首页> 外文会议>Conference on detection and remediation technologies for mines and minelike targets >Simulation of the environmental fate and transport of chemical signatures from buried land mines
【24h】

Simulation of the environmental fate and transport of chemical signatures from buried land mines

机译:埋藏土地矿山环境命运的仿真与化学签名运输

获取原文

摘要

The fate and transport of chemical signature molecules that emanate from buried landmines is strongly influenced by physical chemical properties and by environmental conditions of the specific chemical compounds. Published data have been evaluated as the input parameters that are used in the simulation of the fate and transport processes. A one- dimensional model developed for screening agricultural pesticides was modified and used to simulate the appearance of a surface flux above a buried landmine and estimate the subsurface total concentration. The physical chemical properties of TNT cause a majority of the mass released to the soil system to be bound to the solid phase soil particles. The majority of the transport occurs in the liquid phase with diffusion and evaporation driven advection of soil water as the primary mechanisms for the flux to the ground surface. The simulations provided herein should only be used for initial conceptual designs of chemical pre-concentration subsystems or complete detection systems. The physical processes modeled required necessary simplifying assumptions to allow for analytical solutions. Emerging numerical simulation tools will soon be available that should provide more realistic estimates that can be used to predict the success of landmine chemical detection surveys based on knowledge of the chemical and soil properties, and environmental conditions where the mines are buried. Additional measurements of the chemical properties in soils are also needed before a fully predictive approach can be confidently applied.
机译:从埋地地雷散发出来的化学签名分子的命运和运输受到物理化学性质的强烈影响,并通过特定化学化合物的环境条件影响。已被评估为用于模拟命运和传输过程中使用的输入参数。改变了用于筛选农业农药的一维模型,并用于模拟掩埋地区的表面通量的外观,并估计地下总浓度。 TNT的物理化学性质导致释放到土壤系统的大部分肿块,以与固相土壤颗粒结合。大部分运输在液相中发生,具有扩散和蒸发驱动土壤水的平流作为焊剂到地面的主要​​机制。本文提供的模拟应该仅用于化学预浓缩子系统或完整检测系统的初始概念设计。所需的物理过程所需的必要性简化假设以允许分析解决方案。新兴数值模拟工具将很快提供,应提供更现实的估计,可用于预测地雷化学检测调查的成功基于化学和土壤性质的知识,以及埋地矿井的环境条件。在可以自信地应用完全预测方法之前,还需要额外测量土壤中的化学性质。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号