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The Integrated Approach of Simulation and Optimization in Determining the Optimum Dimensions of Canal for Seepage Control

机译:确定渗流控制渠道最优尺寸的仿真与优化集成方法

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The appropriate management of water resources in the world is a policy that can be used in the line of optimum water consumption. One of these management instructions is optimum designing of canal sections for transferring water in irrigation networks. Since water losses in an irrigation network include seepage and evaporation losses, and regarding that the seepage losses depends on the geometry of canal and evaporation losses depends on the free water level, the designing of canal section will be done with the minimum water loss which include minimizing the seepage and evaporation from the canal under uniform flow. Until now, the optimum designing has been done based on relations some of which have high errors in exact estimation of seepage value, so it is necessary to apply a more exact method in optimization process for estimating the seepage value in canal. In this study, the canal seepage value for different states have been modeled by using SEEP/W software package, then the most appropriate soft model have been extracted between the input data (the geometry of canal and the technical characteristics of the bed soil) and output data (seepage). The extracted soft model had been compared to other experimental relations of seepage estimation, and beside confirming its high exactness in estimating seepage compared to other methods, it also have been used as a more efficient method for estimating seepage in optimization process with the aim of minimizing water losses in canals. In the proposed structure, Manning equation has been introduced as the major constraint, allowed minimum velocity, and Froude number as the minor constraint of the problem. The results of this study have been presented in form of dimensionless diagrams that made it possible to design the canal's dimensions simply. Investigating the results of present study and previously conduced researches indicate the significant changes of canal's optimum dimension in the present study compared to other researches due to using the proposed method for estimating the seepage.
机译:在世界范围内对水资源进行适当的管理是一项可用于最佳用水量的政策。这些管理说明之一是优化灌溉网络中输水渠道的设计。由于灌溉网络中的水损失包括渗漏和蒸发损失,并且考虑到渗漏损失取决于渠道的几何形状,而蒸发损失取决于自由水位,因此将以最小的水损失来完成渠段的设计,其中包括最小化在均匀流动下渠道的渗漏和蒸发。迄今为止,已经基于关系进行了优化设计,其中一些关系在精确估计渗水值时存在较高的误差,因此有必要在优化过程中应用更精确的方法来估计渠道的渗水值。在这项研究中,使用SEEP / W软件包对不同状态的渠道渗流值进行建模,然后在输入数据(渠道的几何形状和床土的技术特征)之间提取最合适的软模型。输出数据(见下文)。将提取的软模型与渗流估算的其他实验关系进行了比较,除证实其与其他方法相比在估算渗流方面的高精度外,它还被用作优化过程中估算渗流的一种更有效的方法,目的是最大程度地减少渗流。运河失水。在所提出的结构中,曼宁方程被引入为主要约束,允许最小速度,弗洛德数为问题的次要约束。这项研究的结果以无因次图的形式呈现,这使得简单设计运河的尺度成为可能。调查本研究和先前进行的研究的结果表明,由于采用了所提出的估算渗流方法,因此与其他研究相比,本研究中渠道的最佳尺寸发生了显着变化。

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