Mounting structure of radar water level gauge
By designing an installation structure including mounting rods, installation components, angle adjustment parts and horizontal components, the problem of angle deviation when the radar water level gauge is installed on uneven ground is solved, the horizontal stability and angle adjustment of the radar water level gauge are achieved, and the accuracy of water level detection is improved.
Patent Information
- Application Number
- CN202422023323.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-20
AI Technical Summary
When installing a radar water level meter on the river beach, due to uneven terrain, the angle of the radar water level meter is easily deviated, and the existing installation structure is difficult to adjust, resulting in the radar water level meter being unable to work horizontally, which in turn affects the accuracy of the detection results.
An installation structure including a mounting rod, mounting assembly, angle adjusting member and horizontal assembly is designed. The mounting assembly is connected to the radar water level gauge through the first and second connecting parts, the clasp is used to fix the mounting rod, and the angle adjustment member realizes angle adjustment through the fitting of the projection and recessed parts, and the horizontal assembly ensures that the radar water level gauge is always level.
Through the setting of the horizontal component, ensure that the radar water level gauge remains level under the action of gravity, thereby achieving accurate detection of the water level. The angle adjuster is designed to facilitate the adjustment of the angle of the radar level gauge, so that it rotates around the axis of the mounting rod as the center, thereby improving the accuracy of measurement.
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Figure CN222911222U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to an installation structure, and in particular to an installation structure for a radar water level gauge. Background Art
[0002] A radar water level gauge is an electronic device that uses electromagnetic waves to detect targets. The main measurement principle is to emit radar pulses from the radar water level sensing antenna, and the antenna receives the pulses reflected from the water surface, thereby realizing functions such as water conservancy monitoring, sewage treatment, and flood prevention warning;
[0003] When installing a radar water level gauge, it is usually necessary to ensure the level of the radar water level gauge. However, the installation positions of radar water level gauges are mostly on the installation poles by the river beach. Due to the uneven terrain by the river beach, it is easy to cause the angle of the radar water level gauge to deviate. However, the existing installation structures are not convenient for adjusting the angle of the radar water level gauge, resulting in the radar water level gauge being unable to work horizontally and easily causing errors in the detection results. Summary of the Utility Model
[0004] An embodiment of the present application provides an installation structure for a radar water level gauge to solve the problems existing in the related art. The technical solution is as follows:
[0005] An embodiment of the present application provides an installation structure for a radar water level gauge, including:
[0006] An installation pole, one end of which is installed on a bracket;
[0007] An installation component, which is arranged at the end of the installation pole far from the bracket, and the installation pole is connected to the radar water level gauge through the installation component;
[0008] An angle adjusting member, which is arranged on the installation component to adjust the angle of the radar water level gauge relative to the installation pole;
[0009] A horizontal component, which is arranged at the connection between the installation component and the radar water level gauge to ensure the level of the radar water level gauge.
[0010] In one embodiment,
[0011] The installation component includes:
[0012] A first connecting member, which is arranged on the radar water level gauge, and the horizontal component is arranged at the connection between the first connecting member and the radar water level gauge;
[0013] A second connecting member, which is detachably connected to the first connecting member;
[0014] A hoop, which is detachably installed on the second connecting member, and the end of the installation pole far from the bracket is fixed on the second connecting member through the hoop, and the angle adjusting member is arranged on the hoop.
[0015] In one embodiment,
[0016] Both the first connecting member and the second connecting member have an "L" - shaped cross - section, and the first connecting member and the second connecting member are connected by a connecting member.
[0017] In one embodiment,
[0018] The hoop is arranged in an inverted "U" shape, both ends of the hoop have threads, both ends of the hoop penetrate through the second connecting member and are threadedly connected with nuts, and the second connecting member has holes for the threaded ends of the hoop to pass through.
[0019] In one embodiment,
[0020] The angle adjusting member includes:
[0021] A plurality of protruding portions, which are all arranged on the side of the hoop facing the mounting rod, and the plurality of protruding portions are evenly arranged along the inner side of the hoop;
[0022] A plurality of recessed portions, which are all arranged on the mounting rod, the mounting rod has a groove adapted to the hoop, and the plurality of recessed portions are evenly arranged in a ring in the groove. When the hoop fixes the mounting rod, the hoop is located in the groove, and the plurality of protruding portions are located in the corresponding recessed portions.
[0023] In one embodiment,
[0024] The intervals between the plurality of recessed portions and the plurality of protruding portions are adapted to each other.
[0025] In one embodiment,
[0026] The horizontal component includes:
[0027] A first collar, which is arranged on the first connecting member;
[0028] Two first spherical connecting shafts, which are arranged in a straight line on the first collar, and both of the two first spherical connecting shafts are connected to the first connecting member;
[0029] A second collar, which is arranged on the first collar, and the second collar is fixedly sleeved on the radar water level gauge;
[0030] Two second spherical connecting shafts, which are arranged in a straight line on the second collar, and both of the two second spherical connecting shafts are connected to the first collar.
[0031] In one embodiment,
[0032] The second spherical connecting shaft is arranged at a right angle to the first spherical connecting shaft.
[0033] In one embodiment,
[0034] The first set of rings rotates about two first spherical connecting axes;
[0035] The second set of rings rotates about two second spherical connecting circumferences.
[0036] In one embodiment,
[0037] The two first spherical connecting axes are arranged parallel to the mounting rod.
[0038] The advantages or beneficial effects in the above technical solutions at least include:
[0039] By setting the horizontal component, it is ensured that the radar water level gauge always remains horizontal under the action of gravity, so as to accurately detect the water level. By setting the angle adjusting member between the mounting rod and the mounting component, it is convenient to adjust the angle of the radar water level gauge relative to the mounting rod, so that the radar water level gauge rotates around the axis of the mounting rod, which is convenient to adjust the angle of the radar water level gauge, thereby making the measurement of the radar water level gauge more accurate.
[0040] The above summary is only for the purpose of the specification and is not intended to be limiting in any way. In addition to the illustrative aspects, embodiments and features described above, further aspects, embodiments and features of the present application will be readily apparent by reference to the drawings and the following detailed description. BRIEF DESCRIPTION OF THE DRAWINGS
[0041] In the drawings, unless otherwise specified, the same reference numerals throughout the several views denote the same or similar components or elements. These drawings are not necessarily drawn to scale. It should be understood that these drawings only depict some embodiments disclosed in the present application and should not be regarded as limiting the scope of the present application.
[0042] Figure 1 is a schematic structural diagram of the present utility model;
[0043] Figure 2 is Figure 1 an exploded structural diagram of;
[0044] Figure 3 is Figure 2 an enlarged structural diagram of part A in;
[0045] Figure 4 is Figure 1 a schematic structural diagram of the horizontal component in;
[0046] In the figure:
[0047] 100, mounting structure;
[0048] 110, mounting rod;
[0049] 120. Installation component; 121. First connecting piece; 122. Second connecting piece; 123. Hoop
[0050] 130. Angle adjusting piece; 131. Depressed part; 132. Groove
[0051] 140. Horizontal component; 141. First collar; 142. First spherical connecting shaft; 143. Second collar; 144. Second spherical connecting shaft. Detailed implementation manners
[0052] In the following, only some exemplary embodiments are simply described. As those skilled in the art can recognize, the described embodiments can be modified in various different ways without departing from the spirit or scope of the present application. Therefore, the drawings and the description are regarded as being exemplary in nature rather than restrictive.
[0053] Figures 1-4 The structural diagram of an installation structure 100 of a radar water level gauge according to an embodiment of the present application is shown. As Figures 1-4 shown, the installation structure 100 may include:
[0054] Installation rod 110, one end of the installation rod 110 is installed on the bracket;
[0055] Installation component 120, the installation component 120 is arranged at the end of the installation rod 110 away from the bracket, and the installation rod 110 is connected to the radar water level gauge through the installation component 120;
[0056] Angle adjusting piece 130, the angle adjusting piece 130 is arranged on the installation component 120 to adjust the angle of the radar water level gauge relative to the installation rod 110;
[0057] Horizontal component 140, the horizontal component 140 is arranged at the connection between the installation component 120 and the radar water level gauge to ensure the horizontality of the radar water level gauge.
[0058] In this embodiment, the horizontal component 140 is arranged on the radar water level gauge, the radar water level gauge is installed on the installation component 120 through the horizontal component 140, the installation component 120 is connected to the installation rod 110, and the angle adjusting piece 130 is arranged at the connection between the installation component 120 and the installation rod 110;
[0059] Through the setting of the horizontal component 140, it is ensured that the radar water level gauge always remains horizontal under the action of gravity, so as to accurately detect the water level. The angle adjusting member 130 is arranged between the mounting rod 110 and the mounting component 120, which is convenient for adjusting the angle of the radar water level gauge relative to the mounting rod 110, enabling the radar water level gauge to rotate around the axis of the mounting rod 110, and facilitating the adjustment of the angle of the radar water level gauge;
[0060] The horizontal component 140 is arranged on the mounting component 120, but the horizontal adjustment of the radar water level gauge by the horizontal component 140 is small. Therefore, after the installation angle of the mounting component 120 is adjusted in advance by the angle adjusting member 130, the horizontal component 140 can be used to make the radar water level gauge remain horizontal.
[0061] Such as Figures 1-2 shown, in one embodiment,
[0062] The mounting component 120 includes:
[0063] The first connecting member 121 is arranged on the radar water level gauge, and the horizontal component 140 is arranged at the connection between the first connecting member 121 and the radar water level gauge;
[0064] The second connecting member 122 is detachably connected to the first connecting member 121;
[0065] The hoop 123 is detachably installed on the second connecting member 122. One end of the mounting rod 110 away from the bracket is fixed on the second connecting member 122 through the hoop 123, and the angle adjusting member 130 is arranged on the hoop 123.
[0066] In this embodiment, both the first connecting member 121 and the second connecting member 122 are in an "L" shape. One side of the first connecting member 121 is connected to one side of the second connecting member 122 to form a "T" - shaped structure. The radar water level gauge is arranged on the horizontal plate of the first connecting member 121, the horizontal component 140 is arranged at the connection between the radar water level gauge and the first connecting member 121, and a through - hole for installing the horizontal component 140 is opened on the first connecting member 121.
[0067] Such as Figures 1-2 shown, in one embodiment,
[0068] The hoop 123 is arranged in an inverted "U" shape. Both ends of the hoop 123 have threads. Both ends of the hoop 123 penetrate through the second connecting member 122 and are thread - connected with nuts. The second connecting member 122 has holes for the threaded ends of the hoop 123 to pass through.
[0069] In this embodiment, the nut is screwed onto the thread on the hoop 123. When the mounting rod 110 is mounted on the second connecting member 122 through the hoop 123, by adjusting the distance of the nut from the hoop 123, the hoop 123 cooperates with the cross plate of the second connecting member 122 to clamp the mounting rod 110;
[0070] By adjusting the position of the nut at the threaded end, the distance between the hoop 123 and the second connecting member 122 can be changed, so as to adapt to mounting rods 110 of different diameters.
[0071] Such as Figures 1-3 shown, in one embodiment,
[0072] The angle adjusting member 130 includes:
[0073] A plurality of protruding portions, all of which are provided on the side of the hoop 123 facing the mounting rod 110, and the plurality of protruding portions are evenly arranged along the inner side of the hoop 123;
[0074] A plurality of recessed portions 131, all of which are provided on the mounting rod 110. The mounting rod 110 has a groove 132 adapted to the hoop 123, and the plurality of recessed portions 131 are evenly arranged in a ring in the groove 132. When the hoop 123 fixes the mounting rod 110, the hoop 123 is located in the groove 132, and the plurality of protruding portions are located in the corresponding recessed portions 131.
[0075] In this embodiment, after the mounting rod 110 is installed, the mounting rod 110 is installed on the second connecting member 122 through the hoop 123. When the radar water level gauge needs to be kept horizontal, loosen the nut to make the hoop 123, the second connecting member 122 and the first connecting member 121 rotate relative to the mounting rod 110. At this time, the hoop 123 rotates in the groove 132. When it rotates to a certain angle, tighten the nut again to make the protruding portion embed into the recessed portion 131, so as to lock the angle of the hoop 123, the second connecting member 122 and the first connecting member 121 relative to the mounting rod 110;
[0076] The recessed portions 131 are arranged in a ring on the mounting rod 110, the groove 132 is annular, and the center of the cross section of the groove 132 coincides with the center of the cross section of the mounting rod 110. The setting track of the recessed portions 131 is the same as the circular track of the cross section of the groove 132. The maximum number of the recessed portions 131 is three hundred and sixty. The more the number of the recessed portions 131 is set, the more accurate the adjustment degree of the hoop 123 is;
[0077] The shape of the protruding portion is adapted to the shape of the recessed portion 131. At least one protruding portion is provided to ensure that the hoop 123 locks the second connecting member 122 on the mounting rod 110.
[0078] Such as Figures 1-3As shown, in one embodiment,
[0079] The intervals between several recessed portions 131 are adapted to the intervals between several protruding portions.
[0080] In this embodiment, when multiple protruding portions are provided, the intervals between the protruding portions are adapted to the intervals between the recessed portions 131, so as to ensure that when the recessed portions 131 are deflected, the hoop 123 can be engaged in the groove 132.
[0081] Such as Figures 2-4 As shown, in one embodiment,
[0082] The horizontal component 140 includes:
[0083] A first collar 141, which is arranged on the first connecting member 121;
[0084] Two first spherical connecting shafts 142, which are arranged in a straight line on the first collar 141, and both two first spherical connecting shafts 142 are connected to the first connecting member 121;
[0085] A second collar 143, which is arranged on the first collar 141 and is fixedly sleeved on the radar water level gauge;
[0086] Two second spherical connecting shafts 144, which are arranged in a straight line on the second collar 143, and both two second spherical connecting shafts 144 are connected to the first collar 141.
[0087] In this embodiment, the first spherical connecting shafts 142 and the second spherical connecting shafts 144 are arranged in a cross shape, and both two first spherical connecting shafts 142 are located on the same straight line, and both two second spherical connecting shafts 144 are located on the same straight line (that is, the two first spherical connecting shafts 142 are at 180°, and the two second spherical connecting shafts 144 are at 180°). The first collar 141 rotates around the axis of the two first spherical connecting shafts 142, and the second collar 143 rotates around the axis of the two second spherical connecting circumferences;
[0088] Taking the first spherical connecting shaft 142 and the second spherical connecting shaft 144 as axes to establish a coordinate system, the connection line of the two first spherical connecting shafts 142 forms the Y axis, the connection line of the two second spherical connecting shafts 144 forms the X axis, the first collar 141 rotates around the Y axis, the second collar 143 rotates around the X axis, and the centers of the first collar 141 and the second collar 143 both overlap with the axes of the X axis and the Y axis;
[0089] The two first spherical connecting shafts 142 are arranged in parallel with the mounting rod 110, that is, the Y axis is arranged in parallel with the mounting rod 110;
[0090] It should be noted that since the first set of rings 141 is provided on the first connecting member 121, and the first connecting member 121 is provided with holes for installing the first set of rings 141. However, due to the relatively large volume of the radar water level gauge, the movable angle of the first set of rings 141 is preferred. Therefore, when the radar water level gauge needs to rotate a large angle, it is necessary to adjust the angle of the radar water level gauge in advance through the convex portion on the hoop 123 and the concave portion 131 on the mounting rod 110, so as to ensure that the radar water level gauge better maintains a horizontal state and makes the measurement result more accurate.
[0091] For the functions of the various modules in the devices of the embodiments of the present invention, reference can be made to the corresponding descriptions in the above methods, and details will not be repeated here.
[0092] The above is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed in the present application can easily think of various changes or substitutions, and these should all be covered within the protection scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.
Claims
1. A mounting structure of a radar water level gauge, characterized in that: include: A mounting rod, one end of which is mounted on the bracket; A mounting assembly, wherein the mounting assembly is arranged on an end of the mounting rod away from the bracket, and the mounting rod is connected to the radar water level gauge through the mounting assembly; An angle adjustment member, which is disposed on the mounting assembly and is used to adjust the angle of the radar water level gauge relative to the mounting rod; A horizontal component is arranged at the connection between the mounting component and the radar water level gauge to ensure the levelness of the radar water level gauge.
2. The installation structure of a radar water level gauge according to claim 1, characterized in that: The installation assembly includes: a first connecting member, wherein the first connecting member is arranged on the radar water level gauge, and the horizontal component is arranged at the connection between the first connecting member and the radar water level gauge; a second connecting member, the second connecting member being detachably connected to the first connecting member; A clamp is detachably mounted on the second connecting member, and an end of the mounting rod away from the bracket is fixed to the second connecting member through the clamp, and the angle adjustment member is arranged on the clamp.
3. The installation structure of a radar water level gauge according to claim 2, characterized in that: The cross-sections of the first connecting member and the second connecting member are both "L"-shaped, and the first connecting member and the second connecting member are connected through the connecting member.
4. The installation structure of a radar water level gauge according to claim 2, characterized in that: The clamp is in an inverted "U" shape, and both ends of the clamp are threaded. The two ends of the clamp pass through the second connecting piece and are threadedly connected with nuts. The second connecting piece has a hole for the threaded end of the clamp to pass through.
5. The installation structure of a radar water level gauge according to claim 2, characterized in that: The angle adjustment member comprises: A plurality of raised portions, wherein the plurality of raised portions are all arranged on a side of the clamp facing the mounting rod, and the plurality of raised portions are evenly arranged along the inner side of the clamp; A plurality of recessed portions, wherein the plurality of recessed portions are arranged on the mounting rod, the mounting rod has a groove adapted to the clamp, and the plurality of recessed portions are evenly arranged in the groove. When the clamp fixes the mounting rod, the clamp is located in the groove, and the plurality of raised portions are located in the corresponding recessed portions.
6. The installation structure of a radar water level gauge according to claim 5, characterized in that: The interval angles of the plurality of recessed portions and the plurality of raised portions are matched.
7. The installation structure of a radar water level gauge according to claim 2, characterized in that: The horizontal components include: a first ring, the first ring being arranged on the first connecting member; Two first spherical connecting shafts, the two first spherical connecting shafts are arranged on the first sleeve ring in a straight line, and the two first spherical connecting shafts are connected to the first connecting member; a second ring, wherein the second ring is arranged on the first ring, and the second ring is arranged on the radar water level gauge; Two second spherical connecting shafts are arranged in a straight line on the second sleeve ring, and both of the second spherical connecting shafts are connected to the first sleeve ring.
8. The installation structure of a radar water level gauge according to claim 7, characterized in that: The second spherical connecting axis is arranged at a right angle to the first spherical connecting axis.
9. The installation structure of a radar water level gauge according to claim 7, characterized in that: The first sleeve ring rotates around the two first spherical connecting shafts as axes; The second sleeve ring rotates around the two second spherical connecting circles as axes.
10. The installation structure of a radar water level gauge according to claim 7, characterized in that: The two first spherical connecting shafts are arranged parallel to the mounting rod.