Environmental radiation monitoring device

By designing an environmental radiation monitoring device, including a monitoring base frame, support frame, and multiple monitoring components, the problems of cumbersome installation and poor monitoring effect of existing radiation detection instruments are solved, realizing efficient and convenient environmental radiation monitoring and soil moisture detection.

CN116577818BActive Publication Date: 2026-01-06SHAANXI NPU SCI PARK CO LTD
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Patent Information

Application Number
CN202310588332.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-24
Publication Date
2026-01-06
Estimated Expiration
2043-05-24

AI Technical Summary

Technical Problem

Existing radiation environment detection instruments are cumbersome to install and have poor monitoring performance, making it impossible to comprehensively monitor radiation indicators in the environment.

Method used

An environmental radiation monitoring device was designed, including a monitoring base frame, a support frame, a connecting seat, and multiple monitoring components. The monitoring efficiency and effect are improved by setting up multiple monitoring components. A soil moisture monitoring component is installed on the outside of the monitoring base frame to ensure a suitable monitoring environment. Data storage devices and cameras are installed on the connecting crossbars and vertical bars to facilitate data reading.

Benefits of technology

It improves the accuracy and efficiency of environmental radiation monitoring, simplifies the installation process, and enables comprehensive monitoring of radiation indicators in the environment and real-time detection of soil moisture.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides an environmental radiation monitoring device. The environmental radiation monitoring device comprises a monitoring base frame, a first monitoring support frame, a second monitoring support frame, a first adapter seat, a second adapter seat, a third adapter seat, a first monitoring assembly, a second monitoring assembly and a third monitoring assembly. The monitoring base frame is in a rectangular structure. The first monitoring support frame is installed on one side of the monitoring base frame. The second monitoring support frame is installed on the other side of the monitoring base frame. The first adapter seat is installed on the first monitoring support frame. The second adapter seat is installed on the first monitoring support frame. The third adapter seat is installed on the second monitoring support frame. The first monitoring assembly is installed on the first adapter seat. The application improves the monitoring efficiency and monitoring effect of the application on the detection index in the environment through the arrangement of multiple monitoring assemblies. Meanwhile, the arrangement of the monitoring base frame can improve the installation convenience of the application.
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Description

Technical Field

[0001] This invention relates to the technical field of radiation monitoring devices, and in particular to environmental radiation monitoring devices. Background Technology

[0002] As users become more environmentally conscious, they often need to use radiation monitors to monitor the radiation levels in the environment in their daily lives.

[0003] A radiation detector is an instrument used to measure high-energy and low-energy X-rays and gamma rays;

[0004] However, in existing technologies, radiation environment monitoring instruments are generally installed at designated locations using tools to detect the radiation levels. This installation process is cumbersome, causing inconvenience for users. Furthermore, existing radiation environment monitoring instruments have poor monitoring performance and cannot comprehensively monitor radiation indicators in the environment. Therefore, there is an urgent need to redesign a new environmental radiation monitoring device to solve these problems. Summary of the Invention

[0005] The present invention provides an environmental radiation monitoring device to solve the technical problems mentioned in the background section.

[0006] This invention provides an environmental radiation monitoring device, which includes a monitoring base frame, a first monitoring support frame, a second monitoring support frame, a first connecting seat, a second connecting seat, a third connecting seat, a first monitoring component, a second monitoring component, and a third monitoring component. The monitoring base frame has a rectangular structure. The first monitoring support frame is installed on one side of the monitoring base frame, and the second monitoring support frame is installed on the other side of the monitoring base frame. The first connecting seat is installed on the first monitoring support frame, the second connecting seat is installed on the first monitoring support frame, and the third connecting seat is installed on the second monitoring support frame. The first monitoring component is installed on the first connecting seat, the second monitoring component is installed on the second connecting seat, and the third monitoring component is installed on the third connecting seat.

[0007] Optionally, a plurality of soil monitoring components for monitoring external soil moisture are installed on the outer side of the monitoring base frame; the soil monitoring components include a soil monitoring support and a soil moisture monitor, the soil monitoring support is installed on the side wall of the monitoring base frame, and the soil moisture monitor is installed on the soil monitoring support.

[0008] Optionally, a connecting crossbar is installed between the first monitoring support frame and the second monitoring support frame, and at least one connecting seat is installed on the connecting crossbar, and a first monitoring data storage device and a second monitoring data storage device are installed on the connecting seat.

[0009] Optionally, a connecting longitudinal rod is fixedly connected to the connecting crossbar, a first monitoring mounting base is fixedly connected to one end of the connecting longitudinal rod, a first monitoring camera is fixedly connected to the first monitoring mounting base, and a second monitoring mounting base is fixedly connected to the other end of the connecting longitudinal rod, a second monitoring camera is fixedly connected to the second monitoring mounting base.

[0010] Optionally, the first monitoring component includes a first monitoring limiting device, a radiation monitoring main body, a first monitoring probe, and a second monitoring probe. The first monitoring limiting device is mounted on the first connecting seat, the radiation monitoring main body is mounted on the side of the first monitoring limiting device away from the first connecting seat, the first monitoring probe is mounted on the radiation monitoring main body, and the second monitoring probe is mounted on the radiation monitoring main body.

[0011] Optionally, the first monitoring limiting device includes a first limiting base plate, a second limiting base plate, a first connecting rod, a second connecting rod, a guide limiting part, at least one first guide part, and at least one second guide part. The first limiting base plate is mounted on the first connecting seat, and the second limiting base plate is mounted on the first connecting seat. The first connecting rod passes through the first limiting base plate and the second limiting base plate, and the second connecting rod passes through the first limiting base plate and the second limiting base plate. The guide limiting part is fixedly connected to the lower side of the radiation monitoring main body. One end of the first guide part is fixedly connected to the first limiting base plate, and the other end of the first guide part is slidably connected within the guide limiting part. One end of the second guide part is fixedly connected to the second limiting base plate, and the other end of the second guide part is slidably connected within the guide limiting part.

[0012] Optionally, a radiation monitoring receiving component is installed on the first monitoring probe; the radiation monitoring receiving component includes a sleeve, a first monitoring extension piece, a second monitoring extension piece, and an extension piece limiting frame. The sleeve is installed on the outside of the first monitoring probe, the extension piece limiting frame is installed on one side of the sleeve, the first monitoring extension piece is connected to one side of the sleeve, the second monitoring extension piece is connected to the other side of the sleeve, and one end of the first monitoring extension piece passes through the extension piece limiting frame, and one end of the second monitoring extension piece passes through the extension piece limiting frame.

[0013] Optionally, the first connector may also be provided with a probe limiting rod for limiting the output end of the first monitoring component.

[0014] Optionally, the first monitoring support frame and the second monitoring support frame are arranged parallel to each other.

[0015] Optionally, the first monitoring component, the second monitoring component, and the third monitoring component have the same structure.

[0016] The beneficial effects of this invention are as follows: The environmental radiation monitoring device includes a monitoring base frame, a first monitoring support frame, a second monitoring support frame, a first connecting seat, a second connecting seat, a third connecting seat, a first monitoring component, a second monitoring component, and a third monitoring component. The monitoring base frame has a rectangular structure. The first monitoring support frame is installed on one side of the monitoring base frame, and the second monitoring support frame is installed on the other side of the monitoring base frame. The first connecting seat is installed on the first monitoring support frame, the second connecting seat is installed on the first monitoring support frame, and the third connecting seat is installed on the second monitoring support frame. The first monitoring component is installed on the first connecting seat, the second monitoring component is installed on the second connecting seat, and the third monitoring component is installed on the third connecting seat. This invention improves the monitoring efficiency and effect of environmental indicators by using multiple monitoring components. Simultaneously, the monitoring base frame enhances the ease of installation. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0018] Figure 1 This is a first-view structural schematic diagram of the environmental radiation monitoring device provided by the present invention;

[0019] Figure 2 yes Figure 1 A magnified view of a portion of region A in the middle;

[0020] Figure 3 This is a schematic diagram of the structure of the first monitoring component of the environmental radiation monitoring device provided by the present invention;

[0021] Figure 4 yes Figure 3 A magnified view of a portion of region B in the middle. Detailed Implementation

[0022] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. It is understood that the specific embodiments described herein are only for explaining the present invention and not for limiting the present invention. Furthermore, it should be noted that, for ease of description, only the parts related to the present invention are shown in the drawings, not all structures. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0023] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0024] Please see Figures 1 to 4 The environmental radiation monitoring device of the present invention includes a monitoring base frame 100, a first monitoring support frame 200, a second monitoring support frame, a first connecting seat 400, a second connecting seat 500, a third connecting seat 600, a first monitoring component, a second monitoring component 800, and a third monitoring component 900.

[0025] The monitoring base frame has a rectangular structure. The first monitoring support frame 200 is installed on one side of the monitoring base frame, and the second monitoring support frame is installed on the other side of the monitoring base frame. The first connecting seat 400 is installed on the first monitoring support frame 200, the second connecting seat 500 is installed on the first monitoring support frame 200, and the third connecting seat 600 is installed on the second monitoring support frame. The first monitoring component is installed on the first connecting seat 400, the second monitoring component 800 is installed on the second connecting seat 500, and the third monitoring component 900 is installed on the third connecting seat 600.

[0026] The monitoring base frame 100 provides fixed support for all structures within the environmental radiation monitoring device of this invention. Meanwhile, the first monitoring support frame 200 and the second monitoring support frame cooperate to provide support for the first connecting seat 400, the second connecting seat 500, and the third connecting seat 600.

[0027] Furthermore, the first connector 400 provides support for the first monitoring component, the second connector 500 provides support for the second monitoring component 800, and the third connector 600 provides support for the third monitoring component 900.

[0028] Furthermore, the cooperation between the first monitoring component, the second monitoring component 800, and the third monitoring component 900 improves the overall accuracy and efficiency of the environmental radiation monitoring device of the present invention in monitoring the radiation index in the external environment. Moreover, the three components are oriented differently, enabling comprehensive monitoring of radiation indicators in the environment.

[0029] In this embodiment, a plurality of soil monitoring components for monitoring external soil moisture are installed on the outer side of the monitoring base frame 100; the soil monitoring components include a soil monitoring support and a soil moisture monitor 112, the soil monitoring support is installed on the side wall of the monitoring base frame 100, and the soil moisture monitor 112 is installed on the soil monitoring support.

[0030] Among them, the soil monitoring component can detect the moisture level in the soil on the ground where the monitoring base frame 100 is installed in real time, so as to ensure that the first monitoring component, the second monitoring component 800 and the third monitoring component 900 can monitor the radiation index in a suitable environment.

[0031] Specifically, the soil monitoring support base provides fixed support for the soil moisture monitor 112. When the monitoring base frame 100 is installed on the ground, the soil moisture monitor 112 contacts the ground, thereby detecting the soil moisture in real time.

[0032] In this embodiment, a connecting crossbar 210 is installed between the first monitoring support frame 200 and the second monitoring support frame. At least one connecting seat is installed on the connecting crossbar 210, and a first monitoring data storage device 230 and a second monitoring data storage device are installed on the connecting seat.

[0033] The connecting crossbar 210 provides fixed support for the connecting seat. The first monitoring data storage device 230 is electrically connected to the output terminals of the first monitoring component and the second monitoring component 800 to store the monitoring data in the first monitoring component and the second monitoring component 800. The second monitoring data storage device is electrically connected to the output terminal of the third monitoring component 900 to store the environmental radiation monitoring data in the third monitoring component 900.

[0034] In this embodiment, a connecting longitudinal rod 250 is fixedly connected to the connecting crossbar 210, a first monitoring mounting base is fixedly connected to one end of the connecting longitudinal rod 250, a first monitoring camera 270 is fixedly connected to the first monitoring mounting base, and a second monitoring mounting base 280 is fixedly connected to the other end of the connecting longitudinal rod 250, a second monitoring camera is fixedly connected to the second monitoring mounting base 280.

[0035] The first monitoring camera 270 and the second monitoring camera are both facing downwards to facilitate the capture of images of the installation environment of the monitoring frame 100. This allows users to combine the images of the external environment captured by the first monitoring camera 270 and the second monitoring camera when reading the monitoring data of the first monitoring component, the second monitoring component 800 and the third monitoring component 900, thereby improving the accuracy of data interpretation.

[0036] In this embodiment, the first monitoring component includes a first monitoring limiting device, a radiation monitoring main body 720, a first monitoring probe 730, and a second monitoring probe 740. The first monitoring limiting device is mounted on the first connecting seat 400, the radiation monitoring main body 720 is mounted on the side of the first monitoring limiting device away from the first connecting seat 400, the first monitoring probe 730 is mounted on the radiation monitoring main body 720, and the second monitoring probe 740 is mounted on the radiation monitoring main body 720.

[0037] The first monitoring limiting device is used to support other structures within the first monitoring component. The first monitoring probe 730 and the second monitoring probe 740 are in contact with the outside air, and both the first monitoring probe 730 and the second monitoring probe 740 are electrically connected to the radiation monitoring main body 720. The radiation monitoring main body 720 monitors the first monitoring probe 730 and the second monitoring probe 740 to obtain the radiation index in the external environment in real time.

[0038] In this embodiment, the first monitoring and limiting device includes a first limiting base plate 711, a second limiting base plate 712, a first connecting rod 713, a second connecting rod 714, a guide limiting part 715, at least one first guide part 716, and at least one second guide part 717. The first limiting base plate 711 is mounted on the first connecting seat 400, the second limiting base plate 712 is mounted on the first connecting seat 400, and the first connecting rod 713 passes through the first limiting base plate 711 and the second limiting base plate 712. Two connecting rods 714 are provided to pass through the first limiting base plate 711 and the second limiting base plate 712. The guide limiting part 715 is fixedly connected to the lower side of the radiation monitoring main body 720. One end of the first guide part 716 is fixedly connected to the first limiting base plate 711, and the other end of the first guide part 716 is slidably connected to the guide limiting part 715. One end of the second guide part 717 is fixedly connected to the second limiting base plate 712, and the other end of the second guide part 717 is slidably connected to the guide limiting part 715.

[0039] Among them, the first limiting base plate 711 and the second limiting base plate 712 cooperate with each other to support the radiating main body, and the first connecting rod 713 and the second connecting rod 714 can improve the stability between the first limiting base and the second limiting base.

[0040] Meanwhile, the upper ends of the first guide portion 716 and the second guide portion 717 are slidably connected within the guide limiting portion 715, thereby enabling the radiation monitoring main body portion 720 to move within a certain range along the installation direction of the guide limiting portion 715.

[0041] In this embodiment, a radiation monitoring receiving component is installed on the first monitoring probe 730. The radiation monitoring receiving component includes a sleeve 731, a first monitoring extension piece 732, a second monitoring extension piece 733, and an extension piece limiting frame 734. The sleeve 731 is installed on the outside of the first monitoring probe 730, and the extension piece limiting frame 734 is installed on one side of the sleeve 731. The first monitoring extension piece 732 is connected to one side of the sleeve 731, and the second monitoring extension piece 733 is connected to the other side of the sleeve 731. One end of the first monitoring extension piece 732 passes through the extension piece limiting frame 734, and one end of the second monitoring extension piece 733 passes through the extension piece limiting frame 734.

[0042] Among them, the radiation monitoring receiving component can improve the contact range of the first monitoring probe 730 with the air in the external environment, thereby ensuring the accuracy of the first monitoring component in monitoring the radiation index in the external environment.

[0043] Specifically, the sleeve 731 provides fixed support for the first monitoring extension piece 732 and the second monitoring extension piece 733, and the extension piece limiting bracket 734 limits the lower ends of the first monitoring extension piece 732 and the second monitoring extension piece 733. The first monitoring extension piece 732 and the second monitoring extension piece 733 have a certain adsorption effect, which can improve the sensitivity of the first monitoring probe 730 to contact with the outside air, thereby improving the monitoring accuracy of the first monitoring probe 730.

[0044] In this embodiment, the first connector 400 is also provided with a probe limiting rod 410 for limiting the output end of the first monitoring component.

[0045] Specifically, the probe limiting rod 410 is mainly used to fix the first monitoring probe 730 and the second monitoring probe 740 in order to improve the stability of the first monitoring probe 730 and the second monitoring probe 740 when monitoring radiation in the external environment.

[0046] In this embodiment, the first monitoring support frame 200 and the second monitoring support frame are arranged parallel to each other.

[0047] The first monitoring support frame 200 and the second monitoring support frame, which are arranged in parallel to each other, can ensure the stability of the support for the first connecting seat 400, the second connecting seat 500 and the third connecting seat 600.

[0048] In this embodiment, the first monitoring component, the second monitoring component 800, and the third monitoring component 900 have the same structure.

[0049] Therefore, the working principles of the first monitoring component, the second monitoring component 800, and the third monitoring component 900 are exactly the same.

[0050] The environmental radiation monitoring device includes a monitoring base frame 100, a first monitoring support frame 200, a second monitoring support frame, a first connecting seat 400, a second connecting seat 500, a third connecting seat 600, a first monitoring component, a second monitoring component 800, and a third monitoring component 900. The monitoring base frame has a rectangular structure. The first monitoring support frame 200 is installed on one side of the monitoring base frame, and the second monitoring support frame is installed on the other side of the monitoring base frame. The first connecting seat 400 is installed on the first monitoring support frame 200, the second connecting seat 500 is installed on the first monitoring support frame 200, the third connecting seat 600 is installed on the second monitoring support frame, the first monitoring component is installed on the first connecting seat 400, the second monitoring component 800 is installed on the second connecting seat 500, and the third monitoring component 900 is installed on the third connecting seat 600. The invention improves the monitoring efficiency and effectiveness of environmental indicators by using multiple monitoring components. Simultaneously, the monitoring base frame enhances the ease of installation. The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural or procedural transformations made based on the content of the present invention specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of the present invention.

Claims

1. An environmental radiation monitoring device, characterized by, The utility model relates to a kind of monitoring device for monitoring the soil moisture of field, including: Monitoring base frame, the monitoring base frame is rectangular structure; First monitoring support frame, the first monitoring support frame is installed in one side of the monitoring base frame; Second monitoring support frame, the second monitoring support frame is installed in the other side of the monitoring base frame; First adapter seat, the first adapter seat is installed on the first monitoring support frame; Second adapter seat, the second adapter seat is installed on the first monitoring support frame; Third adapter seat, the third adapter seat is installed on the second monitoring support frame; First monitoring component, the first monitoring component is installed on the first adapter seat; Second monitoring component, the second monitoring component is installed on the second adapter seat; Third monitoring component, the third monitoring component is installed on the third adapter seat; The first monitoring component includes first monitoring limiting device, radiation monitoring main body, first monitoring probe and second monitoring probe, the first monitoring limiting device is installed on the first adapter seat, the radiation monitoring main body is installed on the side of the first monitoring limiting device away from the first adapter seat, the first monitoring probe is installed on the radiation monitoring main body, and the second monitoring probe is installed on the radiation monitoring main body; Radiation monitoring receiving component is installed on the first monitoring probe; The radiation monitoring receiving component includes sleeve part, first monitoring extension piece, second monitoring extension piece and extension piece limiting frame, the sleeve part is installed on the outside of the first monitoring probe, the extension piece limiting frame is installed on one side of the sleeve part, the first monitoring extension piece is connected with one side of the sleeve part, the second monitoring extension piece is connected with the other side of the sleeve part, and one end of the first monitoring extension piece passes through the extension piece limiting frame, and one end of the second monitoring extension piece passes through the extension piece limiting frame.

2. An ambient radiation monitoring device according to claim 1, characterised in that, A plurality of soil monitoring components for monitoring the soil moisture of field are installed on the outside of the monitoring base frame; The soil monitoring component includes soil monitoring support seat and soil moisture monitor, the soil monitoring support seat is installed on the side wall of the monitoring base frame, and the soil moisture monitor is installed on the soil monitoring support seat.

3. The device of claim 1, wherein, A connecting cross bar is installed between the first monitoring support frame and the second monitoring support frame, at least one adapter seat is installed on the connecting cross bar, and first monitoring data storage device and second monitoring data storage device are installed on the adapter seat.

4. An ambient radiation monitoring device according to claim 3, characterised in that, The connecting cross bar is fixedly connected with connecting longitudinal bar, the first monitoring fixed seat is fixedly connected on one end of the connecting longitudinal bar, the first monitoring camera is fixedly connected on the first monitoring fixed seat, the second monitoring fixed seat is fixedly connected on the other end of the connecting longitudinal bar, and the second monitoring camera is fixedly connected on the second monitoring fixed seat.

5. The device of claim 1, wherein, The first monitoring limiting device comprises a first limiting bottom plate, a second limiting bottom plate, a first connecting rod, a second connecting rod, a guiding limiting part, at least one first guiding part and at least one second guiding part, the first limiting bottom plate is installed on the first connecting seat, the second limiting bottom plate is installed on the first connecting seat, the first connecting rod is arranged through the first limiting bottom plate and the second limiting bottom plate, the second connecting rod is arranged through the first limiting bottom plate and the second limiting bottom plate, the guiding limiting part is fixedly connected to the lower side of the radiation monitoring main body part, one end of the first guiding part is fixedly connected to the first limiting bottom plate, the other end of the first guiding part is slidably connected in the guiding limiting part, one end of the second guiding part is fixedly connected to the second limiting bottom plate, and the other end of the second guiding part is slidably connected in the guiding limiting part.

6. The device of claim 1, wherein, A probe limiting rod for limiting the output end of the first monitoring assembly is further arranged on the first connecting seat.

7. The device of claim 1, wherein, The first monitoring support frame and the second monitoring support frame are arranged in parallel with each other.

8. The ambient radiation monitoring device of claim 1, wherein, The first monitoring assembly, the second monitoring assembly and the third monitoring assembly are of the same structure.

Citation Information

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