Safety detection system for dust removal device

Through real-time detection and control of water tanks and pipelines, combined with intelligent management, the problem of untimely safety detection of dust removal devices in dock environment is solved, and the stable operation and safety performance of the device are improved.

CN223078610UActive Publication Date: 2025-07-08CAOFEIDIAN PORT INTERMODAL TERMINAL CO LTD
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Patent Information

Application Number
CN202422228283.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-11
Publication Date
2025-07-08
Estimated Expiration
2034-09-11

AI Technical Summary

Technical Problem

The existing dust removal devices are not timely and inaccurate in the dock environment, making it difficult to detect potential safety hazards, especially in extreme weather, which affects the stable operation of the device.

Method used

It adopts water tank detection module, pipeline detection module, insulation heating module, electrical control module and intelligent control box, combined with self-test module and touch screen pattern dynamic display module, real-time monitoring and control of the temperature and water level of the water tank and pipeline, automatically diagnose faults and respond to emergency response.

Benefits of technology

It realizes instant warning and failure prevention of dust removal devices, ensures stability and safety of dust removal operations, extends the service life of the device, and improves the system's self-diagnosis and emergency response capabilities.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a dust removal device safety detection system, and belongs to the technical field of dust removal devices. The dust removal device safety detection system comprises the steps that temperature and water level information of a water tank and a pipeline is detected, and heat preservation and electric heat tracing measures are additionally arranged; the electric appliance control comprises a protection device for preventing over-voltage, overload, under-voltage and delayed shutdown; the intelligent control box receives temperature and water level information of the water tank and the pipeline and electric appliance control information; the intelligent control box is provided with a full-automatic control system, the system is controlled to operate, and the workload and the operation risk of field operators are reduced. The safety performance of the dust removal device can be improved.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of dust removal devices, and particularly to a safety detection system for a dust removal device. Background Art

[0002] As a busy area for cargo loading, unloading and transshipment, frequent material handling and loading / unloading operations at the dock are likely to generate a large amount of dust. These dusts not only affect air quality and pose a threat to the health of staff, but may also cause major safety accidents such as explosions under specific conditions. Therefore, dust removal devices are adopted at the dock for dust suppression. However, the existing dust removal devices face many safety hazards during long-term operation. Due to the complex operating environment at the dock, it is easy to cause a decline in the performance of the dust removal device or a malfunction. Traditional detection methods mainly rely on manual regular inspections, but this method has many limitations, such as untimely and inaccurate detection, and it is difficult to discover potential safety hazards. Especially in winter, due to the influence of weather temperature, the surface of the dust removal device or parts such as water tanks and pipelines are prone to icing, affecting the stability of the operation of the dust removal device. Therefore, the existing safety detection methods for dust removal devices cannot meet the requirements of high-intensity operations at the dock, resulting in poor safety performance and affecting the stable operation of the device. Summary of the Utility Model

[0003] Embodiments of the present disclosure provide a safety detection system for a dust removal device to solve the problem of poor safety performance.

[0004] Embodiments of the present disclosure provide a safety detection system for a dust removal device, including:

[0005] a water tank detection module, a pipeline detection module, a heat tracing and insulation module, an electrical control module and an intelligent control box;

[0006] Both the water tank detection module and the pipeline detection module are connected to the intelligent control box;

[0007] The intelligent control box is respectively connected to the electrical control module and the heat tracing and insulation module;

[0008] The heat tracing and insulation module is respectively used to connect to the water tank and the pipeline;

[0009] The water tank detection module is configured to detect the temperature and water level of the water tank;

[0010] The pipeline detection module is configured to detect the temperature and water level of the pipeline;

[0011] The heat tracing and insulation module is configured to maintain the temperatures of the water tank and the pipeline respectively;

[0012] The intelligent control box is configured to respectively receive the temperature information and water level information of the water tank detection module and the pipeline detection module.

[0013] In an exemplary embodiment of the present disclosure, the water tank detection module includes a first temperature measurement unit and a first water level detection unit;

[0014] Both the first temperature measurement unit and the first water level detection unit are provided on the water tank;

[0015] Both the first temperature measurement unit and the first water level detection unit are connected to the intelligent control box.

[0016] In an exemplary embodiment of the present disclosure, the pipeline detection module includes a second temperature measurement unit and a second water level detection unit;

[0017] Both the second temperature measurement unit and the second water level detection unit are provided on the pipeline;

[0018] Both the second temperature measurement unit and the second water level detection unit are connected to the intelligent control box.

[0019] In an exemplary embodiment of the present disclosure, the electrical control module includes a pressure detection module, a voltage detection module, a current detection module, a control unit, and a switch module;

[0020] The pressure detection module, the voltage detection module, and the current detection module are all connected to the control unit;

[0021] Both the control unit and the switch module are connected to the intelligent control box;

[0022] The switch module is used to connect to the power supply.

[0023] In an exemplary embodiment of the present disclosure, a dust removal device safety detection system further includes a drain valve;

[0024] The drain valve is provided at the lowest point of the pipeline;

[0025] The drain valve is configured to empty the pipeline.

[0026] In an exemplary embodiment of the present disclosure, a dust removal device safety detection system further includes a self-check module;

[0027] The self-check module is connected to the intelligent control box;

[0028] The self-check module is configured to automatically diagnose the operating conditions of each module.

[0029] In an exemplary embodiment of the present disclosure, a dust removal device safety detection system further includes a touch screen graphical dynamic display module;

[0030] The touch screen graphical dynamic display module is connected to the intelligent control box;

[0031] The touch screen graphical dynamic display module is configured to display the operating state of the device in real time and perform a summary display of faults.

[0032] In an exemplary embodiment of the present disclosure, the touch screen graphic dynamic display module includes a display device, an alarm module, and a control panel;

[0033] The display device, the alarm module, and the control panel are all connected to the intelligent control box.

[0034] The beneficial effects of a dust removal device safety detection system provided by an embodiment of the present disclosure are as follows:

[0035] Through real-time detection of the temperature and water level of the water tank and pipeline, this embodiment can give early warnings of problems in a timely manner, effectively prevent equipment failures caused by abnormal water temperature or insufficient water level, and ensure the stable progress of the dust removal operation. The precise regulation of the heat tracing and insulation module ensures the stable temperature of the water tank and pipeline under extreme weather conditions, and can extend the service life of the dust removal device. The centralized management of the intelligent control box not only simplifies the operation process, but also stabilizes the operation of the system through intelligent judgment. At the same time, the automatic monitoring and feedback mechanism of the electrical control module further enhances the self-diagnosis and emergency response capabilities of the system, and improves the safety and reliability of the overall operation. The construction of the dock dust removal device safety detection system significantly improves the safety performance of the dust removal device. Description of the Drawings

[0036] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the following drawings are only some embodiments of the present disclosure. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0037] Figure 1 is a schematic structural diagram of a dust removal device safety detection system provided by an embodiment of the present disclosure;

[0038] Figure 2 is a schematic structural diagram of another dust removal device safety detection system provided by an embodiment of the present disclosure;

[0039] Figure 3 is a schematic structural diagram of yet another dust removal device safety detection system provided by an embodiment of the present disclosure;

[0040] Figure 4 is a schematic structural diagram of the connection relationship between the water tank, pipeline, and some modules in the dust removal device provided by an embodiment of the present disclosure. Detailed Embodiments

[0041] To enable those skilled in the art to better understand this solution, the following will clearly describe the technical solution in the embodiments of this solution in conjunction with the accompanying drawings in the embodiments of this solution. Obviously, the described embodiments are part of the embodiments of this solution, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in this solution without creative efforts shall fall within the scope of protection of this solution.

[0042] The terms "including" and any other variations in the specification and claims of this solution and the above-mentioned accompanying drawings mean "including but not limited to", intending to cover non-exclusive inclusion and not limited to the examples listed in the text. In addition, terms such as "first" and "second" are used to distinguish different objects, rather than to describe a specific order.

[0043] The following describes the implementation of this disclosure in detail in conjunction with specific accompanying drawings:

[0044] Figure 1 It is a schematic structural diagram of a dust removal device safety detection system provided for the embodiments of this disclosure. Refer to Figure 1 This dust removal device safety detection system includes:

[0045] A water tank detection module 101, a pipeline detection module 102, a heat tracing and insulation module 105, an electrical control module 104, and an intelligent control box 103;

[0046] Both the water tank detection module 101 and the pipeline detection module 102 are connected to the intelligent control box 103;

[0047] The intelligent control box 103 is respectively connected to the electrical control module 104 and the heat tracing and insulation module 105;

[0048] The heat tracing and insulation module 105 is respectively used to be connected to the water tank 20 and the pipeline 30;

[0049] The water tank detection module 101 is configured to detect the temperature and water level of the water tank 20;

[0050] The pipeline detection module 102 is configured to detect the temperature and water level of the pipeline 30;

[0051] The heat tracing and insulation module 105 is configured to maintain the temperatures of the water tank 20 and the pipeline 30 respectively;

[0052] The intelligent control box 103 is configured to receive the temperature information and water level information of the water tank detection module 101 and the pipeline detection module 102 respectively.

[0053] In this embodiment, the water tank detection module 101 is responsible for detecting the temperature and water level of the water tank 20, and can detect and sense the changes in the water temperature and the height of the water level in the water tank 20 in real time, providing the working state of the water tank 20 for the system in real time. For example, when the temperature of the water tank 20 is too low, it may cause icing, or when the water level is too high or too low, affecting normal operation, the water tank detection module 101 will promptly feedback relevant information to the intelligent control box 103.

[0054] The pipeline detection module 102 is responsible for detecting the temperature and water level of the pipeline 30, and can accurately detect the water temperature and water level in the pipeline 30, providing key data on the condition of the pipeline 30 for the system. On the one hand, it ensures that the water temperature in the pipeline 30 is within a suitable range to avoid freezing of the pipeline 30 due to too low temperature, and at the same time monitors the water level to ensure smooth water flow. On the other hand, when the pipeline 30 needs to be emptied, it can determine whether it is emptied completely according to the detection of the water level.

[0055] The heat preservation and tracing module 105 is an important part to ensure the normal operation of the water tank 20 and the pipeline 30 in a low-temperature environment. By directly connecting to the water tank 20 and the pipeline 30, this module can provide appropriate heat energy according to the instructions of the intelligent control box 103 to prevent water from freezing or the temperature being too low from affecting the dust removal effect.

[0056] The intelligent control box 103 is the core center of the entire system, playing a role in control and coordination. When receiving the temperature information transmitted by the water tank detection module 101 and the pipeline detection module 102, if the temperature is lower than the set safety threshold, the intelligent control box 103 will quickly issue a heating instruction to the heat preservation and tracing module 105 for temperature increase control. At the same time, for the water level information, the intelligent control box 103 will analyze and judge. If the water level is too high or too low, corresponding controls will be given, such as prompting to stop water injection or starting the water replenishment operation.

[0057] The electrical control module 104 monitors the circuit conditions of the entire system at all times, including the magnitude of the current, the stability of the voltage, etc. Once an abnormality occurs in the circuit, such as a short circuit or overload, the electrical control module 104 will immediately take control measures for adjustment to ensure circuit safety. At the same time, the electrical control module 104 transmits the detected circuit information to the intelligent control box 103. After the intelligent control box 103 comprehensively processes this information, it is then fed back to the electrical control module 104 to further optimize the circuit control strategy.

[0058] Exemplarily, in the severe winter, when the water tank detection module 101 detects that the temperature of the water tank 20 is too low (such as approaching the freezing point), it immediately transmits this information to the intelligent control box 103. The intelligent control box 103 then issues a start instruction to the heat preservation and tracing module 105, and the heat preservation and tracing module 105 will heat the water tank 20.

[0059] Exemplarily, when the electrical control module 104 detects a situation of excessive instantaneous current in the circuit, this module transmits information to the intelligent control box 103, and the intelligent control box 103 will feedback an instruction to let the electrical control module 104 take corresponding protection measures to ensure the stability of the circuit. In extremely severe cases, a shutdown measure will be taken.

[0060] As can be seen from the above, through the real-time detection of the temperature and water level of the water tank 20 and the pipeline 30, this embodiment can instantly warn of problems, effectively prevent equipment failures caused by abnormal water temperature or insufficient water level, and ensure the stable progress of the dust removal operation. The precise regulation of the heat tracing and insulation module 105 ensures the temperature stability of the water tank 20 and the pipeline 30 in extreme weather, and can extend the service life of the dust removal device. The centralized management of the intelligent control box 103 not only simplifies the operation process, but also stabilizes the operation of the system through intelligent judgment. At the same time, the automatic monitoring and feedback mechanism of the electrical control module 104 further enhances the self-diagnosis and emergency response capabilities of the system, and improves the safety and reliability of the overall operation. The construction of the safety detection system for the dock dust removal device significantly improves the safety performance of the dust removal device.

[0061] In an embodiment of the present disclosure, referring to Figure 2 , the water tank detection module 101 includes a first temperature measurement unit 201 and a first water level detection unit 202;

[0062] Both the first temperature measurement unit 201 and the first water level detection unit 202 are arranged inside the water tank 20;

[0063] Both the first temperature measurement unit 201 and the first water level detection unit 202 are connected to the intelligent control box 103.

[0064] In this embodiment, the first temperature measurement unit 201 (usually using a high-precision temperature sensor, such as an infrared temperature sensor) is installed on one side inside the water tank 20, and can accurately measure the temperature of the water in the water tank 20. The first temperature measurement unit 201 transmits the real-time collected temperature data to the intelligent control box 103, so that the intelligent control box 103 can timely understand the water temperature condition in the water tank 20 and issue corresponding instructions for control.

[0065] The first water level detection unit 202 (such as a pressure type water level sensor) is also installed at a specific position inside the water tank 20, and can accurately sense the high and low changes of the water level in the water tank 20. Then, the first water level detection unit 202 transmits the water level information to the intelligent control box 103, providing data support for the intelligent control box 103 to understand and control the water level of the water tank 20.

[0066] Since both the first temperature measuring unit 201 and the first water level detecting unit 202 are connected to the intelligent control box 103, they can quickly and accurately send the collected temperature and water level data to the intelligent control box 103, so that the intelligent control box 103 can make corresponding judgments and control decisions.

[0067] Exemplarily, when the first temperature measuring unit 201 detects that the water temperature in the water tank 20 is too low, it will transmit the low temperature information to the intelligent control box 103, and the intelligent control box 103 can start the corresponding heating device to raise the water temperature; when the first water level detecting unit 202 detects that the water level in the water tank 20 is too high, the intelligent control box 103 will control the drainage device to open to lower the water level.

[0068] From the above, it can be concluded that the first temperature measuring unit 201 can accurately measure the temperature in the water tank 20, ensure that the water temperature always remains within a suitable range, and prevent the device from malfunctioning due to overheating or overcooling. At the same time, the first water level detecting unit 202 monitors the water level in the water tank 20 in real time, discovers and warns of low water level situations in a timely manner, and avoids the equipment from shutting down due to water shortage. This dual detection mechanism is closely connected to the intelligent control box 103, enabling the system to respond quickly and take measures, effectively ensuring the continuity and stability of the dust removal operation.

[0069] In an embodiment of the present disclosure, referring to Figure 2 , the pipeline detection module 102 includes a second temperature measuring unit 203 and a second water level detecting unit 204;

[0070] Both the second temperature measuring unit 203 and the second water level detecting unit 204 are arranged on the pipeline 30;

[0071] Both the second temperature measuring unit 203 and the second water level detecting unit 204 are connected to the intelligent control box 103.

[0072] In this embodiment, the second temperature measuring unit 203 (usually using a high-precision temperature sensor, such as an infrared temperature sensor) is installed at a key part of the pipeline 30 and can accurately measure the temperature of the water in the pipeline 30. The second temperature measuring unit 203 transmits the collected temperature data to the intelligent control box 103 in real time, enabling the intelligent control box 103 to always grasp the temperature change situation in the pipeline 30.

[0073] The second water level detecting unit 204 (such as a pressure type water level sensor) is arranged at a specific position of the pipeline 30 and can accurately detect the water level in the pipeline 30. Then, the second water level detecting unit 204 will timely transmit the water level information to the intelligent control box 103.

[0074] Since both the second temperature measurement unit 203 and the second water level detection unit 204 are connected to the intelligent control box 103, the second temperature measurement unit 203 and the second water level detection unit 204 can quickly and stably transmit the acquired temperature and water level data to the intelligent control box 103.

[0075] Exemplarily, if the second temperature measurement unit 203 detects an abnormal increase or decrease in the temperature inside the pipeline 30, the intelligent control box 103 will determine whether it is necessary to adjust the heat insulation measures of the pipeline 30 or check for faults based on this information. When the second water level detection unit 204 finds that the water level in the pipeline 30 exceeds the normal range, the intelligent control box 103 can correspondingly control the flow rate of the inlet and outlet water to maintain the normal operation of the pipeline 30.

[0076] It can be concluded from the above that the second temperature measurement unit 203 can detect the temperature of the water inside the pipeline 30 in real time, prevent faults caused by too high or too low temperature, and ensure the stability of the dust removal effect and the normal operation of the device. At the same time, the second water level detection unit 204 accurately grasps the water level situation inside the pipeline 30, timely discovers and warns of possible blockage or leakage risks, and prevents accidents. Through the close integration with the intelligent control box 103, the system can quickly respond to changes in the state of the pipeline 30, automatically adjust the operating parameters or issue an alarm, thereby effectively ensuring the safety and reliability of the dust removal device.

[0077] In an embodiment of the present disclosure, referring to Figure 2 , the electrical control module 104 includes a pressure detection module 301, a voltage detection module 302, a current detection module 303, a control unit 304, and a switch module 305;

[0078] The pressure detection module 301, the voltage detection module 302, and the current detection module 303 are all connected to the control unit 304;

[0079] The control unit 304 and the switch module 305 are both connected to the intelligent control box 103;

[0080] The switch module 305 is used to connect to the power supply 10.

[0081] In this embodiment, the pressure detection module 301 is used to detect the pressure value in the system, such as gas pressure or liquid pressure, and transmit the detected pressure data to the control unit 304.

[0082] The voltage detection module 302 is responsible for detecting the voltage situation in the circuit, including the magnitude and stability of the voltage, and providing voltage-related information to the control unit 304.

[0083] The current detection module 303 detects the magnitude of the current in the circuit and the trend of current change in real time, and transmits the current data to the control unit 304.

[0084] The control unit 304 receives information from the pressure detection module 301, the voltage detection module 302, and the current detection module 303, processes and analyzes this information, and determines whether the data parameters are within the normal range. If an abnormality occurs, the control unit 304 generates a corresponding control signal.

[0085] Both the control unit 304 and the switch module 305 are connected to the intelligent control box 103. The control unit 304 transmits the processed information to the intelligent control box 103, and the intelligent control box 103 makes corresponding decisions and control instructions based on this information. At the same time, the intelligent control box 103 can also send instructions to the control unit 304 to change the system operation status.

[0086] The switch module 305 is connected to the power supply 10. According to the instructions of the intelligent control box 103, it realizes the connection or disconnection of the circuit, thereby controlling the power supply 10 supply of the entire system, and thus controlling the start and stop of the equipment.

[0087] Exemplarily, if the voltage detection module 302 detects that the voltage is too high, the control unit 304 will transmit this information to the intelligent control box 103, and the intelligent control box 103 can instruct the switch module 305 to disconnect the power supply 10 to protect the equipment from damage caused by excessive voltage.

[0088] From the above, it can be concluded that by integrating the pressure detection module 301, the voltage detection module 302, and the current detection module 303, and closely collaborating with the control unit 304, comprehensive monitoring of the dust removal device is achieved. The switch module 305 provides shutdown preparation for emergency situations. Through the connection with the intelligent control box 103, intelligent management of the system is realized, which not only improves the safety and stability of the system, but also promotes the efficient operation of the dust removal device, bringing significant economic benefits to the terminal operation.

[0089] In an embodiment of the present disclosure, referring to Figure 4 , a dust removal device safety detection system further includes a drain valve 40;

[0090] The drain valve 40 is arranged at the lowest point of the pipeline 30;

[0091] The drain valve 40 is configured to empty the pipeline 30.

[0092] In this embodiment, the drain valve 40 is specifically arranged at the lowest point of the pipeline 30 because when the water in the pipeline 30 stops running or needs to be maintained, it will naturally flow to the lowest point and gather due to gravity. The main function of the drain valve 40 is to empty the pipeline 30. When the pipeline 30 needs to be repaired, maintained, or to prevent the water in the pipeline 30 from freezing and damaging the pipeline 30 in cold weather, opening the drain valve 40 can quickly drain the water in the pipeline 30, making the pipeline 30 in a waterless state.

[0093] Exemplarily, when the dust removal device does not need to be used in winter, in order to avoid the pipeline 30 being damaged due to the expansion of the frozen water in the pipeline 30, the staff can open the drain valve 40 to empty the stored water in the pipeline 30, thereby protecting the pipeline 30 from damage. Or when the pipeline 30 fails and needs to be repaired, emptying the water in the pipeline 30 can create a water-free environment for the repair work, facilitating the operation of the repair personnel and reducing the safety risks during the repair process.

[0094] It can be concluded from the above that the drain valve 40 is arranged at the lowest point of the pipeline 30, ensuring that the accumulated water in the pipeline 30 can be effectively drained. When the pipeline 30 needs to be maintained, cleaned, or protected against freezing in winter, the emptying function of the drain valve 40 is particularly important. It can quickly and thoroughly drain the accumulated water in the pipeline 30, preventing problems such as corrosion, blockage, or freezing caused by the accumulated water, thereby protecting the pipeline 30 and related equipment from damage.

[0095] In one embodiment of the present disclosure, referring to Figure 2 , a safety detection system for a dust removal device further includes a self-check module 106;

[0096] The self-check module 106 is connected to the intelligent control box 103;

[0097] The self-check module 106 is configured to automatically diagnose the operating conditions of each module.

[0098] In this embodiment, the self-check module 106 is connected to the intelligent control box 103, and can real-time detect and evaluate the operating conditions of each module in the system. The self-check module 106 obtains its working parameters, status information, etc. through communication and data interaction with each module, and analyzes and judges this information, such as whether each module is working properly, whether the response of the intelligent control box 103 is timely and accurate, whether the circuit is operating stably, etc.

[0099] Exemplarily, the self-check module 106 can find that the data of a certain module has not changed for a long time or is seriously inconsistent with the expected range, thereby judging that the module has failed.

[0100] When the self - inspection module 106 diagnoses that a certain module has abnormal operation or a fault, it will transmit the relevant information to the intelligent control box 103 in a timely manner. The intelligent control box 103 can take corresponding measures accordingly, such as issuing an alarm to prompt the staff to carry out maintenance, or automatically adjusting the operation mode of the system to reduce the impact of the fault.

[0101] From the above, it can be concluded that the existence of the self - inspection module 106 improves the reliability and maintainability of the system, ensuring that the system can operate stably and effectively in the long term.

[0102] In an embodiment of the present disclosure, referring to Figure 2 , a safety detection system for a dust removal device further includes a touch - screen graphical dynamic display module 107;

[0103] The touch - screen graphical dynamic display module 107 is connected to the intelligent control box 103;

[0104] The touch - screen graphical dynamic display module 107 is configured to display the operation status of the device in real time and perform a summary display of faults.

[0105] In this embodiment, the touch - screen graphical dynamic display module 107 is connected to the intelligent control box 103 and can obtain the operation status information of each module in the system in real time. Through a vivid and intuitive graphical interface, complex device operation data is converted into images, charts or dynamic diagrams that are easy to understand and observe.

[0106] Exemplarily, the water flow speed and temperature changes in the pipeline 30 are represented by lines of different colors, and the working status (normal operation, fault, standby, etc.) of each module is displayed by icons.

[0107] Displaying the operation status of the device in real time enables the operator to understand the overall working condition of the system in the first place, without the need to tediously interpret data tables or codes. At the same time, this function also has the ability to perform a summary display of faults. When a certain part of the system fails, the touch - screen graphical dynamic display module 107 will centrally display the relevant fault information, including the location, time, type and possible causes of the fault, etc.

[0108] Exemplarily, if the temperature sensor of the water tank 20 fails, the area of the water tank 20 will be prominently displayed on the touch screen, and a relevant fault prompt will pop up, clearly informing the operator of the problem.

[0109] From the above, it can be concluded that by introducing the touch - screen graphical dynamic display module 107, the operation convenience and information visualization degree of the system are greatly improved, and the complex device operation status is presented in an intuitive and vivid graphical way, enabling the operator to clearly understand the overall operation situation of the dust removal device at a glance.

[0110] In one embodiment of the present disclosure, with reference to Figure 3 , the touch screen graphical dynamic display module 107 includes a display device 401, an alarm module 402, and a control panel 403;

[0111] The display device 401, the alarm module 402, and the control panel 403 are all connected to the intelligent control box 103.

[0112] In this embodiment, the display device 401 is used to clearly present the real-time operating status of the devices in the system to the user in the form of intuitive graphics, charts, dynamic images, etc., and enable the user to clearly understand key information such as the temperature of the water tank 20, the pressure of the pipeline 30, and the working conditions of each module at a glance.

[0113] The alarm module 402 comes into play when the system detects an abnormality or a fault. When the intelligent control box 103 receives abnormal data from each detection module, it will transmit relevant information to the alarm module 402, and the alarm module 402 will immediately send an alarm to the user in a prominent way such as sound, light, or pop-up window, reminding the user to pay attention and handle the problem in a timely manner.

[0114] The control panel 403 provides an operation interface for the user to interact with the system. The user can input instructions through the control panel 403, such as starting or stopping certain devices, adjusting operating parameters, selecting different display modes, etc. The control panel 403 transmits the user's operation instructions to the intelligent control box 103, and the intelligent control box 103 performs corresponding control and adjustment.

[0115] Exemplarily, when the pressure in the system exceeds the set threshold, the intelligent control box 103 transmits this information to the alarm module 402 to issue an alarm, and at the same time highlights the relevant data on the display device 401, and the user can quickly take pressure reduction operations through the control panel 403.

[0116] From the above, it can be concluded that since the display device 401, the alarm module 402, and the control panel 403 are all connected to the intelligent control box 103, they can achieve fast and accurate data transmission and instruction interaction, thereby ensuring that the user can understand the system status in a timely and comprehensive manner, and effectively control and manage the system, greatly improving the safety performance during the operation of the dust removal device.

[0117] The above embodiments are only used to illustrate the technical solutions of the present disclosure, rather than to limit them; although the present disclosure has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present disclosure.

Claims

1. A safety detection system for a dust removal device, characterized in that, It includes a water tank detection module, a pipeline detection module, a heat preservation and tracing module, an electrical control module, and an intelligent control box; Both the water tank detection module and the pipeline detection module are connected to the intelligent control box; The intelligent control box is respectively connected to the electrical control module and the heat preservation and tracing module; The heat preservation and tracing module is respectively used to connect to the water tank and the pipeline; The water tank detection module is configured to detect the temperature and water level of the water tank; The pipeline detection module is configured to detect the temperature and water level of the pipeline; The heat preservation and tracing module is configured to maintain the temperatures of the water tank and the pipeline respectively; The intelligent control box is configured to receive the temperature information and water level information of the water tank detection module and the pipeline detection module respectively.

2. The safety detection system for a dust removal device according to claim 1, characterized in that, The water tank detection module includes a first temperature measurement unit and a first water level detection unit; Both the first temperature measurement unit and the first water level detection unit are arranged on the water tank; Both the first temperature measurement unit and the first water level detection unit are connected to the intelligent control box.

3. The safety detection system for a dust removal device according to claim 1, characterized in that The pipeline detection module includes a second temperature measurement unit and a second water level detection unit; Both the second temperature measurement unit and the second water level detection unit are arranged on the pipeline; Both the second temperature measurement unit and the second water level detection unit are connected to the intelligent control box.

4. The safety detection system for a dust removal device according to claim 1, characterized in that, The electrical control module includes a pressure detection module, a voltage detection module, a current detection module, a control unit, and a switch module; The pressure detection module, the voltage detection module, and the current detection module are all connected to the control unit; Both the control unit and the switch module are connected to the intelligent control box; The switch module is used to connect to the power supply.

5. The safety detection system for a dust removal device according to claim 1, wherein It further includes a drain valve; The drain valve is arranged at the lowest point of the pipeline; The drain valve is configured to empty the pipeline.

6. The safety detection system for a dust removal device according to claim 1, characterized in that, It further includes a self-check module; The self-check module is connected to the intelligent control box; The self-check module is configured to automatically diagnose the operating conditions of each module.

7. The safety detection system for a dust removal device according to claim 1, characterized in that It further includes a touch screen graphical dynamic display module; The touch screen graphical dynamic display module is connected to the intelligent control box; The touch screen graphical dynamic display module is configured to display the operating state of the device in real time and perform a summary display of faults.

8. The safety detection system for a dust removal device according to claim 7, characterized in that, The touch screen graphical dynamic display module includes a display device, an alarm module, and a control panel; The display device, the alarm module, and the control panel are all connected to the intelligent control box.