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Modeling parametric uncertainty in optimal open channel design using FORM-PGSL coupled approach

机译:使用FORM-PGSL耦合方法对最佳明渠设计中的参数不确定性建模

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摘要

Optimal design of artificial open channels is essential for the planning and management of irrigation projects. In this paper a modified formulation is presented for the comprehensive design of open channels considering the seepage loss, evaporation loss and land acquisition cost along with the lining and excavation cost. The resulting formulation is solved using a recent meta-heuristic optimization technique namely probabilistic global search Lausanne (PGSL). The uncertainty associated with channel design parameter may lead to the failure of canals (channels). The parametric uncertainty in open channel design is modeled using first order reliability method (FORM). A bi-objective optimization model is presented in the study which minimizes the cost and minimizes the probability of overtopping considering a probabilistic cost function as the objective function. A new approach is proposed to solve the model in a meta-heuristic environment following PGSL as the solution method. Also a chance constrained optimization model which considers overtopping probability constraint and channel capacity constraint simultaneously along with the objective of minimization of cost is propounded and solved using PGSL. The solutions obtained using coupled FORM-PGSL approach is encouraging and the method can be used for optimal and reliable design of artificial open channels.
机译:人工明渠的优化设计对于灌溉项目的规划和管理至关重要。本文提出了一种改进的公式,用于明渠的综合设计,其中考虑了渗流损失,蒸发损失和征地成本以及衬砌和开挖成本。使用最新的元启发式优化技术(即概率全局搜索洛桑(PGSL))可以解决生成的公式。与渠道设计参数相关的不确定性可能导致渠道(渠道)的故障。明渠设计中的参数不确定性使用一阶可靠性方法(FORM)进行建模。在研究中提出了一个双目标优化模型,该模型将概率成本函数作为目标函数,从而最小化了成本,并最大程度地降低了超标的可能性。提出了一种新的方法,以PGSL作为求解方法在元启发式环境中求解模型。提出并解决了机会约束优化模型,该模型同时考虑了超越概率约束和信道容量约束以及最小化成本的目标。使用FORM-PGSL耦合方法获得的解决方案令人鼓舞,该方法可用于人工明渠的优化和可靠设计。

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