Distribution room high-voltage cabinet condensate water drainage metering collector
By designing a condensate drainage metering collector for portable pumps and sensor systems in the high-voltage cabinet of the distribution room, the problems of inconvenience and safety hazards of condensate drainage are solved, and automatic metering of condensate and safe operation of the high-voltage cabinet are realized.
Patent Information
- Application Number
- CN202421785193.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-07-26
AI Technical Summary
The condensate drainage device of the high-voltage cabinet in the existing distribution room is inconvenient for use, and it poses safety risks and is difficult to measure the amount of condensate, which affects the operation safety of the high-voltage cabinet.
A condensate drainage metering collector for high-voltage cabinet in the distribution room is designed, using a portable water pump and sensor system. The water pump is automatically controlled to pump water through sensor sensing water level, and the condensate is collected into a metering barrel for metering.
It solves the personal safety risks of distribution personnel during the drainage process, realizes automatic measurement and statistics of condensate, and improves the operation safety and labor safety of high-voltage cabinets.
Smart Images

Figure CN223020958U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a condensate drainage metering collector for a high-voltage cabinet in a power distribution room, belonging to the field of condensate drainage. Background Art
[0002] Normally, the high-voltage cabinets in the distribution room will be cooled due to temperature reasons, which will produce condensed water. However, the water discharged by the drainage device is now contained in ordinary water bottles, and the on-duty personnel are required to open the cable cover frequently to check the drainage situation. This is inconvenient and there is a risk of injuring people due to frequent opening of the cover. At the same time, it is also difficult to count the amount of condensed water. The condensed water situation cannot be effectively measured and counted, which affects the safe operation of the high-voltage cabinet, makes it difficult to remove the condensed water, and poses a labor safety risk. Summary of the invention
[0003] According to the problem described in the background, the problem to be solved by the utility model is: to provide a condensate drainage metering collector for the high-voltage cabinet in the distribution room, which uses a sensor to sense the water level and then uses a portable water pump to pump water, thereby solving the hidden danger of endangering the personal safety belts of the distribution personnel every time they lift the cover and go down into the cable trench, and can also measure and count the condensate situation.
[0004] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a condensate drainage metering collector for a high-voltage cabinet in a power distribution room is provided, comprising a metering bucket, a metering cover, a portable water pump, a water pumping pipe, a valve, a water outlet, a collecting bucket, a collecting cover, a bracket, a sensor 1, a sensor 2, a processing component, a floating plate and a condensate pipe. The metering cover is covered at the upper edge of the metering bucket, the portable water pump is installed in the middle position of the metering cover and the drainage pipe of the portable water pump passes through the metering cover and goes deep into the metering bucket, so that all the pumped water enters the metering bucket, and the pumping of the portable water pump The water end is connected to a suction pipe, the other end of the suction pipe is connected to a valve, the other end of the valve is connected to a water outlet, the other end of the water outlet is connected and installed at the lower part of the collecting bucket, a collecting cover is installed on the upper edge of the collecting bucket, a bracket is installed on the lower edge of the collecting bucket, sensor 1 and sensor 2 are installed on the outer wall of the collecting bucket and sensor 1 is higher than sensor 2, the processing component is installed on the outer wall of the collecting bucket and between sensor 1 and sensor 2, the floating plate is placed inside the collecting bucket, and the condensed water pipe passes through the center of the collecting cover to the inside of the collecting bucket to ensure that the condensed water enters the collecting bucket through the water pipe.
[0005] The metering cover includes a metering cover body, a slot, a through hole and an outer edge buckle. A slot is opened at the center of the metering cover body, and a through hole is opened at the center of the slot, which can adapt to a portable water pump so that the portable water pump can be better installed here. An outer edge buckle is opened at the outer edge of the metering cover body, which can better match the metering barrel.
[0006] The collecting cover comprises a collecting cover body, a collecting hole, a rubber slot and an outer edge buckle 2. A collecting hole is arranged in the center of the collecting cover body. A rubber slot is arranged in the collecting hole so that the condensation water pipe can be fixed there when passing through it, and can also be adjusted according to different lengths. An outer edge buckle 2 is arranged at the outer edge of the collecting cover body to better match the collecting bucket. The collecting cover body is an inner cone, so that even if the water from the condensation water pipe splashes out or the water on the outer wall of the condensation water pipe leaks onto the cover, it can flow into the collecting bucket due to gravity.
[0007] Preferably, the diameter of the slot is the same as the diameter of a portable water pump, so it can be adapted to the portable water pump; the diameter of the through hole is the same as the diameter of a drain pipe of a portable water pump, so it can be adapted to the drain pipe of a portable water pump; the width of the outer edge buckle is the same as the thickness of the upper edge of the measuring bucket, so it can better match the measuring bucket.
[0008] Preferably, the width of the outer edge buckle 2 is the same as the thickness of the upper edge of the collection bucket, which can better match the collection bucket.
[0009] Preferably, an opening is provided at the center of the floating plate, and the outer diameter of the floating plate is smaller than the inner diameter of the collecting barrel, so that the floating plate can always be above the condensed water.
[0010] Preferably, the processing component controls the switch of the valve and the switch of the portable water pump through sensor 1 and sensor 2.
[0011] Working principle: The condensed water pipe passes through the rubber slot and goes deep into the collection barrel. Pour an appropriate amount of water into the collection barrel in advance. The amount of water makes the float plate just cover sensor 2, and then the condensed water enters the collection barrel normally. When the amount of water in the collection barrel can make the float plate rise to just cover sensor 1, sensor 1 transmits a signal to the processing component, and then the processing component first transmits a signal to the valve to open the valve, and then transmits a signal to the portable water pump to pump water. The condensed water enters the metering barrel. When the water in the collection barrel causes the float plate to drop to just cover sensor 2, sensor 2 transmits a signal to the processing component, and the processing component first transmits a signal to the portable water pump, and the portable water pump stops pumping water, and then transmits a signal to the valve to close the valve, completing a workflow. The personnel only need to observe the water level in the metering barrel.
[0012] The beneficial effects of the utility model are:
[0013] 1. The slot and the through hole are the same size as the portable water pump, which can just hold the portable water pump so that the water pump will not move randomly during operation, thereby improving safety and efficiency.
[0014] 2. Because the outer wall of the collection barrel is equipped with sensors, processing components and other equipment, the bracket at the bottom of the collection barrel plays an indispensable role in preventing the collection barrel from tipping over.
[0015] 3. The conical shape of the collection cover can ensure that even if the water from the condensate pipe splashes out or the water on the outer wall of the condensate pipe leaks onto the cover, it can flow into the collection bucket due to gravity, thus improving the accuracy of the condensate.
[0016] 4. The sensor and processing components are used together. When pumping water, open the valve first and then turn on the water pump. When shutting down the water pump, shut down the water pump first and then close the valve. This can prevent the water pump from being damaged by empty pumping and leaking.
[0017] 5. Placing the collection bucket inside the cable trench cover and the metering bucket on the normal aisle reduces the labor hazards of distribution personnel moving the cable trench cover and the upper and lower cable trenches, strengthens the safety management of labor safety during operations, and can also conduct statistics on condensation water. By collecting, extracting, and measuring condensation water, risk management and dynamic monitoring of condensation water in the high-voltage cabinet of the distribution room are achieved, which reduces the daily workload of distribution personnel on duty, improves work efficiency, and eliminates equipment hazards and personal safety risks. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the structure of the utility model;
[0019] Figure 2 This is a schematic diagram of the structure of the utility model when the water is full;
[0020] Figure 3 It is a schematic diagram of the structure of the metering cover;
[0021] Figure 4 It is a schematic diagram of the structure of the collecting cover;
[0022] In the figure: 1 is a metering bucket; 2 is a metering cover; 3 is a portable water pump; 4 is a water pump; 5 is a valve; 6 is a water outlet; 7 is a collecting bucket; 8 is a collecting cover; 9 is a bracket; 10 is a sensor 1; 11 is a sensor 2; 12 is a processing component; 13 is a floating plate; 14 is a condensate pipe; 201 is a metering cover body; 202 is a slot; 203 is a through hole; 204 is an outer edge buckle 1; 801 is a collecting cover body; 802 is a collecting hole; 803 is a rubber slot; 804 is an outer edge buckle 2. DETAILED DESCRIPTION
[0023] The following is a further description of the embodiments of the present invention in conjunction with the accompanying drawings:
[0024] Example 1
[0025] like Figure 1-Figure 4As shown, the utility model includes a metering barrel 1, a metering cover 2, a portable water pump 3, a water pumping pipe 4, a valve 5, a water outlet 6, a collection barrel 7, a collection cover 8, a bracket 9, a sensor 1 10, a sensor 2 11, a processing component 12, a floating plate 13 and a condensed water pipe 14. The metering cover 2 is covered at the upper edge of the metering barrel 1, the portable water pump 3 is installed in the middle position of the metering cover 2 and the drainage pipe of the portable water pump 3 passes through the metering cover 2 and penetrates into the metering barrel 1, so that all the pumped water enters the metering barrel 1, the water pumping end of the portable water pump 3 is connected to the water pumping pipe 4, and the other end of the water pumping pipe is connected to the valve 5 The other end of the valve 5 is connected to the water outlet 6, and the other end of the water outlet 6 is connected and installed at the lower part of the collecting bucket 7. A collecting cover 8 is installed on the upper edge of the collecting bucket 7, and a bracket 9 is installed on the lower edge of the collecting bucket 7. Sensor 1 10 and sensor 2 11 are installed on the outer wall of the collecting bucket 7 and sensor 1 10 is higher than sensor 2 11. The processing component 12 is installed on the outer wall of the collecting bucket 7 and between sensor 1 10 and sensor 2 11. The floating plate 13 is placed inside the collecting bucket 7. The condensed water pipe 14 passes through the center of the collecting cover 8 to the inside of the collecting bucket 7 to ensure that the condensed water enters the collecting bucket 7 through the water pipe.
[0026] The metering cover 2 includes a metering cover body 201, a slot 202, a through hole 203 and an outer edge buckle 204. A slot 202 is provided at the center of the metering cover body 201, and a through hole 203 is provided at the center of the slot 202, which can adapt to the portable water pump 3 so that the portable water pump 3 can be better installed here. An outer edge buckle 204 is provided at the outer edge of the metering cover body 201, which can better match the metering barrel 1.
[0027] The collecting cover 8 comprises a collecting cover body 801, a collecting hole 802, a rubber slot 803 and an outer edge buckle 804. The collecting cover body 801 has a collecting hole 802 in the center, and a rubber slot 803 is provided in the collecting hole 802 so that the condensation water pipe 14 can be fixed there when passing through it, and can also be adjusted according to different lengths. An outer edge buckle 804 is provided at the outer edge of the collecting cover body 801 to better match the collecting bucket 7. The collecting cover body 801 is an inner cone, so that even if the water in the condensation water pipe 14 splashes out or the water on the outer wall of the condensation water pipe 14 leaks onto the cover, it can flow into the collecting bucket 7 due to gravity.
[0028] The diameter of the slot 202 is the same as the diameter of the portable water pump 3, and can be adapted to the portable water pump 3; the diameter of the through hole 203 is the same as the diameter of the drain pipe of the portable water pump 3, and can be adapted to the drain pipe of the portable water pump 3; the width of the outer edge buckle 204 is the same as the thickness of the upper edge of the measuring bucket 1, which can better match the measuring bucket 1.
[0029] The width of the outer edge buckle 2 804 is the same as the thickness of the upper edge of the collection bucket 7 , so that the collection bucket 7 can be better matched.
[0030] The center of the floating plate 13 is provided with an opening, and the outer diameter of the floating plate 13 is smaller than the inner diameter of the collecting barrel 7, so that the floating plate 13 can always be located above the condensed water.
[0031] The processing component 12 controls the switch of the valve 5 and the switch of the portable water pump 3 through the sensor 1 10 and the sensor 2 11 .
[0032] The condensed water pipe 14 passes through the rubber card slot 803 and goes deep into the collecting bucket 7. Pour a proper amount of water into the collecting bucket 7 in advance. The amount of water makes the floating plate 13 just cover the sensor 11. Then, the condensed water enters the collecting bucket 7 normally. When the amount of water in the collecting bucket 7 can make the floating plate 13 rise to just cover the sensor 10, the sensor 10 transmits a signal to the processing component 12. Then, the processing component 12 first transmits a signal to the valve 5 to open the valve 5, and then transmits a signal to the portable water pump 3 to pump water. The condensed water enters the metering bucket 1. When the water in the collecting bucket 7 makes the floating plate 13 rise to just cover the sensor 10, the sensor 10 transmits a signal to the processing component 12. Then, the processing component 12 first transmits a signal to the valve 5 to open the valve 5, and then transmits a signal to the portable water pump 3 to pump water. The condensed water enters the metering bucket 1. When the plate 13 drops to just cover the sensor 2 11, the sensor 2 11 transmits a signal to the processing component 12, the processing component 12 first transmits a signal to the portable water pump 3, the portable water pump 3 stops pumping water, and then transmits a signal to the valve 5 to close the valve 5, completing a work process. The personnel only need to observe the water level in the metering bucket. Through the collection, extraction and metering of condensed water, the risk control and dynamic monitoring of condensed water in the high-voltage cabinet of the distribution room are realized, which reduces the daily workload of the distribution operator, improves work efficiency, and eliminates equipment hazards and personal safety risks.
Claims
1. A condensate drainage metering collector for a high-voltage cabinet in a power distribution room, characterized in that: The portable water pump (3) comprises a metering bucket (1), a metering cover (2), a portable water pump (3), a water pumping pipe (4), a valve (5), a water outlet (6), a collection bucket (7), a collection cover (8), a bracket (9), a sensor 1 (10), a sensor 2 (11), a processing component (12), a floating plate (13) and a condensed water pipe (14). The metering cover (2) covers the upper edge of the metering bucket (1). The portable water pump (3) is installed in the middle position of the metering cover (2) and the drainage pipe of the portable water pump (3) passes through the metering cover (2) and penetrates into the metering bucket (1). The water pumping end of the portable water pump (3) is connected to the water pumping pipe (4), and the other end of the water pumping pipe is connected to the valve (5). The other end of the valve (5) is connected to the water outlet (6), and the other end of the water outlet (6) is connected and installed at the lower part of the collection bucket (7). A collection cover (8) is installed on the upper edge of the collection bucket (7), and a bracket (9) is installed on the lower edge of the collection bucket (7). Sensor 1 (10) and sensor 2 (11) are installed on the outer wall of the collection bucket (7) and sensor 1 (10) is higher than sensor 2 (11). The processing component (12) is installed on the outer wall of the collection bucket (7) and between sensor 1 (10) and sensor 2 (11). The floating plate (13) is placed inside the collection bucket (7), and the condensed water pipe (14) passes through the center of the collection cover (8) to the inside of the collection bucket (7).
2. According to claim 1, a condensate drainage metering collector for a high-voltage cabinet in a power distribution room, characterized in that: The metering cover (2) comprises a metering cover body (201), a clamping slot (202), a through hole (203) and an outer edge clamping buckle (204); the metering cover body (201) is provided with a clamping slot (202) at the center, the clamping slot (202) is provided with a through hole (203) at the center, and the outer edge of the metering cover body (201) is provided with an outer edge clamping buckle (204).
3. According to claim 1, a condensate drainage metering collector for a high-voltage cabinet in a power distribution room, characterized in that: The collecting cover (8) comprises a collecting cover body (801), a collecting hole (802), a rubber slot (803) and a second outer edge buckle (804); the collecting hole (802) is provided at the center of the collecting cover body (801); a rubber slot (803) is provided in the collecting hole (802); a second outer edge buckle (804) is provided at the outer edge of the collecting cover body (801); and the collecting cover body (801) is in the shape of an inner cone.
4. According to claim 2, a condensate drainage metering collector for a high-voltage cabinet in a power distribution room, characterized in that: The diameter of the slot (202) is the same as the diameter of the portable water pump (3); the diameter of the through hole (203) is the same as the diameter of the drainage pipe of the portable water pump (3); and the width of the outer edge buckle (204) is the same as the thickness of the upper edge of the measuring barrel (1).
5. According to claim 3, a condensate drainage metering collector for a high-voltage cabinet in a power distribution room, characterized in that: The width of the outer edge buckle 2 (804) is the same as the thickness of the upper edge of the collection bucket (7).
6. According to claim 1, a condensate drainage metering collector for a high-voltage cabinet in a power distribution room, characterized in that: An opening is provided at the center of the floating plate (13), and the outer diameter of the floating plate (13) is smaller than the inner diameter of the collecting barrel (7).
7. According to claim 1, a condensate drainage metering collector for a high-voltage cabinet in a power distribution room, characterized in that: The processing component (12) controls the opening and closing of the valve (5) and the opening and closing of the portable water pump (3) through the sensor 1 (10) and the sensor 2 (11).