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轻质非水相液体迁移规律及层析电阻率响应特征

陈世仲 魏庆航 王金娜 刘文辉 索奎 赵贵章 杨璐琦

水文地质工程地质2026,Vol.53Issue(3):84-95,12.
水文地质工程地质2026,Vol.53Issue(3):84-95,12.DOI:10.16030/j.heg.202512049

轻质非水相液体迁移规律及层析电阻率响应特征

Migration patterns of light non-aqueous liquids and tomographic resistivity response characteristics under fluctuating water levels

陈世仲 1魏庆航 1王金娜 2刘文辉 1索奎 1赵贵章 1杨璐琦1

作者信息

  • 1. 华北水利水电大学地球科学与工程学院,河南郑州 450000
  • 2. 河南省地质局矿产资源勘查中心,河南郑州 450000
  • 折叠

摘要

Abstract

Light non-aqueous phase liquid(LNAPL)contamination poses persistent challenges in groundwater systems,particularly under complex hydrodynamic conditions.However,the coupled dynamics between LNAPL migration and groundwater-level fluctuations,as well as resistivity response characteristics,remain insufficiently understood.This study investigated LNAPL migration behavior and associated resistivity responses under three representative hydrogeological conditions:unsaturated media,constant groundwater level,and fluctuating groundwater levels.Laboratory sandbox experiments were conducted using acrylic tanks filled with fine sand,with No.0 diesel serving as a representative LNAPL.High-density electrical resistivity tomography(ERT)was employed to monitor LNAPL migration,and time-lapse inversion was performed using ResIPy software to quantify spatiotemporal resistivity variations.Under unsaturated conditions,LNAPL migrated primarily in the vertical direction,with a maximum migration rate of 5.2 cm/h.After migration stabilized,the maximum changes in resistivity between the top and bottom of the medium were 317.84%and 430.35%,respectively.Under constant groundwater levels,LNAPL accumulated at the oil-water interface to form a floating oil slick due to its lower density than water,with a maximum migration rate of 1.1 cm/h.After stabilization,the maximum changes in resistivity at the top and bottom of the medium were 285.42%and 451.54%,respectively.Fluctuations in the groundwater level promoted the lateral diffusion of LNAPL while altering the thickness of the oil layer and the morphological characteristics of the high-resistance lens.Water level fluctuations influenced LNAPL migration by altering the medium's moisture content and buoyancy effects,while the accumulation of LNAPL altered the liquid phase pressure within the sand box,thereby affecting the groundwater level.The findings of this study provide valuable guidance for the precise investigation and development of remediation plans for sites contaminated with light non-aqueous phase liquids.

关键词

轻质非水相液体/层析成像/电阻率/时移反演/水位波动

Key words

LNAPL/tomographic resistivity imaging/resistivity/time-lapse inversion/water level fluctuation

分类

天文与地球科学

引用本文复制引用

陈世仲,魏庆航,王金娜,刘文辉,索奎,赵贵章,杨璐琦..轻质非水相液体迁移规律及层析电阻率响应特征[J].水文地质工程地质,2026,53(3):84-95,12.

基金项目

河南省自然科学基金项目(232300420442) (232300420442)

河南省高等学校重点科研项目计划(24A170020) (24A170020)

水文地质工程地质

1000-3665

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