Underground water pollution early warning device
By designing a groundwater pollution early warning device that includes sensors, a data acquisition module, and an automatic early warning mechanism, the problem of existing devices being unable to provide automatic early warnings has been solved, and automated monitoring and alarms for groundwater pollution have been achieved.
Patent Information
- Application Number
- CN202422610463.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-29
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-10-29
AI Technical Summary
Existing groundwater monitoring devices cannot provide automatic early warnings, resulting in a high degree of reliance on manual intervention.
A groundwater pollution early warning device including a monitoring and alarm mechanism was designed. It uses five sets of sensors for real-time monitoring and achieves automatic early warning through a data acquisition module, processing module, display module, comparator and wireless communication module. An alarm is issued when the sensor data exceeds the set value.
It enables automatic early warning of groundwater pollution, reduces reliance on manual labor, and improves the automation and accuracy of monitoring.
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Figure CN223637503U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to underground water monitoring technical field, concretely is a kind of underground water pollution early warning device. BACKGROUND
[0002] Underground water pollution monitoring refers to the monitoring and determination of the types, concentrations and trends of harmful substances in groundwater, evaluation of the status of groundwater pollution, understanding of the status of groundwater quality and the trend of pollution development, and the monitoring work carried out, the monitoring points of groundwater can be determined according to local hydrogeological conditions, groundwater development and utilization status, industrial pollution source distribution and other factors.
[0003] The existing underground water monitoring device can only monitor water quality in real time, and then feed back the monitoring results to the monitoring room, and the operator of the monitoring room can evaluate the underground water quality according to the monitoring results, but cannot automatically warn according to the monitoring results, resulting in that the existing underground water monitoring device depends on artificial greatly. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a kind of underground water pollution early warning device to solve the problems raised in the above background.
[0005] In view of the above problems, the technical scheme provided by the utility model is:
[0006] A kind of underground water pollution early warning device, including monitoring alarm mechanism, the monitoring alarm mechanism includes cover plate, the top surface of the cover plate is equipped with distribution box, data acquisition module is installed in the inside of the distribution box, the bottom surface of the cover plate is connected with bus line, the end of the bus line is connected with five groups of sensors, the distribution box is powered for five groups of the sensor by the bus line, the distribution box also powers the data acquisition module, the data acquisition module collects the data of five groups of the sensor by the bus line, the monitoring alarm mechanism also includes display module, processing module, five groups of comparators, wireless communication module arranged in monitoring room, the processing module collects and processes the data collected by the data acquisition module, the display module shows the data collected and processed by the processing module, five groups of the comparator compares the data collected and processed by the processing module with set value, five groups of the comparator is connected with mobile terminal by the wireless communication module and communication.
[0007] Specifically, display module, processing module, five groups of comparators, wireless communication module are powered by monitoring room.
[0008] The beneficial effect of the above further scheme is that five groups of sensors are used to monitor the underground water in real time, and the monitored data is sent to the data acquisition module, the data acquisition module converts the data collected by the five groups of sensors and sends it to the processing module, the processing module classifies the data collected by the five groups of sensors and displays it to the monitor through the display module, and at the same time, the processing module also sends the data collected by the five groups of sensors to the five groups of comparators, and the comparators have corresponding data set in advance. When a certain item in the data collected by the five groups of sensors exceeds the corresponding pre-set data, it means that the item of the monitored underground water is unqualified, and the comparator that compares the unqualified data sends a signal to the mobile terminal of the monitor.
[0009] Further, the five groups of sensors are used to collect underground water multi-dimensional monitoring data; the underground water multi-dimensional monitoring data includes pH, conductivity, turbidity, liquid level and dissolved oxygen.
[0010] The beneficial effect of the above further scheme is that through multi-dimensional monitoring of underground water, multiple data of underground water can be obtained to improve the safety of use of underground water.
[0011] Further, the top surface of the cover plate is also provided with a loudspeaker, the loudspeaker is provided with a controller, the power distribution box supplies power to the loudspeaker and the controller, and the five groups of comparators are in communication connection with the controller.
[0012] The beneficial effect of the above further scheme is that when a certain item in the data collected by the five groups of sensors exceeds the corresponding pre-set data, it means that the item of the monitored underground water is unqualified, and the signal is sent to the controller, and the controller controls the loudspeaker to issue an alarm to remind the surrounding monitors.
[0013] Further, it also includes a sampling mechanism, the sampling mechanism includes a sampling tank embedded in the bottom surface of the cover plate and a water pump installed on the bottom surface of the cover plate, a first pipeline is connected between the output end of the water pump and the sampling tank, a second pipeline is connected to the input end of the water pump, and the power distribution box supplies power to the water pump.
[0014] The beneficial effect of the above further scheme is that the water pump draws underground water into the sampling tank through the first pipeline and the second pipeline, and the monitor can take samples from the sampling tank to conduct more comprehensive detection of the underground water.
[0015] Further, the bottom surface of the sampling tank is connected with a water outlet pipe, and the top surface of the sampling tank is clamped with a tank cover.
[0016] The beneficial effect of the further scheme is that the underground water pumped into the sampling tank can flow out through the water outlet pipe, and the water inlet speed of the sampling tank is greater than the water outlet speed, so that the sampling tank can always have underground water, and the freshness of the underground water in the sampling tank can be ensured.
[0017] Further, the length of the total line is 15-20 m.
[0018] Further, the length of the second pipe and the water outlet pipe is 15-20 m.
[0019] The beneficial effect of the further scheme is that the length of the total line, the second pipe and the water outlet pipe is limited, so that the device is suitable for shallow underground water.
[0020] Compared with the prior art, the beneficial effect of the underground water pollution early warning device is that five sensors are used to monitor the underground water in real time, and the monitored data is sent to the data acquisition module, the data acquisition module converts the data collected by the five sensors and sends the data to the processing module, the processing module classifies and processes the data collected by the five sensors, and displays the data to the monitor through the display module, and the processing module also sends the data collected by the five sensors to the five comparators, the five comparators have corresponding data set in advance, when one of the data collected by the five sensors exceeds the corresponding data set in advance, it means that the data of the monitored underground water is unqualified, at this time, the unqualified comparator sends a signal to the mobile terminal of the monitor to achieve the purpose of automatic alarm. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 A perspective structural schematic view of the underground water pollution early warning device disclosed by the embodiment of the present application is shown in the figure;
[0022] Figure 2 A cross-sectional structural schematic view of the underground water pollution early warning device disclosed by the embodiment of the present application is shown in the figure;
[0023] Figure 3 A first system schematic view of the underground water pollution early warning device disclosed by the embodiment of the present application is shown in the figure;
[0024] Figure 4 A second system schematic view of the underground water pollution early warning device disclosed by the embodiment of the present application is shown in the figure.
[0025] In the figure: 100, monitoring alarm mechanism; 1001, cover plate; 1002, bus line; 1003, sensor; 1004, distribution box; 1005, loudspeaker; 200, sampling mechanism; 2001, sampling tank; 2002, water outlet pipe; 2003, water pump; 2004, first pipeline; 2005, second pipeline; 2006, tank cover. DETAILED DESCRIPTION
[0026] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0027] Please refer to Figure 1 Figure 4 The utility model provides a technical scheme: a groundwater pollution early warning device, including monitoring alarm mechanism 100, monitoring alarm mechanism 100 includes cover plate 1001, the top surface of cover plate 1001 is installed with distribution box 1004, the inside installation of distribution box 1004 has data acquisition module, the bottom surface of cover plate 1001 is connected with bus line 1002, the end of bus line 1002 is connected with five groups of sensors 1003, distribution box 1004 supplies power for five groups of sensors 1003 through bus line 1002, distribution box 1004 also supplies power for data acquisition module, data acquisition module gathers the data of five groups of sensors 1003 through bus line 1002, monitoring alarm mechanism 100 still includes the display module, processing module, five groups of comparators, wireless communication module of setting in monitoring room, processing module collects and processes the data that data acquisition module gathers, display module shows the data that processing module collects and processes, five groups of comparators compare the data that processing module collects and processes with set value, five groups of comparators are connected with mobile terminal communication through wireless communication module, five groups of sensors 1003 are used for gathering groundwater multidimensional monitoring data, groundwater multidimensional monitoring data includes acidity and alkalinity, conductivity, turbidity, liquid level, dissolved oxygen, cover plate 1001 covers the top of drilling, guarantees that rainwater is difficult to flow into groundwater from wellhead, guarantees that groundwater can not be easily contaminated by rainwater, when cover plate 1001 covers wellhead, five groups of sensors 1003 will sink in groundwater, to carry out real time monitoring to the acidity and alkalinity, conductivity, turbidity, liquid level, dissolved oxygen of groundwater, the data of monitoring is sent to data acquisition module, data acquisition module converts the data that five groups of sensors 1003 gather, then sends to processing module, processing module carries out classification processing to the data that five groups of sensors 1003 gather, then it is shown to monitor through display module, simultaneously, processing module still sends the data that five groups of sensors 1003 gather to five groups of comparators respectively, five groups of comparators have corresponding data in advance, when the data of five groups of sensors 1003 in a item exceeds corresponding data in advance, then, it is unqualified that the data of groundwater that is monitored represents, wireless communication module is connected with the mobile equipment of monitor in advance, at this moment, the comparator that compares out unqualified will send signal to the mobile terminal of monitor through wireless communication module.
[0028] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model and not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the utility model.
[0029] Please refer to Figure 1 - Figure 4The utility model provides a technical scheme: a groundwater pollution early warning device, including monitoring alarm mechanism 100, monitoring alarm mechanism 100 includes cover plate 1001, the top surface of cover plate 1001 is installed with distribution box 1004, the inside installation of distribution box 1004 has data acquisition module, the bottom surface of cover plate 1001 is connected with bus line 1002, the end of bus line 1002 is connected with five groups of sensors 1003, and distribution box 1004 supplies power for five groups of sensors 1003 through bus line 1002, and distribution box 1004 also supplies power for data acquisition module, and data acquisition module collects the data of five groups of sensors 1003 through bus line 1002, monitoring alarm mechanism 100 still includes the display module, processing module, five groups of comparators of being arranged in monitoring room, and processing module collects and processes the data of data acquisition module acquisition, and display module shows the data of processing module collection and processing, and five groups of comparators compare the data of processing module collection and processing with set value, the top surface of cover plate 1001 still is installed with loudspeaker 1005, and the controller is arranged in loudspeaker 1005, and distribution box 1004 supplies power for loudspeaker 1005, controller, and five groups of comparators and controller communication connection, cover plate 1001 covers the top of well, guarantees that rainwater is difficult to flow into groundwater from well mouth, guarantees that groundwater will not be easily contaminated by rainwater, when cover plate 1001 covers well mouth, five groups of sensors 1003 will sink in groundwater, to carry out real time monitoring to the pH, conductivity, turbidity, liquid level, dissolved oxygen of groundwater, and the data of monitoring is sent to data acquisition module, and data acquisition module converts the data of five groups of sensors 1003 collection, and then sends to processing module, and processing module classifies the data of five groups of sensors 1003 collection, and then shows the monitor to processing module through display module, simultaneously, processing module also sends the data of five groups of sensors 1003 collection to five groups of comparators respectively, and the corresponding data is set in advance in five groups of comparators, when the data of five groups of sensors 1003 collection exceeds the corresponding data set in advance, then represent that the data of groundwater monitored is unqualified, at this moment, signal is sent to controller, and controller controls loudspeaker 1005 to send alarm, to remind the monitor of surrounding.
[0030] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model and not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the utility model.
[0031] Please refer to Figure 1 - Figure 4The utility model provides a technical scheme: a groundwater pollution early warning device, including sampling mechanism 200, sampling mechanism 200 includes the sampling jar 2001 embedded in the bottom surface of cover plate 1001, installs the water pump 2003 at the bottom surface of cover plate 1001, is connected with first pipeline 2004 between the output of water pump 2003 and sampling jar 2001, the input of water pump 2003 is connected with second pipeline 2005, and distribution box 1004 is powered for water pump 2003, and water pump 2003 passes through first pipeline 2004, second pipeline 2005 and draws into sampling jar 2001 in groundwater, and the monitor can take sample from sampling jar 2001 to carry out more comprehensive detection to groundwater, and the bottom surface of sampling jar 2001 is connected with water outlet pipe 2002, and the top surface of sampling jar 2001 is clamped with jar cover 2006, and the groundwater in the pump of sampling jar 2001 will flow away through water outlet pipe 2002, and the water inlet speed of sampling jar 2001 is greater than the water outlet speed, so it can guarantee that there is always groundwater in sampling jar 2001, and can guarantee the freshness of groundwater in sampling jar 2001.
[0032] Specifically, the working principle of the groundwater pollution early warning device is as follows: when in use, the cover plate 1001 is covered on the top of the well to prevent rainwater from flowing into the groundwater from the well mouth and to prevent the groundwater from being easily polluted by rainwater. When the cover plate 1001 is covered on the well mouth, the five groups of sensors 1003 sink into the groundwater to monitor the pH value, conductivity, turbidity, liquid level and dissolved oxygen of the groundwater in real time. The monitored data is sent to the data acquisition module. The data acquisition module converts the data collected by the five groups of sensors 1003 and then sends the converted data to the processing module. The processing module classifies and processes the data collected by the five groups of sensors 1003 and then displays the processed data to the monitor through the display module. Meanwhile, the processing module sends the data collected by the five groups of sensors 1003 to the five groups of comparators respectively. The five groups of comparators are pre-set with corresponding data. When one of the data collected by the five groups of sensors 1003 exceeds the corresponding pre-set data, it means that the corresponding data of the monitored groundwater is unqualified. The wireless communication module is pre-connected with the mobile device of the monitor. At this time, the comparator that is unqualified is compared. The comparator sends a signal to the mobile terminal of the monitor through the wireless communication module. Meanwhile, the signal is sent to the controller. The controller controls the loudspeaker 1005 to issue an alarm to remind the surrounding monitor.
Claims
1. A groundwater pollution early warning device, characterized by, The utility model provides a kind of underground water multi-dimensional monitoring device, including monitoring alarm mechanism (100), the top surface of the cover plate (1001) is equipped with distribution box (1004), the inside of distribution box (1004) is equipped with data acquisition module, the bottom surface of the cover plate (1001) is connected with bus line (1002), the end of bus line (1002) is connected with five groups of sensors (1003), distribution box (1004) is powered for five groups of sensors (1003) by bus line (1002), distribution box (1004) is also powered for data acquisition module, data acquisition module is collected by bus line (1002) five groups of the data of sensor (1003), monitoring alarm mechanism (100) also includes display module, processing module, five groups of comparators, wireless communication module arranged in monitoring room, the data that processing module collects and processes are collected by data acquisition module, display module shows the data that processing module collects and processes, five groups of comparators compare the data that processing module collects and processes with set value, five groups of comparators are connected with mobile terminal communication by wireless communication module, five groups of sensors (1003) are used to collect underground water multi-dimensional monitoring data;The underground water multi-dimensional monitoring data includes acidity and alkalinity, conductivity, turbidity, liquid level, dissolved oxygen, the top surface of the cover plate (1001) is also equipped with loudspeaker (1005), controller is equipped in loudspeaker (1005), distribution box (1004) is powered for loudspeaker (1005), controller, five groups of comparators and controller communication connection, still include sampling mechanism (200), sampling mechanism (200) includes embedding in the bottom surface of the cover plate (1001) sampling tank (2001), pumping unit (2003) is installed in the bottom surface of the cover plate (1001), first pipeline (2004) is connected between the output of pumping unit (2003) and sampling tank (2001), the input of pumping unit (2003) is connected with second pipeline (2005), distribution box (1004) is powered for pumping unit (2003).
2. The groundwater pollution early warning device according to claim 1, characterized in that, The length of bus line (1002) is 15-20m.
3. The groundwater pollution early warning device according to claim 1, characterized in that, The bottom surface of sampling tank (2001) is connected with water outlet pipe (2002), the top surface of sampling tank (2001) is clamped with tank cover (2006).
4. The groundwater pollution early warning device according to claim 3, characterized in that, The length of second pipeline (2005) and water outlet pipe (2002) is 15-20m.