a decision support tool to obtain the theoretical characteristic and efficiency curves of the pumps, the number of pumps, and the number of frequency speed drives that minimize the total cost (investment and operation costs) for a specific pumping station demand (design flow, pressure head, and frequency of the discharges). The results obtained in this paper make evident that the optimal shape (slope) of the Q-H curve varies depending on the discharge distribution throughout the irrigation season, mainly when there are few pumps installed at the pumping station. When there is a high frequency of low discharges, the desired slope of the Q-H curve is higher. In cases when the discharge distribution is unknown, increasing the number of pumps ensures high energy efficiency. When installing a pump with an optimal characteristic curve, it is not necessary to increase the number of frequency speed drives.
机译:本文提出了一种在泵站获得最佳特性曲线和效率曲线(Q-H和Q-eta)的新方法。设计流量,设计压头和整个灌溉季节的流量分布是设计泵站的三个主要参数。本研究的目的是开发一种决策支持工具,以获取泵的理论特性和效率曲线,泵的数量以及频率驱动器的数量,从而将特定成本的总成本(投资和运营成本)降至最低泵站需求(设计流量,压头和排放频率)。本文获得的结果表明,Q-H曲线的最佳形状(斜率)取决于整个灌溉季节的流量分布,主要是在泵站安装的泵很少时。低放电频率较高时,Q-H曲线的期望斜率会更高。在排放分布未知的情况下,增加泵的数量可确保高能效。当安装具有最佳特性曲线的泵时,无需增加变频器的数量。

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