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首页> 外文期刊>Journal of Water Resources Planning and Management >Optimization Research of Parallel Pump System for Improving Energy Efficiency
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Optimization Research of Parallel Pump System for Improving Energy Efficiency

机译:并联泵系统提高能效的优化研究

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In applications where demand on a water supply system changes frequently and widely, the operating conditions of pumps always deviate from the design conditions, and this error leads to poor efficiency and reliability. For energy saving and longer service life, a parallel pump system was supplied, with the valves and rotational speed controls approximating the system's operating conditions closer to the designed conditions for different consumer loads. The developed optimization model employs a genetic algorithm (GA) aiming at the pumps' maximum efficiency. A theoretical solution based on the Lagrange multiples method was proved. Experiments on two identical pumps were carried out. The presented model gives optimal input data for the pumps' rotational speed and valve positions. The results show that control valves are especially helpful for improvement of a single pump's efficiency and reliability. However, in the system of parallel pumps, throttling losses in the valves caused a significant decline in system efficiency. Therefore, the developed optimization model provides balance between efficiency and reliability by offering the suitable operating mode. (C) 2014 American Society of Civil Engineers.
机译:在对供水系统的需求频繁且广泛变化的应用中,泵的运行条件总是偏离设计条件,并且这种错误导致效率和可靠性下降。为了节省能源并延长使用寿命,我们提供了一个并联泵系统,其阀门和转速控制装置使系统的运行状态接近于针对不同用户负载的设计状态。所开发的优化模型采用遗传算法(GA)来实现泵的最大效率。证明了基于拉格朗日乘数法的理论解。在两个相同的泵上进行了实验。提出的模型为泵的转速和阀门位置提供了最佳的输入数据。结果表明,控制阀对于提高单泵的效率和可靠性特别有帮助。但是,在并联泵系统中,阀门的节流损失导致系统效率大幅下降。因此,开发的优化模型通过提供合适的工作模式在效率和可靠性之间取得平衡。 (C)2014年美国土木工程师学会。

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