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Influence of the Pump Control System in the Selection of the Number of Fixed Speed and Variable Speed Drive Pumps in Water Pumping Stations

机译:泵控制系统在水泵站中固定速度和变速驱动泵的选择中的影响

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Proper design of a pumping system requires the use of a pump curve and set-point curve system. Both have to be as close as possible to optimize energy use. This is achieved by control systems in which the type of control (flow or pressure) and the combination between fixed speed drive (FSD) pumps and variable speed drive (VSD) pumps are involved. The objective of this work is to determine the optimal number of FSD and VSD pumps for each flow rate range in order to discuss the classic design of pumping stations and their control systems. For this, a methodology is applied that defines the parametric form of the pump curve, efficiency curve, and set-point curve in relation to the most efficient point. In this way, dimensionless expressions are obtained and the influence of the set-point parameters on the design of the control system can be analyzed. Additionally, the method includes an expression that estimates the performance of the frequency inverter, which is based on the load and pump speed rotation. The application of the methodology to different case studies allows us to question many classic procedures for pumping stations. In summary, it can be concluded that the appropriate number of variable speed pumps for each control system cannot be established in advance but requires an in-depth study of different available options.
机译:适当的泵送系统设计需要使用泵曲线和设定点曲线系统。两者都必须尽可能接近优化能量使用。这是通过控制系统实现的,其中控制系统(流量或压力)和固定速度驱动器(FSD)泵和可变速度驱动器(VSD)泵之间的组合。这项工作的目的是确定每个流量范围的FSD和VSD泵的最佳数量,以便讨论泵站及其控制系统的经典设计。为此,应用方法,其定义泵曲线的参数形式,效率曲线和与最有效点的设定点曲线。以这种方式,可以分析测量无量纲表达,并且可以分析设定点参数对控制系统设计的影响。另外,该方法包括估计频率逆变器的性能的表达,这是基于负载和泵速旋转。方法的应用于不同案例研究允许我们质疑泵站的许多经典程序。总之,可以得出结论,每个控制系统的适当数量的变速泵不能预先建立,但需要对不同可用选项进行深入研究。

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