Monitoring device for building carbon emission
By adjusting the installation height of the carbon emission monitor using lifting and clamping components, and combining it with solar energy storage components and roof protection, the problem of fixing the installation position of the carbon emission monitor is solved, enabling multi-location monitoring and safety protection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2026-03-27
AI Technical Summary
Existing carbon emission monitoring devices are installed in fixed locations, making them susceptible to damage from human contact and falling objects, and they cannot monitor multiple locations.
The carbon emission monitor is fixed by lifting and clamping components, powered by solar energy storage components, and its position is adjusted by casters. It is also equipped with a canopy for protection.
It enables height adjustment of the carbon emission monitor to avoid damage from human-caused collisions and objects at height, supports multi-location monitoring, and has rain and sun protection functions.
Smart Images

Figure CN224052162U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to carbon emission monitoring technical field, concretely relates to a monitoring device for building carbon emission. BACKGROUND
[0002] Building carbon emission refers to the average greenhouse gas emission in the building process, and carbon emission has a direct impact on the climate. Now, artificial produces carbon emission monitoring equipment through scientific and technological means to monitor carbon emission in each region. The construction site also needs to meet the carbon emission standard to carry out construction. The carbon emission monitoring equipment is generally set in the construction site.
[0003] At present, there are many types of carbon emission monitors for monitoring carbon emission in industrial areas. However, the carbon emission monitor can only be fixed on the building wall or installed on the ground through a support during use, and can only be fixed in one place for monitoring, cannot be monitored in multiple positions, is inconvenient to use, and the monitor is easily damaged by falling objects from high altitude during use. In addition, the environment of the construction site is complex, and the device is easily knocked over by the passing construction vehicles or construction personnel, thereby affecting its normal use. UTILITARIAN CONTENT
[0004] In view of the above problems in the prior art, the utility model provides a monitoring device for building carbon emission, which solves the problem of too low installation position of the existing carbon emission monitor and easy collision.
[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0006] A monitoring device for building carbon emission is provided, which comprises a support bottom plate, a support vertical plate is arranged in the middle of the support bottom plate, a lifting assembly is arranged in the support vertical plate, the lifting assembly is fixed and clamped with a carbon emission monitor through a clamping assembly, a ceiling is arranged at the top end of the support vertical plate, a solar energy storage assembly is arranged on the ceiling, and the solar energy storage assembly is electrically connected with the lifting assembly and the carbon emission monitor respectively.
[0007] The utility model drives the clamping assembly to fixedly clamp the carbon emission monitor through the lifting assembly, and the installation height of the carbon emission monitor can be adjusted by the lifting assembly, so as to avoid damage caused by too low position and human collision. At the same time, the ceiling provides safety protection for the carbon emission monitor to avoid falling objects from high altitude.
[0008] Further, an installation cavity is arranged in the middle of the support vertical plate, an installation plate is arranged in the middle of the installation cavity, the lifting assembly comprises two groups of lifting subassemblies, and the two groups of lifting subassemblies are symmetrically arranged in the installation cavity on both sides of the installation plate.
[0009] Further, the lifting subassembly comprises a fixing plate arranged at the end of the mounting cavity, a ball screw is arranged between the fixing plate and the mounting plate through a screw rod bearing, and a ball nut is sleeved on the ball screw; the end of the ball screw is connected with a screw rod motor through the fixing plate, and the screw rod motor is electrically connected with the solar energy storage assembly.
[0010] Further, the clamping assembly comprises two clamping plates, the middle part of the clamping plate is connected with the ball nut, and limit plates are arranged at the four corner positions of the clamping plate; the carbon emission monitor is embedded in a clamping cavity formed by the four limit plates and the clamping plate.
[0011] Further, sliding grooves are formed at the two sides of the support vertical plate, sliding rods are arranged at the two ends of the clamping plate, the sliding rods are embedded in the sliding grooves, and balls are embedded in the bottom of the sliding rods.
[0012] Further, the solar energy storage assembly comprises a solar photovoltaic panel arranged on the ceiling and a storage battery arranged on the support bottom plate, the solar photovoltaic panel is connected with the storage battery, and the storage battery is electrically connected with the screw rod motor and the carbon emission monitor.
[0013] Further, universal wheels are arranged at the four corner positions of the lower surface of the support bottom plate.
[0014] The utility model discloses a kind of monitoring devices for building carbon emission, its beneficial effects are:
[0015] The utility model drives clamping assembly by lifting assembly to have carbon emission monitor fixedly clamped, and the installation height of carbon emission monitor can be adjusted using lifting assembly, avoid the installation position of carbon emission monitor too low to be artificially touched and damaged, simultaneously, ceiling can also provide safety protection above carbon emission monitor, avoid the sundries falling from high altitude in industrial zone to be smashed on carbon emission monitor, simultaneously, it can also play certain rainproof, sunshade function. DRAWINGS
[0016] Fig. 1 It is a structural schematic view of the utility model's one kind of monitoring device for building carbon emission.
[0017] Fig. 2 It is a structural schematic view of the utility model's support vertical plate.
[0018] Fig. 3 It is a structural schematic view of the utility model's clamping plate.
[0019] Wherein, 1, support bottom plate; 11, universal wheel; 2, support vertical plate; 21, installation cavity; 22, mounting plate; 23, sliding groove; 3, lifting assembly; 31, fixed plate; 32, ball screw; 33, ball nut; 34, screw motor; 4, clamping assembly; 41, clamping plate; 42, limit plate; 43, sliding rod; 44, ball; 5, carbon emission monitor; 6, carbon emission monitor; 7, solar energy storage assembly; 71, solar photovoltaic panel; 72, battery. DETAILED DESCRIPTION
[0020] The specific embodiments of the present application are described in order to facilitate the understanding of the present application for those skilled in the art, but it should be clear that the present application is not limited to the scope of the specific embodiments, for those skilled in the art, as long as various changes are within the spirit and scope of the present application defined and determined by the appended claims, these changes are obvious, all the utility model creations using the concept of the present application are within the scope of protection.
[0021] Example 1
[0022] Reference Figs. 1-3 The present embodiment provides a kind of for building carbon emission monitoring device, its purpose is to solve the installation position of existing carbon emission monitor too low, prone to rub and bump problem, the specific structure in this embodiment will be described in detail below.
[0023] A kind of for building carbon emission monitoring device, it includes support bottom plate 1.
[0024] Wherein, the middle part of support bottom plate 1 is provided with support vertical plate 2, support vertical plate 2 is provided with lifting assembly 3, lifting assembly 3 is fixedly clamped with carbon emission monitor 5 by clamping assembly 4.
[0025] Specifically, the top end of support vertical plate 2 is provided with ceiling 6, ceiling 6 is provided with solar energy storage assembly 7, solar energy storage assembly 7 is electrically connected with lifting assembly 3 and carbon emission monitor 5 respectively.
[0026] In the present embodiment, the device lifting assembly 3 is installed in support vertical plate 2, lifting assembly 3 drives clamping assembly 4 to be fixedly clamped with carbon emission monitor 5 on support vertical plate 2, so as to adjust the installation height of carbon emission monitor 5 by lifting assembly 3, avoid the installation position of carbon emission monitor 5 too low and be artificially rubbed and damaged.Carbon emission monitor 5 is prior art, which will not be described here.
[0027] Ceiling 6 can also provide safety protection for carbon emission monitor 5 above it, avoid the sundries falling from high altitude in industrial area to hit carbon emission monitor, also can play a certain rainproof, sunshade function.
[0028] Meanwhile, the solar energy storage assembly 7 absorbs the received solar energy and converts the received solar energy into electrical energy for storage for the carbon emission monitor 5 and the lifting assembly 3, without the need for direct current power connection, and convenient monitoring.
[0029] Specifically, the middle part of the support vertical plate 2 is provided with an installation cavity 21, and the middle part of the installation cavity 21 is provided with an installation plate 22.
[0030] Specifically, the lifting subassembly includes a fixed plate 31 arranged at the end of the installation cavity 21, a ball screw 32 arranged between the fixed plate 31 and the installation plate 22 through a screw bearing, and a ball nut 33 sleeved on the ball screw 32; the end of the ball screw 32 penetrates through the fixed plate 31 and is connected with a screw motor 34, and the screw motor 34 is electrically connected with the solar energy storage assembly 7.
[0031] In this embodiment, the lifting assembly 3 includes two groups of lifting subassemblies, which are symmetrically arranged in the installation cavities 21 on both sides of the installation plate 22, so that the clamping assembly 4 is driven by the two groups of lifting subassemblies to clamp the carbon emission monitor 5.
[0032] The lifting subassembly includes a ball screw 32, the two ends of the ball screw 32 are respectively installed on the fixed plate 31 and the installation plate 22 through screw bearings, and the end of the ball screw 32 penetrates through the installation plate 22 and is connected with the screw motor 34, wherein the ball screw 32 can be directly connected with the output shaft of the screw motor 34, or can be connected through a shaft coupling.
[0033] Specifically, the clamping assembly 4 includes two clamping plates 41, the middle part of the clamping plate 41 is connected with the ball nut 33; the four corner positions of the clamping plate 41 are provided with limiting plates 42, and the carbon emission monitor 5 is embedded in the clamping cavity formed by the four limiting plates 42 and the clamping plate 41.
[0034] Specifically, the two sides of the support vertical plate 2 are provided with sliding grooves 23, the two ends of the clamping plate 41 are provided with sliding rods 43, the sliding rods 43 are embedded in the sliding grooves 23, and the bottom of the sliding rod 43 is embedded with a ball 44.
[0035] In this embodiment, the middle part of the clamping plate 41 is fixedly connected with the ball nut 33 through a connecting rod, so that the ball nut 33 moves up and down along the ball screw 32 by driving the ball screw 32 to rotate by the screw motor 34, and the clamping plate 41 is driven to move, and the two clamping plates 41 are respectively moved to clamp the carbon emission monitor 5.
[0036] The limiting plates 42 are arranged at the four corner positions on the upper surface of the clamping plate 41, and the clamping cavity formed by the four limiting plates 42 and the clamping plate 41, and the upper and lower ends of the carbon emission monitor 5 are embedded in the clamping cavity.
[0037] The slide rods 43 of the clamping plates 41 near the two ends of the supporting vertical plate 2 are embedded in the slide grooves 23, the slide grooves 23 guide and limit the lifting of the clamping plates 41, and the ball bearings 44 are embedded in the bottom of the slide rods 43 to reduce friction.
[0038] Specifically, the solar energy storage assembly 7 comprises the solar photovoltaic panel 71 laid on the ceiling 6 and the storage battery 72 placed on the supporting bottom plate 1, the solar photovoltaic panel 71 is connected with the storage battery 72, and the storage battery 72 is electrically connected with the lead screw motor 34 and the carbon emission monitor 5 respectively.
[0039] In the embodiment, the solar photovoltaic panel 71 is laid on the ceiling 6 to receive solar energy, the solar photovoltaic panel 71 is connected with the storage battery 72 through the solar charging and discharging controller, the model of the solar charging and discharging controller is MPPT100, so that the received solar energy is converted into electric energy by the solar charging and discharging controller and stored in the storage battery 72, the storage battery 72 is electrically connected with the lead screw motor 34 and the carbon emission monitor 5 respectively to provide power support for the lead screw motor 34 and the carbon emission monitor 5, and direct current power connection is not needed, which is convenient for monitoring.
[0040] Specifically, the universal wheels 11 are arranged at the four corner positions of the lower surface of the supporting bottom plate 1.
[0041] In the embodiment, the universal wheels 11 are arranged at the four corner positions of the lower surface of the supporting bottom plate 1, the device is quickly moved through the universal wheels 11 to adjust the monitoring position, so that the carbon emission of different areas of the industrial area can be monitored, and the use needs are met.
[0042] Although the specific embodiments of the utility model are described in detail in combination with the drawings, it should not be understood as the limitation of the protection scope of the patent. Various modifications and changes made by those skilled in the art within the scope described in the claims are still within the protection scope of the patent.
Claims
1. A monitoring device for building carbon emissions, characterized by: It comprises a support base plate (1); The middle part of the support base plate (1) is provided with a support vertical plate (2), and the support vertical plate (2) is provided with a lifting assembly (3) inside; the lifting assembly (3) is fixedly clamped with a carbon emission monitor (5) through a clamping assembly (4); The top end of the support vertical plate (2) is provided with a ceiling (6), and the ceiling (6) is provided with a solar energy storage assembly (7); the solar energy storage assembly (7) is electrically connected with the lifting assembly (3) and the carbon emission monitor (5) respectively.
2. The monitoring device for building carbon emissions according to claim 1, characterized in that: The middle part of the support vertical plate (2) is provided with a mounting cavity (21), and the mounting cavity (21) is provided with a mounting plate (22) in the middle part; the lifting assembly (3) comprises two groups of lifting sub-assemblies, which are symmetrically arranged in the mounting cavities (21) on both sides of the mounting plate (22).
3. The monitoring device for building carbon emissions according to claim 2, characterized in that: The lifting sub-assembly comprises a fixing plate (31) arranged at the end of the mounting cavity (21); a ball screw (32) is arranged between the fixing plate (31) and the mounting plate (22) through a screw rod bearing; a ball nut (33) is sleeved on the ball screw (32); the end of the ball screw (32) is connected with a screw rod motor (34) through the fixing plate (31); the screw rod motor (34) is electrically connected with the solar energy storage assembly (7).
4. The device for monitoring of carbon emissions from construction according to claim 3, characterized by: The clamping assembly (4) comprises two clamping plates (41), and the middle part of the clamping plate (41) is connected with the ball nut (33); The four corners of the clamping plate (41) are provided with a limiting plate (42), and the carbon emission monitor (5) is embedded in the clamping cavity formed by the four limiting plates (42) and the clamping plate (41).
5. The device for monitoring of carbon emissions from construction according to claim 4, characterized by: The two sides of the support vertical plate (2) are provided with a sliding groove (23), and the two ends of the clamping plate (41) are provided with a sliding rod (43); the sliding rod (43) is embedded in the sliding groove (23), and the bottom of the sliding rod (43) is embedded with a ball (44).
6. The device for monitoring of carbon emissions from construction according to claim 3, characterized by: The solar energy storage assembly (7) comprises a solar photovoltaic panel (71) arranged on the ceiling (6) and a storage battery (72) placed on the support base plate (1); the solar photovoltaic panel (71) is connected with the storage battery (72); the storage battery (72) is electrically connected with the screw rod motor (34) and the carbon emission monitor (5) respectively.
7. The device for monitoring of carbon emissions from construction according to claim 1, characterized by the fact that: The four corners of the lower surface of the support base plate (1) are provided with universal wheels (11).