Electric charge energy-saving intelligent temperature control equipment

By using the heat exchange of the water storage frame and curved tube, as well as the air pump circulation, the problems of high energy consumption and slow response of traditional temperature control equipment are solved, achieving high efficiency and energy saving and precise temperature control within the equipment.

CN223471274UActive Publication Date: 2025-10-24GUANGDONG LINGCHUANG ELECTRIC POWER ENERGY CO LTD
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Patent Information

Application Number
CN202423145237.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2025-10-24
Estimated Expiration
2034-12-19

AI Technical Summary

Technical Problem

Traditional intelligent temperature control equipment consumes a lot of energy and is slow to respond when dealing with temperature changes, and cannot flexibly adapt to user needs, resulting in unnecessary energy waste.

Method used

Heat exchange is achieved using a water storage frame and curved tubes, with air pumps circulating hot and cold air for complementary regulation. Combined with temperature sensors and heaters, precise temperature control is achieved, reducing the need for electric heating.

Benefits of technology

It achieves efficient temperature regulation within the equipment, reduces energy consumption, and improves the accuracy of temperature control and energy-saving effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of energy conservation and temperature control, in particular to an electric charge energy-saving intelligent temperature control device which comprises a mounting plate and the like. The mounting plate is an assembly carrier of the temperature control equipment, the side plate is fixedly arranged on one side of the mounting plate, the mounting plate and the side plate are mounted outside an energy-saving temperature control equipment case, and the side wall is mounted on the outer wall of the case in an attached manner; the air pump I is fixedly mounted on the mounting plate; the air inlet pipe I is connected to an air outlet of the air pump I and the side plate, and the air inlet pipe I is communicated with the interior of the case on one side of the side plate; the first valve is installed on the first air inlet pipe. According to the heat exchange principle, heat in the to-be-cooled equipment is stored in water in the water storage frame, and the heat is reused when the temperature needs to be increased, so that the requirement for electric heating through a heater is reduced, and recycling and saving of energy are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to energy -conserving temperature control technical field especially relates to a kind of intelligent temperature control equipment of electricity energy saving. BACKGROUND

[0002] With the increasing global concern for energy efficiency and the increasing acceptance of smart home technology by consumers, the market for intelligent temperature control devices is growing rapidly, and traditional thermostats often need to be manually set, which cannot flexibly adapt to the living habits of family members or weather changes, leading to unnecessary energy waste, while intelligent temperature control devices can learn the daily behavior patterns of users and automatically adjust temperature settings to achieve the best energy-saving effect.

[0003] In the prior art, intelligent temperature control devices are mainly divided into two categories: liquid temperature control and gas temperature control, these devices usually use the method of setting upper and lower temperature limits to achieve temperature management, and control the opening and closing of heating or cooling systems through constant temperature or one-way heating mode, when the ambient temperature rises above the preset upper limit due to the above reasons, or in the case of abnormally high or low external temperature, the traditional intelligent temperature control device often can only rely on power-driven heating or cooling means to adjust the internal temperature, this single coping strategy not only may lead to large energy consumption, but also may not respond to temperature changes in a timely and effective manner in some cases, affecting the temperature control effect. SUMMARY

[0004] In order to overcome the shortcomings of the prior art, the utility model provides an intelligent temperature control device for electricity energy saving.

[0005] The technical scheme is as follows: an electricity-saving intelligent temperature control device, comprising a mounting plate and a side plate, the mounting plate is a mounting carrier of the temperature control device, the side plate is fixed to one side of the mounting plate, the mounting plate and the side plate are mounted outside an energy-saving temperature control device cabinet, and the side plate is attached to the outer wall of the cabinet; further comprising: a gas pump one fixedly installed on the mounting plate; an air inlet pipe one connected to the air outlet of the gas pump one and the side plate, the air inlet pipe one communicates with the cabinet on one side of the side plate; a valve one installed on the air inlet pipe one; a connecting pipe one communicating with another part of the cabinet on one side of the side plate, the connecting pipe one is used for the exhaust of the temperature control device; an exhaust valve installed on the air inlet pipe one, the exhaust valve is located between the gas pump one and the valve one; a water storage frame fixedly installed on the side plate through a support plate, water for storing heat is added inside the water storage frame; a connecting pipe two communicating between the water storage frame and the air inlet of the gas pump one; a curved pipe arranged inside the water storage frame, the curved pipe does not communicate with the water storage frame, the curved pipe is in the form of a continuous "S" shaped pipe and is distributed in the water storage frame, one end of the curved pipe communicates with the connecting pipe one, and the other end of the curved pipe communicates with the connecting pipe two; a valve two installed on the connecting pipe two; a valve three, an air inlet is clamped on the wall of the connecting pipe two, and the valve three is arranged at the air inlet of the connecting pipe two; the hot gas in the equipment to be cooled is circulated and extracted by the gas pump one, heat exchange is performed on the extracted hot gas in the water storage frame and the curved pipe, the heat in the hot gas is temporarily stored in the water in the water storage frame, the cold gas in the equipment to be heated is circulated and extracted by the gas pump one, the cold gas is heated by the heat stored in the water in the water storage frame, and after full circulation, the equipment is heated, the heat is efficiently utilized to complement the heating and cooling of the equipment, and the electricity-saving effect is achieved.

[0006] Optionally, a temperature sensor one is installed on the side of the side plate close to the gas pump one, a temperature measurement probe of the temperature sensor one penetrates through the side plate and extends into the equipment cabinet to be temperature controlled, and the temperature sensor one is used for monitoring the temperature change in the equipment cabinet to be temperature controlled.

[0007] Optionally, a heater is installed on the mounting plate, the air inlet pipe one penetrates through the heater, the heater is used for heating the gas with insufficient temperature in the air inlet pipe one, a controller is installed on the mounting plate, and the controller is used for controlling the opening and closing of the heater.

[0008] Optionally, a temperature insulation layer is further included, the temperature insulation layer is arranged on the periphery of the water storage frame, a vacuum layer is arranged between the temperature insulation layer and the water storage frame, the temperature insulation layer is used for heat preservation of the water in the water storage frame, and the loss of the heat stored in the water in the water storage frame is reduced.

[0009] Optionally, a temperature sensor two is installed on the top outer wall of the temperature insulation layer, and a temperature measuring probe of the temperature sensor two extends into the water storage frame.

[0010] Optionally, an air pump two is installed on the mounting plate, and an air outlet of the air pump two is connected with the air inlet pipe one through the connecting pipe three and the air inlet pipe one, and the air pump two is used for assisting the air pump one to perform air exchange operation in the device box to be controlled, thereby improving the temperature control efficiency of the temperature control device.

[0011] Beneficial effects: 1, the utility model discloses a heat exchange principle, the heat in the equipment to be cooled is stored in the water in the water storage frame, and the heat is reused when it is needed to be heated, thereby reducing the demand for electric heating by using the heater, realizing the recycling and saving of energy.

[0012] 2, the utility model discloses that the water storage frame is provided with a temperature insulation layer and a vacuum insulation layer, which greatly reduces heat loss, maintains the temperature stability of the water in the water storage frame, and further improves the effectiveness and durability of heat storage.

[0013] 3, the utility model discloses that a temperature sensor one and a temperature sensor two are equipped, the temperature change of water in the device box to be controlled and the water in the water storage frame can be monitored in real time, the accuracy of temperature control is ensured, and the controller automatically adjusts the working state of the heater and the air pump according to the monitoring data, so as to maintain an ideal temperature environment. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a three-dimensional structure schematic view of the utility model.

[0015] Figure 2 It is a sectional view of the temperature insulation layer and the water storage frame of the utility model.

[0016] Figure 3 It is a schematic view of the water storage frame, the curved pipe, the temperature sensor two and the temperature insulation layer of the utility model.

[0017] Figure 4 It is a connection relationship diagram of the mounting plate, the side plate and the air pump one and other components of the utility model.

[0018] Mark for explaining: 1-mounting plate, 101-side plate, 2-air pump one, 3-temperature sensor one, 4-air inlet pipe one, 41-valve one, 5-temperature insulation layer, 6-heater, 7-connecting pipe one, 8-exhaust valve, 9-water storage frame, 10-curved pipe, 11-temperature sensor two, 12-connecting pipe two, 13-valve two, 14-valve three, 15-air pump two, 16-connecting pipe three, 17-controller. DETAILED DESCRIPTION

[0019] The following description is only a preferred embodiment of the utility model, and does not limit the protection scope of the utility model.

[0020] An intelligent temperature control device for saving electricity, as shown in Figures 1-4 The temperature control device comprises a mounting plate 1 and a side plate 101, the mounting plate 1 is a mounting carrier of the temperature control device, the side plate 101 is fixed to one side of the mounting plate 1, the mounting plate 1 and the side plate 101 are mounted on the outside of the energy-saving temperature control device cabinet, and the side plate 101 is attached to the outer wall of the cabinet; further comprising: a gas pump one 2 fixedly installed on the mounting plate 1; a gas inlet pipe one 4 connected to the gas outlet of the gas pump one 2 and the side plate 101, the gas inlet pipe one 4 is communicated with the cabinet on one side of the side plate 101; a valve one 41 installed on the gas inlet pipe one 4; a connecting pipe one 7 communicated with another part of the cabinet on one side of the side plate 101, the connecting pipe one 7 is used for the exhaust of the temperature control device; an exhaust valve 8 installed on the gas inlet pipe one 4, the exhaust valve 8 is located between the gas pump one 2 and the valve one 41; a water storage frame 9 fixedly installed on the side plate 101 through a support plate, water for storing heat is added in the water storage frame 9; a connecting pipe two 12 communicated between the water storage frame 9 and the gas inlet of the gas pump one 2; a curved pipe 10 arranged in the water storage frame 9, the curved pipe 10 is not communicated with the water storage frame 9, the curved pipe 10 is distributed in the water storage frame 9 in the form of a continuous "S" shaped pipe, one end of the curved pipe 10 is communicated with the connecting pipe one 7, and the other end of the curved pipe 10 is communicated with the connecting pipe two 12; a valve two 13 installed on the connecting pipe two 12; a valve three 14, an air inlet is clamped on the pipe wall of the connecting pipe two 12, the valve three 14 is arranged at the air inlet of the connecting pipe two 12, the hot gas in the device needing to be cooled is circulated and extracted by the gas pump one 2, heat exchange is carried out by using the hot gas extracted in the water storage frame 9 and the curved pipe 10, the heat in the hot gas is temporarily stored in the water in the water storage frame 9, the cold gas in the device needing to be heated is circulated and extracted by the gas pump one 2, the cold gas is heated by using the heat stored in the water in the water storage frame 9, the device is heated after full circulation, heat is used efficiently to complement the heating and cooling of the device, and thus the effect of saving electricity is achieved.

[0021] As shown in Figure 1 and Figure 2 The side plate 101 is installed with a temperature sensor one 3 on the side surface close to the gas pump one 2, a temperature measuring probe of the temperature sensor one 3 penetrates through the side plate 101 and extends into the device cabinet to be temperature controlled, and the temperature sensor one 3 is used for monitoring the temperature change in the device cabinet to be temperature controlled.

[0022] As shown in Figure 1 and Figure 4 The mounting plate 1 is installed with a heater 6, the gas inlet pipe one 4 penetrates through the heater 6, the heater 6 is used for heating the gas with insufficient temperature in the gas inlet pipe one 4, the mounting plate 1 is installed with a controller 17, and the controller 17 is used for controlling the opening and closing of the heater 6.

[0023] As Figure 2 And Figure 3 As shown, it also includes a temperature insulation layer 5, which is arranged on the periphery of the water storage frame 9. The temperature insulation layer 5 and the water storage frame 9 are vacuum insulated. The temperature insulation layer 5 is used for heat preservation of the water in the water storage frame 9, and reduces the loss of the stored heat of the water in the water storage frame 9. A temperature sensor two 11 is installed on the outer wall of the top of the temperature insulation layer 5. The temperature measuring probe of the temperature sensor two 11 penetrates through the temperature insulation layer 5 and extends into the water storage frame 9. The temperature sensor one 3 is used for monitoring the temperature change of the water in the water storage frame 9.

[0024] As Figure 1 And Figure 2 As shown, the mounting plate 1 is provided with an air pump two 15. The air outlet of the air pump two 15 is connected to the air inlet pipe one 4 through a connecting pipe three 16. The air pump two 15 is used for assisting the air pump one 2 to perform air exchange operation in the temperature-controlled equipment box, so as to improve the temperature control efficiency of the temperature control equipment.

[0025] When the device needs to be cooled, the valve one 41, the valve two 13 and the valve three 14 are opened, and the exhaust valve 8 is in the closed state, the air pump one 2 starts to work, the hot air in the device box to be temperature controlled is extracted, the hot air is guided into the curved pipe 10 through the air inlet pipe one 4, the continuous "S" shape distribution of the curved pipe 10 in the water storage frame 9 ensures that the hot air can fully contact with the water in the water storage frame 9, so as to transfer heat to the water, realize heat exchange, make the heat in the hot air be stored in the water in the water storage frame 9, and after several rounds of sufficient heat exchange between the water in the water storage frame 9 and the hot air in the device box, the temperature change of the device is monitored through the temperature sensor one 3, and the temperature sensor two 11 monitors the temperature change of the water in the water storage frame 9, when the temperature change monitored by the temperature sensor one 3 and the temperature sensor two 11 is small, a certain amount of excess hot air is discharged through the opening of the exhaust valve 8, then the exhaust valve 8 is closed and the valve two 13 is opened, then the air pump one 2 is used to supplement the air in the temperature control device box through the air inlet pipe one 4, so as to realize sufficient cooling of the temperature control device, the temperature sensor two 11 monitors the temperature change of the water in the water storage frame 9, so as to ensure that the system can adjust the operation strategy according to the actual water temperature, when the device needs to be warmed up, the air pump one 2 is started again, and the cold air in the device box to be temperature controlled is directly extracted, the cold air flows through the water storage frame 9, and the curved pipe 10 in the water storage frame 9 plays a role again, and this time the heat stored in the water storage frame 9 is transferred to the cold air to warm it up, if the heat in the water storage frame 9 is insufficient to meet the warming requirement, the heater 6 on the mounting plate 1 will be automatically turned on to additionally heat the gas passing through the air inlet pipe one 4, so as to ensure that the output gas reaches the required temperature, after several rounds of gas circulation, the temperature control device reaches the required temperature, and in order to improve the temperature control efficiency, the air pump two 15 can assist the air pump one 2 to speed up the air exchange speed, especially in the case of rapid temperature adjustment.

[0026] The above is only an embodiment of the present application, and does not limit the patent range of the present application, and any equivalent structure or equivalent process transformation according to the content of the present application, or direct or indirect application in other related technical fields, are also included in the patent protection range of the present application.

Claims

1. An intelligent temperature control device for saving electricity, comprising a mounting plate (1) and a side plate (101), the side plate (101) is fixed on one side of the mounting plate (1), the mounting plate (1) and the side plate (101) are installed outside the energy-saving temperature control device cabinet, and the side plate (101) is attached to the outer wall of the cabinet; characterized in that Further comprising: Air pump one (2) is fixedly installed on the mounting plate (1); Air inlet pipe one (4) is connected to the air outlet of the air pump one (2) and the side plate (101), the air inlet pipe one (4) is communicated with the cabinet on one side of the side plate (101); Valve one (41) is installed on the air inlet pipe one (4); The connecting pipe one (7) is communicated with another place of the cabinet on one side of the side plate (101), and the connecting pipe one (7) is used for the exhaust of the temperature control device; The exhaust valve (8) is installed on the air inlet pipe one (4), and the exhaust valve (8) is located between the air pump one (2) and the valve one (41); The water storage frame (9) is fixedly installed on the side plate (101) through the supporting plate, and water for storing heat is added in the water storage frame (9); The connecting pipe two (12) is communicated between the water storage frame (9) and the air inlet of the air pump one (2); The curved pipe (10) is arranged in the water storage frame (9), the curved pipe (10) is not communicated with the water storage frame (9), the curved pipe (10) is in the form of a continuous "S" shaped pipe and is distributed in the water storage frame (9), one end of the curved pipe (10) is communicated with the connecting pipe one (7), and the other end of the curved pipe (10) is communicated with the connecting pipe two (12); Valve two (13) is installed on the connecting pipe two (12); valve three (14) is arranged on the air inlet of the connecting pipe two (12).

2. The electricity-saving intelligent temperature control device according to claim 1, characterized in that, The temperature sensor one (3) is installed on the side of the air pump one (2) close to the side plate (101), the temperature sensor one (3) is arranged in the device cabinet to be temperature controlled, and the temperature sensor one (3) is used for monitoring the temperature change in the device cabinet to be temperature controlled.

3. The electricity-saving intelligent temperature control device according to claim 2, characterized in that, The heater (6) is installed on the mounting plate (1), the air inlet pipe one (4) passes through the heater (6), the heater (6) is used for heating the insufficient temperature gas in the air inlet pipe one (4), and the controller (17) is installed on the mounting plate (1).

4. The electricity-saving intelligent temperature control device according to claim 3, characterized in that, Further comprising a temperature insulation layer (5), the temperature insulation layer (5) is arranged on the periphery of the water storage frame (9), and a vacuum layer is arranged between the temperature insulation layer (5) and the water storage frame (9).

5. The electricity-saving smart temperature control device according to claim 4, wherein, The temperature sensor two (11) is installed on the top outer wall of the temperature insulation layer (5), the temperature sensor two (11) is arranged in the water storage frame (9), and the temperature sensor one (3) is used for monitoring the temperature change of the water in the water storage frame (9).

6. The electricity-saving smart temperature control device according to claim 5, wherein, The installation plate (1) is provided with a second air pump (15), and the air outlet of the second air pump (15) is connected with the air inlet pipe (4) through a connecting pipe (16), and the second air pump (15) is used for assisting the first air pump (2) to perform air exchange operation in the device box to be controlled in temperature.