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Experimental investigation on the migration of leachate under flowing conditions through laboratory ERT

机译:通过实验室偏移流动条件下渗滤液迁移的实验研究

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摘要

With an increase of service time of landfills, a great amount of old landfills begin to leak and the leachate impairs the surrounding environment severely. Defining the flow of leachate is significant to the monitoring and restoration of the landfill. Field tests and laboratory tests are often used to investigate the leachate flow. However, many uncontrollable factors may affect the accuracy of field tests, and the application of field test results is usually limited. At the same time, it is difficult to simulate and monitor the migration process of leachate in real time in laboratory. To address this problem, a new physical simulating device is created to simulate the leachate migration under flowing conditions, and improved ERT device is designed to monitor the migration in laboratory tests. The results show that the improved ERT could delineate the migration range well in laboratory tests, providing a new method to investigate the leachate migration in laboratory test and providing a reference to the application of ERT in field tests. The relative variation rate of resistivity could reduce the influence of background, and is very suitable for time-lapse ERT. In addition, the effect of flowing rate, leakage rate, and time on the leachate migration is also investigated. The results show that the horizontal migration rate increases with an increase of flowing rate. The leakage rate has a significant influence on the vertical migration, but has limited effect on the horizontal migration. The curvature of migration front increases with an increase of flowing rate and time.
机译:随着垃圾填埋场的服务时间增加,大量的旧垃圾填埋场开始泄漏,渗滤液严重损害周围环境。定义渗滤液的流动对垃圾填埋场的监测和修复具有重要意义。现场测试和实验室测试通常用于研究渗滤液流动。然而,许多无法控制的因素可能会影响现场测试的准确性,并且通常限制现场测试结果的应用。与此同时,在实验室实时模拟和监控渗滤液的迁移过程。为了解决这个问题,创建了一种新的物理模拟设备来模拟流动条件下的渗滤液迁移,并且改进的ERT设备旨在监控实验室测试中的迁移。结果表明,改进的ERT可以在实验室测试中划界迁移范围,提供了一种研究实验室测试中渗滤液迁移的新方法,并参考ert在现场测试中的应用。电阻率的相对变化率可以降低背景的影响,并且非常适合于延时偏移。此外,还研究了流速,泄漏率和时间对渗滤液迁移的影响。结果表明,水平迁移率随着流动速率的增加而增加。泄漏率对垂直迁移有显着影响,但对水平迁移影响有限。迁移前沿的曲率随着流动速率和时间而增加。

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