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Optimal Pipe Sizing and Operation of Multistage Centrifugal Pumps for Water Supply

机译:供水用多级离心泵的最佳管道尺寸和运行

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The operation of multistage pumps transporting water from the source to the delivery point requires balancing of the pressure at the junction of the pump and pipeline according to their characteristics. In this paper, nonlinear optimization models are developed to minimize the total annual cost for selecting the sizes of the pipelines in series and parallel connections of pumps taking water from one or more sources. The models are based on life cycle cost analysis, including replacement cost and escalating energy cost factors. The combined characteristic equations of the pumps in series and parallel connections are obtained using the characteristic equation of a single-stage pump. The constraints are imposed for the pressures at the junctions of the pipeline, with the pumps having different characteristics especially drawing water from different sources. The discharges of the pumps are regulated automatically according to the pressures adjusted at the junctions due to the resistance developed by the optimally designed pipe sizes. The requirements of the desired efficiency also are considered constraints in the models. The applicability of the developed models is illustrated through design examples to obtain optimal discharge and pipe sizes from a single water source for series and parallel connections. Also, the examples are solved to obtain the optimal pipe sizes and discharges from different pumps with the same and different characteristics and drawing water from multiple sources.
机译:将水从水源输送到输送点的多级泵的运行需要根据泵和管道的特性平衡泵和管道交界处的压力。在本文中,开发了非线性优化模型,以使选择从一个或多个水源取水的泵的串联和并联连接的管道尺寸的年度总成本最小化。这些模型基于生命周期成本分析,包括重置成本和不断升级的能源成本因素。使用单级泵的特性方程,可以得到串联和并联的泵的组合特性方程。约束条件是对管道连接处的压力施加的限制,泵具有不同的特性,尤其是从不同来源汲取水。由于最佳设计的管道尺寸所产生的阻力,泵的排放量会根据在连接处调节的压力自动调节。期望效率的要求也被认为是模型中的约束。通过设计示例说明了开发模型的适用性,以从单个水源获得最佳的排水和管道尺寸,以进行串联和并联连接。此外,还解决了这些示例,以获得最佳的管道尺寸和具有相同和不同特性的不同泵的排量,并从多个来源取水。

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