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RESEARCH ON THE APPLICATION OF GENETIC ALGORITHM IN LONG-DISTANCE SOLID-LIQUID TRANSPORTATION PUMPING SYSTEMS

机译:遗传算法在长距离固液输送系统中的应用研究

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This paper treats the operation optimization for the LQS two-phase flow pump dredging system including three parallel pumps and two serial pumps by using the genetic algorithm; The Yellow River is well known for its large concentration sand-laden-water. In order to stop the increasing river bed by the depositing sand, a bank-strengthening project has been put into action in Shangdong province since 1998. In the project, very large amount of the Yellow River sand at river bed is dredged up and pumped to several miles away to strengthen the back side of the river bank. The LQS two-phase flow pump dredging system, which is a recently developed apparatus for this project, is applied in the sand transportation system. The main target of the present work is to conduct the operation optimization computation for the LQS two-phase flow pump dredging system by using the genetic algorithm. The genetic algorithm introduces the mechanism of the heredity and selection by the nature into Mathematics, and presents a new optimization algorithm. Based on the operation characteristics of the LQS dredging system, the mathematic models with hydraulic constraints were established, and the numerical expression of genetic algorithm for operation optimization was given. Selecting the minimum power consumption for pumping the same amount of sand as the objective function and making additive multiple constraints, we developed a kind of new genetic algorithm, where the searching range is reduced gradually so as to strengthen the searching ability for the algorithm. The computation results indicate that by applying the modified genetic algorithm for the global optimal solution, the present operation saved much more power than the previous one. The developed method has been applied in the actual project, and verified to be very effective.
机译:本文采用遗传算法对包括三个并联泵和两个串联泵的LQS两相流疏dr系统的运行优化进行了研究。黄河以其高浓度的含沙水而闻名。为了阻止沉积沙增加河床,1998年以来,山东省开始实施一项银行加固工程。该工程中,河床的大量黄河沙被疏ed并抽至几英里远的地方可以加固河岸的背面。 LQS两相流泵疏ed系统是该项目的最新开发设备,被应用在输沙系统中。本工作的主要目标是利用遗传算法对LQS两相流泵疏ed系统进行运行优化计算。遗传算法将遗传和自然选择的机理引入数学,提出了一种新的优化算法。根据LQS疏ed系统的运行特点,建立了具有水力约束的数学模型,给出了用于优化运行的遗传算法的数值表达式。通过选择与目标函数等量的输沙量最小的能耗并加成多重约束,开发了一种新的遗传算法,其搜索范围逐渐减小,以增强算法的搜索能力。计算结果表明,通过将改进的遗传算法应用于全局最优解,当前操作比以前的操作节省了更多的电能。所开发的方法已经在实际项目中应用,并被证明是非常有效的。

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