Intelligent building construction energy-saving monitoring equipment
By using the cooperation of nozzles and solenoid valves in the intelligent building construction monitoring device for regular flushing and cleaning, the problem of monitoring devices being blocked by mud and sand in harsh environments is solved, the accuracy of monitoring data is improved, and the energy supply stability is ensured by cleaning solar panels, achieving the effect of energy saving.
Patent Information
- Application Number
- CN202421615275.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-09
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-07-09
AI Technical Summary
The existing intelligent building construction monitoring devices are easily blocked by mud and sand in harsh environments, affecting the clarity of the monitoring screen and data accuracy.
Design an intelligent building construction energy-saving monitoring equipment, and use the cooperation of the nozzle and solenoid valve to regularly flush and clean the surface of the monitoring body to avoid silt and sand blocking; at the same time, the surface of the solar panel is cleaned through cleaning pipes and nozzles to prevent the accumulation of floating dust from affecting solar energy absorption.
It effectively avoids the monitoring surface being blocked by mud and sand, improves the clarity of the monitoring screen and data accuracy; at the same time, the solar panels are kept clean, ensuring the stability of energy supply to the monitoring body, and achieving the purpose of saving energy.
Smart Images

Figure CN222890228U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of building construction, and specifically relates to intelligent building construction energy-saving monitoring equipment. Background Art
[0002] Intelligent building construction energy-saving monitoring equipment plays a vital role in the current construction industry. Through real-time monitoring and data analysis, they provide strong support for the energy-saving, safe and efficient operation of buildings. In the field of smart building construction, monitoring devices installed on construction sites are used to monitor and analyze the internal data, so as to adjust the distribution of various materials according to the situation to reduce the waste of materials and manpower. However, the device still has the following defects: When the above-mentioned equipment is in use, the existing monitoring device is installed on the construction site, and the environment is harsh. It is very easy to cause the monitoring surface to be blocked by mud and sand, affecting the clarity of the monitoring picture, thereby reducing the accuracy of the monitoring data. Utility Model Content
[0003] The purpose of the utility model is to provide an intelligent energy-saving monitoring device for building construction, aiming to solve the problem in the prior art that when the above-mentioned equipment is in use, the existing monitoring device is installed in a construction site, and the environment is harsh, which can easily cause the monitoring surface to be blocked by mud and sand, affecting the clarity of the monitoring picture, thereby reducing the accuracy of the monitoring data.
[0004] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: an intelligent building construction energy-saving monitoring equipment, comprising: a monitoring body, the top of the monitoring body is fixedly connected to the top plate, the bottom of the top plate is connected to a connecting rod, the bottom of the connecting rod is threadedly connected to the top protrusion of the water supply ring by a bolt, the bottom of the water supply ring is threadedly connected to the nozzle, one side of the water supply ring is threadedly connected to the water supply pipe, the water inlet end of the water supply pipe is threadedly connected to the solenoid valve and a dust plug is provided at the water inlet end on the other side of the solenoid valve, the bottom of the solenoid valve is connected to the bottom plate, and the side wall of the bottom plate is fixedly connected to one side of the top plate.
[0005] In order to utilize the connecting rod to fix the connection of the water supply ring at the bottom of the top plate, as a preferred intelligent building construction energy-saving monitoring equipment of the utility model, the top plate, connecting rod and water supply ring form a threaded connection structure, and the four connecting rods are distributed in a ring at the bottom of the top plate.
[0006] In order to facilitate the disassembly and replacement of nozzles connected by threads, as a preferred intelligent building construction energy-saving monitoring equipment of the utility model, the water supply ring, nozzle and water supply pipe form a threaded connection structure, and ten thread grooves with equal spacing on the bottom of the water supply ring are consistent with the shape and size of the top of the nozzle.
[0007] In order to utilize the connected water supply pipe to clean the solar panels while cleaning and monitoring, as a preferred intelligent building construction energy-saving monitoring equipment of the utility model, the water outlet on the other side of the water supply pipe is threadedly connected to the cleaning pipe, the outer side of the cleaning pipe is snap-connected to a limiting ring, the bottom protrusion of the limiting ring is fixed to the bottom rod with bolts, the bottom of the bottom rod is located near the bottom plate of the top plate, the outer wall of the cleaning pipe is threadedly connected to the nozzle, the top of the top plate is connected to the mounting plate, the top of the mounting plate is provided with two groups of support rods with progressively increasing heights, and the top of the support rods is connected to the solar panel with bolts.
[0008] In order to utilize the water supply pipe to supply water to the upper and lower ends of the monitoring and solar panels at the same time, as a preferred intelligent building construction energy-saving monitoring equipment of the utility model, the water supply ring, water supply pipe, solenoid valve and cleaning pipe form a threaded connection structure, and the water supply pipe is a "T"-shaped integrated structure and the water outlets on both sides are respectively connected to the water supply ring and the cleaning pipe.
[0009] In order to utilize the limiting ring to fix the position of the cleaning pipe, as a preferred embodiment of the intelligent building construction energy-saving monitoring equipment of the utility model, the two cleaning pipes are elastic structures and are snap-connected to the outer wall of the limiting ring.
[0010] Compared with the prior art, the beneficial effects of the utility model are:
[0011] The monitoring body surface is regularly cleaned by the cooperation of the ring-shaped nozzles and solenoid valves installed on the top of the monitoring body to prevent the sand and dust at the construction site from blocking the monitoring screen and affecting its use effect.
[0012] A row of nozzles installed on the cleaning pipe on the top side of the solar panel is used to clean the surface of the solar panel at the bottom to prevent excessive dust accumulation on the surface from affecting its absorption of solar energy, thereby affecting the power supply to the monitoring body connected at the bottom. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0014] Figure 1 This is a schematic diagram of the main structure of the utility model;
[0015] Figure 2 This is a schematic diagram of the main cross-sectional structure of the utility model;
[0016] Figure 3 It is a schematic diagram of the top view structure of the utility model;
[0017] Figure 4It is a schematic diagram of an enlarged cross-sectional structure of the cleaning pipe part of the utility model;
[0018] Figure 5 It is a schematic diagram of the enlarged cross-sectional structure of the water supply ring part of the utility model.
[0019] In the figure: 1. Monitoring body; 2. Top plate; 3. Connecting rod; 4. Water supply ring; 5. Nozzle; 6. Water supply pipe; 7. Solenoid valve; 8. Bottom plate; 9. Cleaning pipe; 10. Limiting ring; 11. Bottom rod; 12. Mounting plate; 13. Support rod; 14. Solar panel. DETAILED DESCRIPTION
[0020] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0021] See also Figure 1-5 The utility model provides the following technical solutions: an intelligent building construction energy-saving monitoring equipment, including: a monitoring body 1. The monitoring body 1 in the technical solution uses its internal remotely connected data center to analyze the monitored and collected data. The solar panel 14 connected to the top of the monitoring body 1 collects and supplies solar energy. This mechanism is a conventional technology in this field and has no relevance to the technical problems in the technical solution. Therefore, it is not described in detail in the technical solution. In specific use, the manpower allocation and construction progress of the intelligent building construction site collected at various points where the monitoring body 1 is installed are used to analyze and regulate the optimal manpower allocation plan, so as to facilitate timely adjustment of manpower allocation, thereby achieving the purpose of saving energy.
[0022] The top of the monitoring body 1 is fixedly connected to the top plate 2, the bottom of the top plate 2 is connected to the connecting rod 3, the bottom of the connecting rod 3 is threadedly connected to the top protrusion of the water supply ring 4 by means of bolts, the bottom of the water supply ring 4 is threadedly connected to the nozzle 5, one side of the water supply ring 4 is threadedly connected to the water supply pipe 6, the water inlet end of the water supply pipe 6 is threadedly connected to the solenoid valve 7 and a dust plug is provided at the water inlet end on the other side of the solenoid valve 7, the bottom of the solenoid valve 7 is connected to the bottom plate 8, and the side wall of the bottom plate 8 is fixedly connected to one side of the top plate 2.
[0023] Preferably, the top plate 2 , the connecting rods 3 and the water supply ring 4 form a threaded connection structure, and four connecting rods 3 are distributed in an annular manner at the bottom of the top plate 2 .
[0024] When in use, the water supply ring 4 fixed on the connecting rod 3 installed at the bottom of the top plate 2 installed on the top of the monitoring body 1 is used to supply water to the sprinklers 5 distributed in an annular manner at the bottom.
[0025] Preferably, the water supply ring 4 , the nozzle 5 and the water supply pipe 6 form a threaded connection structure, and ten thread grooves are evenly spaced at the bottom of the water supply ring 4 , the shape and size of which are consistent with the top of the nozzle 5 .
[0026] When in use, it is convenient to rotate and remove the nozzle 5 fixed at the bottom of the water supply ring 4 to clean it, so that it is convenient to remove the water supply pipe 6 to replace it.
[0027] Preferably: the water outlet on the other side of the water supply pipe 6 is threadedly connected to the cleaning pipe 9, the outer side of the cleaning pipe 9 is snap-connected to the limiting ring 10, the bottom convex block of the limiting ring 10 is fixed to the bottom rod 11 by bolts, the bottom of the bottom rod 11 is located at the top plate 2 near the bottom plate 8, the outer wall of the cleaning pipe 9 is threadedly connected to the nozzle 5, the top of the top plate 2 is connected to the mounting plate 12, and the top of the mounting plate 12 is provided with two groups of support rods 13 with progressively increasing heights, and the top of the support rod 13 is connected to the solar panel 14 by bolts.
[0028] During specific use, the water supply pipe 6 supplies water to the water supply ring 4 and the cleaning pipe 9 through the connected two ends. After the water supply, a row of nozzles 5 installed on the side wall of the top cleaning pipe 9 and the nozzles 5 installed below the bottom water supply ring 4 flush the solar panel 14 located below the cleaning pipe 9 and the surface of the monitoring body 1 surrounded by the lower end of the water supply ring 4.
[0029] Preferably, the water supply ring 4, the water supply pipe 6, the solenoid valve 7 and the cleaning pipe 9 form a threaded connection structure, the water supply pipe 6 is a "T"-shaped integrated structure and the water outlets on both sides are respectively connected to the water supply ring 4 and the cleaning pipe 9.
[0030] During specific use, the dust plug fixed on one side of the solenoid valve 7 is pulled out for flushing, and then a water source is connected, and the water supply pipe 6 connected on the other side is used to supply water to the water supply ring 4 and the cleaning pipe 9 through the two connected ends.
[0031] Preferably, the two cleaning tubes 9 are elastic structures and are snap-connected to the outer wall of the limiting ring 10 .
[0032] When in use, when the cleaning tube 9 needs to be taken out, the cleaning tube 9 can be pulled out upwards and the rubber elasticity of the limiting ring 10 can be utilized to take out the cleaning tube 9 .
[0033] Working principle: In the field of intelligent building construction, the monitoring body 1 installed in the construction site is used to monitor the construction situation in the environment, so as to accurately understand whether the distribution of manpower and materials on site is balanced, thereby avoiding waste of manpower and materials. The water supply ring 4 fixed on the connecting rod 3 installed at the bottom of the top plate 2 installed on the top of the monitoring body 1 is used to supply water to the nozzles 5 distributed in an annular manner at the bottom, so as to regularly flush the dust and sand on the surface of the monitoring body 1. When flushing, pull out the dust plug fixed on one side of the solenoid valve 7, and then connect the water source, and use the water supply pipe 6 connected on the other side to supply water through the two connected ends. The ring 4 and the cleaning pipe 9 are used for water supply. After the water supply, a row of nozzles 5 installed on the side wall of the top cleaning pipe 9 and the nozzles 5 installed below the bottom water supply ring 4 flush the solar panel 14 located below the cleaning pipe 9 and the surface of the monitoring body 1 surrounded by the lower end of the water supply ring 4, thereby avoiding dust accumulation on the surface of the monitoring body 1 to affect its monitoring accuracy, and also avoiding excessive dust accumulation on the surface of the top solar panel 14 to affect its acceptance of solar energy. Therefore, the wires connected to one side of the solar panel 14 can be used to supply energy to the monitoring body 1, thereby achieving the purpose of saving energy. This is a feature of energy-saving monitoring equipment for intelligent building construction.
[0034] Finally, it should be noted that the above description is only a preferred embodiment of the utility model and is not intended to limit the utility model. Although the utility model is described in detail with reference to the above embodiments, those skilled in the art can still modify the technical solutions recorded in the above embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.
Claims
1. An intelligent building construction energy-saving monitoring device, comprising: A monitoring body (1) is characterized in that: the top of the monitoring body (1) is fixedly connected to the top plate (2), the bottom of the top plate (2) is connected to a connecting rod (3), the bottom of the connecting rod (3) is threadedly connected to the top protrusion of a water supply ring (4) by means of bolts, the bottom of the water supply ring (4) is threadedly connected to a nozzle (5), one side of the water supply ring (4) is threadedly connected to a water supply pipe (6), the water inlet end of the water supply pipe (6) is threadedly connected to a solenoid valve (7) and a dust plug is provided at the water inlet end on the other side of the solenoid valve (7), the bottom of the solenoid valve (7) is connected to a bottom plate (8), and the side wall of the bottom plate (8) is fixedly connected to one side of the top plate (2).
2. The intelligent building construction energy-saving monitoring equipment according to claim 1 is characterized by: The top plate (2), the connecting rod (3) and the water supply ring (4) form a threaded connection structure, and the four connecting rods (3) are distributed in an annular manner at the bottom of the top plate (2).
3. The intelligent building construction energy-saving monitoring equipment according to claim 1 is characterized in that: The water supply ring (4), the nozzle (5) and the water supply pipe (6) form a threaded connection structure. The bottom of the water supply ring (4) is provided with ten thread grooves at equal intervals, the shape and size of which are consistent with the top of the nozzle (5).
4. The intelligent building construction energy-saving monitoring equipment according to claim 1 is characterized by: The water outlet on the other side of the water supply pipe (6) is threadedly connected to the cleaning pipe (9), the outer side of the cleaning pipe (9) is snap-fitted with a limiting ring (10), the bottom protrusion of the limiting ring (10) is fixed to the bottom rod (11) by bolts, the bottom of the bottom rod (11) is located near the bottom plate (8) of the top plate (2), the outer wall of the cleaning pipe (9) is threadedly connected to the nozzle (5), the top of the top plate (2) is connected to the mounting plate (12), the top of the mounting plate (12) is provided with two groups of support rods (13) with progressively increasing heights, and the top of the support rod (13) is connected to the solar panel (14) by bolts.
5. The intelligent building construction energy-saving monitoring equipment according to claim 4 is characterized by: The water supply ring (4), the water supply pipe (6), the solenoid valve (7) and the cleaning pipe (9) form a threaded connection structure; the water supply pipe (6) is a "T"-shaped integrated structure and the water outlets on both sides are respectively connected to the water supply ring (4) and the cleaning pipe (9).
6. The intelligent building construction energy-saving monitoring equipment according to claim 4 is characterized by: The two limiting rings (10) are elastic structures and are snap-connected to the outer wall of the cleaning tube (9).