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首页> 外文期刊>American journal of engineering and applied sciences >Applying Simulated Annealing For Optimal Operation of Multi-Reservoir Systems | Science Publications
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Applying Simulated Annealing For Optimal Operation of Multi-Reservoir Systems | Science Publications

机译:模拟退火在多储层系统优化运行中的应用科学出版物

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摘要

> The need to optimize the operation of water reservoirs is an issue that is becoming increasingly a concern for water resources planners in developing countries. This issue particularly becomes more significant in large systems with multiple reservoirs where operation of one reservoir has an impact on the others. In other word, the set of reservoirs in these systems act like a united series and require specific methods to handle various modeling issues. Problem statement: Sirvan River basin in west of Iran, standing in fifth order in respect of discharge, is an example of such a complex system. The project of water transfer from western tropical regions which is one of the large-scale projects in water resources management in Middle East, consists of a number of reservoirs and transfer systems. The matter of optimum operation of such a collection is one of the complicated and outstanding issues in water resources management. Approach: It was found that, due to increasing decision-making variables, conventional models used in optimizing water resources systems were not any longer capable of obtaining a desired solution, either because of low precision or time constraints. Hence, the intelligent random research approach "Simulated Annealing" has been used which in recent, decades has revealed appropriate results in solving major problems. Results: The results of this research indicate that the annealing approach is capable of solving such complex problems in water resources management with good precision in a reasonable period of time. Conclusions/Recommendations: The results were also compared with outputs of MODSIM which is a widely known model for solving complex water resources systems problems and benefits from "out of kilter"algorithm. The results indicate SA as a very robust and effective model in optimization of large real multi-reservoir systems.
机译: >优化水库运行的需求已成为发展中国家水资源规划者日益关注的一个问题。在具有多个油箱的大型系统中,此问题尤为严重,其中一个油箱的运行会影响其他油箱。换句话说,这些系统中的储集层的作用就像一个统一的系列,需要特定的方法来处理各种建模问题。 问题陈述:伊朗西部的Sirvan河流域在排放方面排名第五,是这种复杂系统的一个例子。西部热带地区的调水项目是中东水资源管理的大型项目之一,由许多水库和调水系统组成。这种收集的最佳运行问题是水资源管理中复杂而突出的问题之一。方法:人们发现,由于决策变量的增加,用于优化水量的常规模型由于精度低或时间限制,资源系统不再能够获得所需的解决方案。因此,已经使用了智能随机研究方法“模拟退火”,该方法最近几十年来已揭示出解决重大问题的适当结果。 结果:研究结果表明,退火方法能够在合理的时间内,以高精度解决水资源管理中的此类复杂问题。 结论/建议:还将结果与MODSIM的输出进行了比较。MODSIM是解决复杂的水资源系统问题和受益于“摆脱困境”算法的一种众所周知的模型。结果表明,SA是优化大型实际多储层系统的一种非常强大且有效的模型。

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