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首页> 外文期刊>Journal of Water Resources Planning and Management >Assessing a Response Surface-Based Optimization Approach for Soil Vapor Extraction System Design
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Assessing a Response Surface-Based Optimization Approach for Soil Vapor Extraction System Design

机译:基于响应面的土壤蒸汽提取系统设计优化方法评估

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摘要

This paper presents a study on a response surface-based optimization approach for soil vapor extraction system (SVES) design. The SVES design involves extraction rate determination for a number of wells at fixed locations. Two optimization problems were investigated in this study, including: (1) minimizing total cost while achieving the required cleanup goal; and (2) maximizing percentage of contaminant mass removal under the constraint of total extraction rate. The response surface-based optimization approach integrates a multiphase flow and transport simulator, a genetic algorithm and a response surface method that employs regression analysis for constructing an approximation function of mass removal percentage in terms of extraction rate. A symmetric Latin hypercube design (SLHD) or factorial design plan is employed to obtain a moderate number of design points for different optimization problems. Besides, an iterative optimization procedure is implemented in the approach to enhance the accuracy of the approximated response function by gradually adding more design points to the design space. Results show that the response surface-based optimization approach is superior to a simulation/optimization approach in terms of optimal solution and computation time.
机译:本文提出了一种基于响应面的土壤蒸汽提取系统(SVES)设计优化方法的研究。 SVES设计涉及确定固定位置的许多井的提取速率。本研究调查了两个优化问题,包括:(1)在达到所需清理目标的同时将总成本降至最低; (2)在总提取率的约束下,最大化去除污染物的百分比。基于响应面的优化方法集成了多相流和运输模拟器,遗传算法和响应面方法,该方法采用回归分析来构建提取率方面的质量去除百分比的近似函数。采用对称拉丁超立方体设计(SLHD)或析因设计计划来针对不同的优化问题获得适量的设计点。此外,在该方法中实施了迭代优化程序,以通过向设计空间中逐渐添加更多设计点来提高近似响应函数的精度。结果表明,基于响应面的优化方法在最优解和计算时间方面优于模拟/优化方法。

著录项

  • 来源
  • 作者单位

    Dept. of Environmental Engineering and Science, Feng Chia Univ., 100 Wenhwa Rd., Seatwen, Taichung, Taiwan 40724, ROC;

    Dept. of Environmental Engineering and Science, Feng Chia Univ., 100 Wenhwa Rd., Seatwen, Taichung, Taiwan 40724, ROC;

    Dept. of Aerospace and Systems Engineering, Feng Chia Univ., 100 Wenhwa Rd., Seatwen, Taichung, Taiwan 40724, ROC;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    optimization; soil gas; gas flow; extraction procedures;

    机译:优化;土气气流提取程序;

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