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Information effect on remediation design of contaminated aquifers using the pump and treat method

机译:信息对采用泵和处理方法的受污染含水层修复设计的影响

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We examine the effect of uncertainty due to limited information on the remediation design of a contaminated aquifer using the pump and treat method. The hydraulic conductivity and contaminant concentration distributions for a fictitious contaminated aquifer are generated assuming a limited number of sampling locations. Stochastic optimization with multiple realizations is used to account for aquifer uncertainty. The optimization process involves a genetic algorithm (GA). As the number of realizations increases, a greater extraction rate and more wells are needed. There was a total cost increase, but the optimal remediation designs became more reliable. Stochastic optimization analysis also determines the locations for extraction wells, the variation in extraction rates as a function of the change of well locations, and the reliability of the optimal designs. The number of realizations (stack number) that caused the design factors to converge could be determined. Effective stochastic optimization may be achieved by reducing computational resources. An increase in the variability of the conductivity distribution requires more extraction wells. Information about potential extraction wells can be used to prevent failure of the remediation task.
机译:我们使用泵和处理方法检查由于受污染的含水层的修复设计方面的信息有限而导致的不确定性的影响。假定采样位置数量有限,将生成虚拟污染含水层的水力传导率和污染物浓度分布。具有多种实现的随机优化用于解决含水层的不确定性。优化过程涉及遗传算法(GA)。随着实现数量的增加,需要更高的提取率和更多的井。总成本增加了,但是最佳补救设计变得更加可靠。随机优化分析还确定提取井的位置,提取率随井位置变化而变化的变化以及最佳设计的可靠性。可以确定导致设计因子收敛的实现数量(堆栈数量)。有效的随机优化可以通过减少计算资源来实现。电导率分布变化性的增加需要更多的提取井。有关潜在提取井的信息可用于防止修复任务失败。

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