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A sampling method of a three-dimensional visual simulation device for pollutant migration and transformation

A simulation device, migration and transformation technology, applied in the field of soil and groundwater pollution remediation, can solve problems such as endangering the health of experimenters, failure to carry out organic matter, environmental pollution, etc., to achieve flexible and convenient selection, good mobility and stability, and structure Design flexible effects

Active Publication Date: 2019-05-28
INST OF SOIL SCI CHINESE ACAD OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

Moreover, most of the existing devices are made of plexiglass and PVC. Because their components contain pollutants such as phthalic acid lipids, it is impossible to carry out research on some organic substances. This type of material may contain toxic additives and plasticizers, which will easily cause environmental pollution after aging. Pollution and harm to the health of experimenters

Method used

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  • A sampling method of a three-dimensional visual simulation device for pollutant migration and transformation
  • A sampling method of a three-dimensional visual simulation device for pollutant migration and transformation
  • A sampling method of a three-dimensional visual simulation device for pollutant migration and transformation

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Experimental program
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Effect test

Embodiment 1

[0023] A three-dimensional visual simulation device for simulating the migration and transformation of pollutants in porous media in an underground environment, comprising a water supply device 1, a simulation device 2 and a water storage device 3 connected in sequence, the simulation device 2 is a A square tank body, the space in the tank body is divided into a water inlet pool 5, an aquifer 6 and an outlet pool 7 by two stainless steel wire mesh devices 4 in the tank body, the water supply device 1 is connected with the water inlet pool 5, and the water storage device 3 is connected with the water outlet pool 5. The effluent pools 7 are connected, and a set of sampling holes are arranged on the side wall of the tank body located in the aquifer area and on the upper cover, and a sampling device is arranged in the sampling holes.

[0024] The water supply device is connected with the pipeline of the water inlet through a peristaltic pump 9 with a flow meter.

[0025] The water...

Embodiment 2

[0034] A three-dimensional visual simulation device for simulating the migration and transformation of pollutants in porous media in an underground environment and a sampling method thereof, including a water supply device 1 , a simulation device 2 and a water storage device 3 . Such as figure 1As shown, the main body of the mobile simulation device is a square tank with a cover on the top. The water supply device 1 for storing artificial groundwater is placed on the platform, and the fluid is pumped into the pool 5 through a peristaltic pump 9, and the peristaltic motion is corrected by a flow meter. pump flow rate. The end of the outlet pool connects the outlet pipe to the outlet pool 7 through a polytetrafluoroethylene through-board joint, and the three outlet pipes 10 merge into one water pipe through the four-way pipe 11, and the outlet pipe is connected with a two-way valve 12 and a sampling valve 13. The water outlet end is finally connected to the water storage device...

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Abstract

The invention discloses a three-dimensional visible simulation device for simulating migration and transformation of pollutants in porous media in an underground environment. The three-dimensional visible simulation device comprises a water supply device, a simulation device and a water storage device which are sequentially connected. The simulation device is a square tank with an upper cover. Two stainless steel screen devices in the tank divide the interior space of the tank into a water inlet pool, a water bearing layer and a water outlet pool. The water supply device is connected with the water inlet pool. The water storage device is connected with the water outlet pool. Sampling devices are arranged on the side wall, in the region of the water bearing layer, of the tank and the upper cover respectively. The three-dimensional visible simulation device has the advantages that through design of different types of filling media, underground heterogeneous water bearing layers are simulated, conditions, such as running water field, of underground water bearing layers are set, and a scientific and reasonable sampling method is designed; the concentration of pollutants, tracer agents and the like at different water levels are monitored continuously, and distribution and transformation of the target pollutants at different time in different space are analyzed; the three-dimensional visible simulation device is suitable for three-dimensional research on migration and transformation of the pollutants in the underground saturated heterogeneous water-bearing layer environment.

Description

technical field [0001] The invention relates to the field of soil and groundwater pollution restoration, in particular to a three-dimensional visual simulation device for simulating migration and transformation of pollutants in porous media in an underground environment. Background technique [0002] As important natural resources, soil and groundwater have played an important role in maintaining the healthy development of my country's economy and society and the ecological environment. However, with the rapid development of economy and society, the pollution of soil and groundwater is becoming more and more serious. The pollution remediation of soil and groundwater is inseparable from the study of the migration behavior and transformation of pollutants in the underground environment. In theory, the temporal and spatial distribution of pollutant concentrations and hydrogeological conditions can be obtained by establishing a large-scale field test site, combined with numerica...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N33/18G01N1/10
CPCG01N1/10G01N33/18
Inventor 宋昕魏昌龙王晴
Owner INST OF SOIL SCI CHINESE ACAD OF SCI
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