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Toward enhanced remediation methods using chaotic advection

机译:寻求使用对流的增强补救方法

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摘要

Many remediation activities in the terrestrial subsurface involve the need to recover/emplace distributions of scalar quantities (e.g. dissolved phase concentration and heat) from/in volumes of saturated porous media. These scalars can be targeted by pump-and-treat technologies, where target fluids are abstracted from the porous medium, or by amendment technologies, were specific chemicals or substrates are injected into the porous medium in order to promote beneficial transformations of water quality or mineralogy. Application examples include in situ leaching for precious metals, recovery of dissolved contaminant plumes, or harvesting of heat energy from geothermal reservoirs. While conventional pumping methods work reasonably well, costs associated with maintaining pumping schedules are high and improvements in efficiency would be welcome. In this paper we discuss how transient switching of the pressure at different wells can intimately control subsurface flow, generating a range of "programmed" flows with various beneficial characteristics. Some programs produce chaotic mixing flows which deliver rapid transport, whilst others create encapsulating flows which can confine pollutants for in situ treatment. In a simplified model of an aquifer subject to balanced injection and extraction pumping, chaotic flow topologies have been predicted theoretically and verified experimentally using Hele-Shaw cells. Mixing enhancement due to chaotic advection and kinematic confinement of aquifer volumes are key features of the chaotic dynamics. Understanding these phenomena may form the basis for new efficient technologies for groundwater remediation or amendment.
机译:陆地地下的许多修复活动都涉及从饱和多孔介质中/在一定体积中恢复/取代标量分布(例如,溶解相浓度和热量)的需求。这些标量可以通过抽水处理技术(从多孔介质中提取目标流体)来确定目标,也可以通过修正技术(将特定的化学药品或基质注入到多孔介质中以促进水质或矿物学的有益转化)作为目标。 。应用示例包括就地浸提贵金属,回收溶解的污染物羽流或从地热储层中收集热能。尽管传统的泵送方法工作得相当好,但与维护泵送时间表有关的成本很高,并且效率的提高也值得欢迎。在本文中,我们讨论了如何在不同的井眼处进行瞬时压力转换来密切控制地下流量,从而产生一系列具有各种有益特性的“程序化”流量。一些程序会产生混乱的混合流,从而实现快速运输,而另一些程序会产生封装流,从而可以限制污染物进行原位处理。在经过平衡注入和抽取抽水作用的含水层的简化模型中,理论上已经使用Hele-Shaw池预测了混沌流的拓扑,并进行了实验验证。由于混沌对流和含水层体积的运动限制而引起的混合增强是混沌动力学的关键特征。了解这些现象可能构成用于地下水修复或改良的新有效技术的基础。

著录项

  • 来源
  • 会议地点 Zurich(CH)
  • 作者单位

    CSIRC Land and Water, Private Bag 5, Wembley, Western Australia 6913, Australia rnWestern Australian Geothermal Centre of Excellence, 26 Dick Perry Avenue, Kensington, Western Australia 6151, Australia rnSchool of Earth and Environment, The University of Western A ustralia, 35 Stirling Highway, Crawley, Western Australia 6009, Australia;

    rnCSIRO Materials Science and Engineering, PO Box 56, Highett, Victoria 3190, Australia;

    rnCSIRO Mathematics. Informatics and Statistics, Private Bag 33, South Clayton MDC, Victoria 3169, Australia;

    School of Earth and Environment, The University of Western A ustralia, 35 Stirling Highway, Crawley, Western Australia 6009, Australia;

    Western Australian Geothermal Centre of Excellence, 26 Dick Perry Avenue, Kensington, Western Australia 6151, Australia rnSchool of Earth and Environment, The University of Western A ustralia, 35 Stirling Highway, Crawley, Western Australia 6009, Australia rnCSIRO Earth Science and Resource Engineering, 26 Dick Perrv Avenue, Kensington, Western Australia 6151, Australia;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水资源调2查与水利规划;
  • 关键词

    chaotic advection; pumping; flow; contamination; mixing; confinement;

    机译:混沌对流抽流;污染;混合;禁闭;
  • 入库时间 2022-08-26 14:04:14

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