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基于地下电学特征变化对垃圾场有害液体渗漏监测的研究试验

李学山, 肖波, 郑文棠, 董龙飞, 刘伟

李学山, 肖波, 郑文棠, 董龙飞, 刘伟. 基于地下电学特征变化对垃圾场有害液体渗漏监测的研究试验[J]. 南方能源建设, 2018, 5(S1): 209-214. DOI: 10.16516/j.gedi.issn2095-8676.2018.S1.038
引用本文: 李学山, 肖波, 郑文棠, 董龙飞, 刘伟. 基于地下电学特征变化对垃圾场有害液体渗漏监测的研究试验[J]. 南方能源建设, 2018, 5(S1): 209-214. DOI: 10.16516/j.gedi.issn2095-8676.2018.S1.038
LI Xueshan, XIAO Bo, ZHENG Wentang, DONG Longfei, LIU Wei. Leakage Pollution Monitoring Research of Municipal Landfill Based on the Resistivity Method[J]. SOUTHERN ENERGY CONSTRUCTION, 2018, 5(S1): 209-214. DOI: 10.16516/j.gedi.issn2095-8676.2018.S1.038
Citation: LI Xueshan, XIAO Bo, ZHENG Wentang, DONG Longfei, LIU Wei. Leakage Pollution Monitoring Research of Municipal Landfill Based on the Resistivity Method[J]. SOUTHERN ENERGY CONSTRUCTION, 2018, 5(S1): 209-214. DOI: 10.16516/j.gedi.issn2095-8676.2018.S1.038
李学山, 肖波, 郑文棠, 董龙飞, 刘伟. 基于地下电学特征变化对垃圾场有害液体渗漏监测的研究试验[J]. 南方能源建设, 2018, 5(S1): 209-214. CSTR: 32391.14.j.gedi.issn2095-8676.2018.S1.038
引用本文: 李学山, 肖波, 郑文棠, 董龙飞, 刘伟. 基于地下电学特征变化对垃圾场有害液体渗漏监测的研究试验[J]. 南方能源建设, 2018, 5(S1): 209-214. CSTR: 32391.14.j.gedi.issn2095-8676.2018.S1.038
LI Xueshan, XIAO Bo, ZHENG Wentang, DONG Longfei, LIU Wei. Leakage Pollution Monitoring Research of Municipal Landfill Based on the Resistivity Method[J]. SOUTHERN ENERGY CONSTRUCTION, 2018, 5(S1): 209-214. CSTR: 32391.14.j.gedi.issn2095-8676.2018.S1.038
Citation: LI Xueshan, XIAO Bo, ZHENG Wentang, DONG Longfei, LIU Wei. Leakage Pollution Monitoring Research of Municipal Landfill Based on the Resistivity Method[J]. SOUTHERN ENERGY CONSTRUCTION, 2018, 5(S1): 209-214. CSTR: 32391.14.j.gedi.issn2095-8676.2018.S1.038

基于地下电学特征变化对垃圾场有害液体渗漏监测的研究试验

基金项目: 

中国能建广东院科技项目"土壤修复"(EX03791W)

广东省应用型研发重大专项(2016B020242006)

广州市科创委产学研协同创新重大专项(201704020200)。

详细信息
    作者简介:

    李学山 1982-,男,河南新乡人,高级工程师,硕士,主要从事核电、大型电厂、海上风电、高电压等级电网等项目的岩土工程勘察及项目管理工作(e-mail)lixueshan@gedi.com.cn。

    通讯作者:

    肖波(通信作者)1984-,男,湖南邵阳人,高级工程师,硕士,主要从事电力勘察设计工作(e-mail)xiaobo@gedi.com.cn。

  • 中图分类号: P631.3;X83

Leakage Pollution Monitoring Research of Municipal Landfill Based on the Resistivity MethodEn

  • 摘要: [目的] 传统的环境地球物理的方法是垃圾场有害液体渗漏监测的主要手段之一,但该类方法存在监测范围小,灵活性差、时间间隔长、监测精度差等缺点。为了改善上述情况,研发了一种新型的分布式电法系统来监测有害液体的渗漏。 [方法] 从分布式电法系统原理入手,通过硬件、软件设计及实现,对设备系统进行研发及试验。该新型分布式电法系统采取一次性布极,全通道、多极距的数据采集方法,通过对各个检测电极采集到的电势分布进行分析可快速和准确地检测到渗漏点。 [结果] 野外试验结果表明:该新型分布式电法系统可快速、有效地检测到土壤电阻率变化情况,检测成果可靠,仪器设备分辨率高,数据直观,异常体位置明显,可有效圈定试验浇灌区域点。 [结论] 电法系统通过多次检测可实现对垃圾场试验液体渗漏进行动态监测,为环境岩土污染调查及检测、监测提供了有效的参考依据。
    Abstract: [Introduction] The traditional environmental geophysics method is one of the main solutions of monitoring liquid leakage of hazardous liquids in landfills. However, such methods have the defects of limited monitoring range, low flexibility, long time interval and poor monitoring accuracy. This article aims to establish a new distributed electrical method to monitor the leakage of hazardous liquids to improve the above situation. [Method] This article introduced the new method by starting from the basic principles of distributed electrical system, designation and implementation of the system's software and hardware, which contributed to the research, development and tests of the system. The new distributed electrical method adopted a data acquisition method, which had the features of one-time electrodes placement, full-channel and multi-electrode spacings. The leakage points could be detected quickly and accurately by analyzing the potential distribution collected by each electrode. [Result] Field test results show that the new distributed electrical method can detect the change of soil resistivity quickly and effectively, the test results are reliable, the resolution of collected data points is high, the data is intuitive, the position of abnormal body is obvious. The watered area and points can be effectively delineated. [Conclusion] The method can achieve dynamic monitoring of landfill liquid leakage through out multiple tests, which also provides an effective reference for detection, monitoring and environmental or geotechnical investigations.
  • 期刊类型引用(1)

    1. 李圣魁,刘明明,潘广山,毕征峰. 探地雷达方法在特殊含油污水管道渗漏探测中的应用. 山东国土资源. 2021(04): 67-72 . 百度学术

    其他类型引用(1)

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出版历程
  • 收稿日期:  2018-01-24
  • 修回日期:  2018-04-15
  • 刊出日期:  2020-07-10

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