Intelligent temperature control self-adaptive heating and ventilation flow adjusting device

By combining the design of the enclosed plate and the electromagnetic plate, the air velocity and the size of the air inlet are synchronously controlled, which solves the problem of insufficient flow control accuracy in the existing technology and improves the accuracy and adaptability of HVAC flow regulation.

CN223610323UActive Publication Date: 2025-11-28HEZE CONSTR ENG ARCHITECTURAL DESIGN & RES INST
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Patent Information

Application Number
CN202520013571.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2025-11-28
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

Existing intelligent temperature-controlled adaptive HVAC flow regulation devices do not uniformly regulate airflow velocity and air inlet size when adjusting flow, which affects the accuracy of flow control.

Method used

The design employs a combination of a closed plate and an electromagnetic plate. The closed plate automatically adjusts the size of the air inlet using a torsion spring and airflow, while the electromagnetic plate controls the opening and closing of the air inlet by energizing it. A servo motor and a heating plate control the flow rate and temperature of the warm air, thus achieving synchronous regulation of airflow speed and air inlet size.

Benefits of technology

It enables precise control of HVAC flow, improves adaptability and intelligence, reduces energy waste, and enhances user experience.

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Patent Text Reader

Abstract

The utility model discloses an intelligent temperature control self-adaption heating and ventilation flow adjusting device which comprises a heating and ventilation adjusting frame, a flow control mechanism used for partially closing an air inlet is arranged in the rear side of the heating and ventilation adjusting frame, and a warm air mechanism used for controlling the heating and ventilation flow is arranged in the front side of the heating and ventilation adjusting frame. When no warm air passes through the heating and ventilation device, the sealing plate seals the rear side of the heating and ventilation adjusting frame, when the warm air mechanism is started to generate the warm air, the sealing plate automatically opens under the action of airflow to convey the warm air into a room, and the size of the airflow generated by the warm air mechanism can also influence the inclination angle of the sealing plate, so that the heating and ventilation device is convenient to use. The larger the warm air flow is, the larger the inclination angle of the sealing plate is, and the larger the opening of the air inlet is, so that the size of the air inlet can be controlled by controlling the air flow of the warm air mechanism, the flow and the size of the air inlet are synchronously controlled, and the self-adaptive heating and ventilation flow adjusting precision is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of self -adaptation warm and is especially a kind of intelligent temperature control self -adaptation warm and pass through flow regulating device. BACKGROUND

[0002] Intelligent temperature control self -adaptation warm and pass through flow regulating device by integrating temperature sensor, flow sensor, controller and executing mechanism etc. Component, real -time monitoring and adjusting the flow and temperature in warm and pass through system, to realize the temperature control effect of self -adaptation, it is applicable to various warm and pass through system, such as heating, ventilation and air conditioning etc., can significantly improve the energy efficiency and user experience of system, with the continuous development of technology, future intelligent temperature control self -adaptation warm and pass through flow regulating device will be more integrated, more sensor, controller and executing mechanism are integrated in a compact unit, by introducing more advanced algorithm and artificial intelligence technology, improve the intelligent level of device, make it can better adapt to different environmental conditions and user demand, future device will pay more attention to energy saving and environmental protection, by optimizing control strategy and algorithm, further reduce energy waste and environmental pollution.

[0003] The intelligent temperature control device for different purpose buildings disclosed in the Chinese patent document with publication number CN206330208U includes an intelligent controller host, which is connected with an automatic regulating valve, an outdoor temperature sensor, a building water supply flow sensor and a building return water flow sensor respectively. The automatic regulating valve and the building water supply flow sensor are located on the water supply pipeline of the heat user, the automatic regulating valve is located between the building water supply flow sensor and the heat user, and the building return water flow sensor is located on the return water pipeline of the heat user. The intelligent temperature control device for different purpose buildings can reasonably supply heat to the building according to time and demand, breaks the traditional mode of continuous heating for 24 hours in colleges and universities, can reasonably compensate for the climate of the building, adjusts the climate compensation according to the indoor and outdoor temperature, and improves the thermal comfort in the building. The device can intelligently control and adjust the heating, effectively saves energy and avoids waste of manpower and material resources. However, the intelligent temperature control device for different purpose buildings is mainly used for temperature control of water flow, and the effect of self-adaptive temperature control of air flow is poor.

[0004] In the process of adjusting the flow of the existing intelligent temperature control self-adaptive warm and pass through flow regulating device, the method of adjusting the flow rate or the size of the air inlet is adopted, and the two are not uniformly controlled, which can easily affect the accuracy of flow control.

[0005] In order to solve the above problems existing in the prior art, it is a problem worth studying to provide an intelligent temperature control self-adaptive warm and pass through flow regulating device. Utility model content

[0006] The utility model discloses a purpose at overcoming the process of adjusting flow of the prior art intelligent temperature control self -adaptation warm and ventilate flow regulating device, adopt the method of regulating and controlling flow rate or air inlet size, both do not carry out unified control and are easy to influence the precision of flow control's shortcoming, provide a kind of intelligent temperature control self -adaptation warm and ventilate flow regulating device, realize the technical effect of synchronous control precision control warm and ventilate flow of air flow rate and air inlet size.

[0007] The utility model discloses a purpose to realize by following technical scheme:

[0008] A kind of intelligent temperature control self -adaptation warm and ventilate flow regulating device, including warm and ventilate regulating frame, the rear side inside of the warm and ventilate regulating frame is provided with flow control mechanism for partially closing air inlet, the front side inside of the warm and ventilate regulating frame is provided with warm air mechanism for controlling warm and ventilate flow.

[0009] The flow control mechanism includes several closed plates rotationally connected to the rear side inside of the warm and ventilate regulating frame, the width of the closed plate is greater than the distance between adjacent closed plates;

[0010] The bottom of the rotation shaft of the closed plate is sleeved with a torsion spring, the torsion of the torsion spring causes the closed plate to merge to closed state, the torsion of the torsion spring is less than the wind force size of the warm air mechanism, when the warm air mechanism is started to generate warm air, the closed plate is automatically opened under the action of airflow, and warm air is delivered to the room, and the airflow size generated by the warm air mechanism can also affect the angle of inclination of the closed plate, the greater the warm air flow, the greater the inclination angle of the closed plate, and the greater the opening of the air inlet.

[0011] The warm air mechanism includes a servo motor fixedly connected to the inside of the warm and ventilate regulating frame, the output end of the servo motor is fixedly connected with a rotating shaft, the outside of the rotating shaft is fixedly connected with a plurality of fan blades, and the servo motor is electrically connected with the power supply.

[0012] The outside of the servo motor is fixedly connected with an electric heating disc, the electric heating disc is spiral-shaped, the electric heating disc separates the inside of the warm and ventilate regulating frame, and the electric heating disc is electrically connected with the power supply.

[0013] The rear side inside of the warm and ventilate regulating frame is fixedly connected with a plurality of electromagnetic plates, the rear side top of the warm and ventilate regulating frame is fixedly connected with an electromagnetic device, and the electromagnetic plates are electrically connected with the power supply.

[0014] The number of the electromagnetic plates is matched with the number of the closed plates, the material of the closed plate is magnetic material, the electromagnetic plates are in closed state when being attached to the closed plate, the number and position of the energized electromagnetic plates can be controlled to control the size of the air inlet of the warm and ventilate regulating frame.

[0015] The front half of the heating and ventilation conditioning frame is cylindrical, the rear half of the heating and ventilation conditioning frame is square cylindrical, and the two parts of the heating and ventilation conditioning frame are sealingly connected, and the rear half of the heating and ventilation conditioning frame is provided as a square cylinder, so that the rotating closing plate can be distributed equidistantly in the heating and ventilation conditioning frame.

[0016] The heating and ventilation conditioning frame is connected with the indoor air supply device through the connecting flange, and the inner side of the connecting flange is provided with a plurality of suction cup grooves which are annularly and equidistantly distributed on the inner side of the connecting flange, and the suction cup grooves can be adsorbed on the butt flange of the indoor air supply device, thereby improving the sealing performance of the two.

[0017] The four corners of the rear end of the heating and ventilation conditioning frame are fixedly connected with mounting plates, and the heating and ventilation conditioning frame is fixedly connected with the wall body through the mounting plates and bolts.

[0018] 1. The intelligent temperature control self-adaptive heating and ventilation flow regulating device synchronously controls the flow and the size of the air inlet, thereby improving the precision of self-adaptive heating and ventilation flow regulation.

[0019] 2. The intelligent temperature control self-adaptive heating and ventilation flow regulating device analyzes the indoor temperature control condition through the control terminal, controls the output rotating speed of the servo motor and the temperature of the electric heating disc according to the analysis result, and thereby realizes self-adaptive intelligent temperature control.

[0020] 3. The intelligent temperature control self-adaptive heating and ventilation flow regulating device, the closing plate closes part of the air inlets of the heating and ventilation conditioning frame, the number and position of the electrified electromagnetic plates are controlled, and thereby the size of the air inlets of the heating and ventilation conditioning frame is controlled. DETAILED DESCRIPTION

[0021] Figure 1 It is a structural schematic view of the utility model;

[0022] Figure 2 It is a rear view structural schematic view of the utility model;

[0023] Figure 3 It is a structural schematic view of the utility model Figure 2 It is an enlarged structural schematic view of position A in the utility model;

[0024] Figure 4 It is a front side cross-sectional structural schematic view of the utility model;

[0025] Figure 5 It is a structural schematic view of the utility model Figure 4 It is an enlarged structural schematic view of position B in the utility model;

[0026] Figure 6 It is a top view cross-sectional structural schematic view of the utility model;

[0027] Figure 7For the utility model Figure 6 The enlarged structure schematic view at C.

[0028] In the figure: 1-warmth adjustment frame, 2-closing plate, 3-torsion spring, 4-servo motor, 5-rotary shaft, 6-fan blade, 7-electric heating disc, 8-electromagnetic plate, 9-electromagnetic device, 10-connection flange, 11-suction cup groove, 12-mounting plate. DETAILED DESCRIPTION

[0029] The embodiments of the utility model are described in detail below, the examples of the embodiments are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are intended to explain the utility model, and cannot be understood as a limitation of the utility model.

[0030] Embodiment 1

[0031] As Figures 1 to 7 shown, an intelligent temperature control adaptive warm air flow adjustment device, including warm air adjustment frame 1, the rear side inside of warm air adjustment frame 1 is provided with flow control mechanism for partially closing air inlet, the front side inside of warm air adjustment frame 1 is provided with warm air mechanism for controlling warm air flow.

[0032] As Figures 1 to 2 shown, flow control mechanism includes several closing plates 2 rotatably connected to the rear side inside of warm air adjustment frame 1, the width of closing plate 2 is greater than the distance between adjacent closing plates 2;

[0033] The bottom of the rotating shaft of closing plate 2 is sleeved with torsion spring 3, and the torsion of torsion spring 3 makes closing plate 2 merge into closed state, and the torsion of torsion spring 3 is less than the wind force size of warm air mechanism, by setting closing plate 2 distributed side by side on the rear side of warm air adjustment frame 1 and setting torsion spring 3 at the end thereof, it can be automatically closed under the torsion of torsion spring, when the warm air device is not passed by warm air, then closing plate 2 closes the rear side of warm air adjustment frame 1, avoids cold air and dust to enter indoor through warm air adjustment frame, improves the sealing property of the warm air device in non-use state, when warm air mechanism is started to make it produce warm air, then closing plate 2 is automatically opened under the action of airflow, and warm air is transported to indoor, and the airflow size generated by warm air mechanism can also affect the angle of inclination of closing plate 2, the greater the warm air flow, the greater the angle of inclination of closing plate, the greater the opening of air inlet, so that the airflow size of the device controlling warm air mechanism can control the size of air inlet, the flow and the size of air inlet are synchronously controlled, and the precision of adaptive warm air flow adjustment is improved;

[0034] Furthermore, the sealing plate 2 is made of activated carbon, which can absorb dust and odors in the air. It is also lightweight and can open under the action of airflow when warm air is needed, reducing the overall weight of the device and purifying the warm air.

[0035] Example 2

[0036] like Figures 4 to 5 As shown, the heating mechanism includes a servo motor 4 fixedly connected inside the HVAC adjustment frame 1. The output end of the servo motor 4 is fixedly connected to a rotating shaft 5. Several fan blades 6 are fixedly connected to the outside of the rotating shaft 5. The servo motor 4 is electrically connected to a power supply.

[0037] like Figures 4 to 5 As shown, a heating plate 7 is fixedly connected to the outside of the servo motor 4. The heating plate 7 is vortex-shaped and divides the interior of the HVAC adjustment frame 1. The heating plate 7 is electrically connected to the power supply. By setting the fan blades 6 driven by the servo motor 4 inside the HVAC adjustment frame 1, and heating the airflow through the heating plate 7, a heated warm airflow is generated. The hot air flow and hot air temperature are controlled by the rotation speed of the servo motor 4 and the temperature of the heating plate 7.

[0038] Furthermore, temperature sensors, air flow rate sensors, and humidity sensors are installed indoors to monitor the indoor temperature control in real time and transmit the monitoring results to the control terminal. The control terminal analyzes the indoor temperature control and controls the output speed of the servo motor 4 and the temperature of the heating plate 7 based on the analysis results, thereby achieving adaptive intelligent temperature control.

[0039] Example 3

[0040] like Figures 6 to 7 As shown, several electromagnetic plates 8 are fixedly connected to the rear interior of the HVAC adjustment frame 1, and an electromagnetic device 9 is fixedly connected to the rear top of the HVAC adjustment frame 1. All electromagnetic plates 8 are electrically connected to 9.

[0041] The number of electromagnetic plates 8 is matched with the number of sealing plates 2. The sealing plates 2 are made of magnetic material. When the electromagnetic plates 8 are attached to the sealing plates 2, they are in a closed state. By setting electromagnetic plates 8 in the gaps of the sealing plates 2, when the electromagnetic plates 8 are energized and generate magnetism, they can attract and fix the corresponding sealing plates 2. When all the sealing plates 2 are attracted and fixed, the entire HVAC regulating frame 1 is in a closed state. When some electromagnetic plates 8 are energized and attract and fix some of the sealing plates 2, some of the air inlets of the HVAC regulating frame 1 can be closed. By controlling the number and position of the energized electromagnetic plates 8, the size of the air inlet of the HVAC regulating frame 1 can be controlled.

[0042] By connecting the electromagnetic device 9 to the control terminal of the HVAC flow regulating device, the air intake volume of the HVAC regulating frame 1 can be adjusted by closing the air inlet as needed.

[0043] As Figure 1 shown, the front half of the warm air conditioning frame 1 is cylindrical, and the rear half of the warm air conditioning frame 1 is square cylindrical, and the two parts of the warm air conditioning frame 1 are sealingly connected, by setting the front half of the warm air conditioning frame 1 as a cylinder, the rotating fan blade 6 can be adapted to the inner wall of the warm air conditioning frame 1, and the warm and sufficient warm air is generated to control and heat the indoor, and the rear half of the warm air conditioning frame 1 is set as a square cylinder, so that the rotating closing plate 2 can be equally distributed in the warm air conditioning frame 1.

[0044] Embodiment 4

[0045] As Figures 1 to 5 shown, the front end of the warm air conditioning frame 1 is fixedly connected with a connecting flange 10, and the warm air conditioning frame 1 is communicated with the indoor air supply device through the connecting flange 10, and the inner side of the connecting flange 10 is provided with a plurality of suction cup grooves 11, and the suction cup grooves 11 are equally distributed in the inner side of the connecting flange 10 in a ring shape, and by setting the suction cup grooves 11 on the inner side of the connecting flange 10, the warm air flow regulating device can be adsorbed on the butt flange of the indoor air supply device when it is butt jointed with the indoor air supply device, thereby improving the sealing property of the two.

[0046] As Figures 1 to 3 shown, the four corners of the rear end of the warm air conditioning frame 1 are fixedly connected with mounting plates 12, and the warm air conditioning frame 1 is fixedly connected with the wall body through the mounting plates 12 and bolts.

[0047] The working principle of the utility model is as follows:

[0048] S1, when the warm air conditioning device does not have warm air passing through, the closing plate 2 closes the rear side of the warm air conditioning frame 1, so as to avoid cold air and dust from entering the indoor through the warm air conditioning frame, and improve the sealing property of the warm air conditioning device in the non-use state, when the warm air mechanism is started to generate warm air, the closing plate 2 is automatically opened under the action of the airflow, and the warm air is transported to the indoor, and the size of the airflow generated by the warm air mechanism can also affect the angle of inclination of the closing plate 2, the greater the warm air flow, the greater the inclination angle of the closing plate, and the greater the opening of the air inlet, so that the size of the air inlet can be controlled by controlling the size of the airflow of the warm air mechanism;

[0049] S2, the airflow passing through is heated by the electric heating disc 7, so as to generate heated warm air flow, and the warm air flow and the warm air temperature are controlled by the rotating speed of the servo motor 4 and the temperature of the electric heating disc 7;

[0050] S3, install temperature sensor, air flow rate sensor and humidity sensor in the room, real-time monitor the temperature control condition of the room, and transmit the monitoring result to the control terminal, analyze the temperature control condition of the room by the control terminal, control the output rotating speed of the servo motor 4 and the temperature of the electric heating disc 7 according to the analysis result, realize self-adaptive intelligent temperature control;

[0051] S4, when the electromagnetic plate 8 is powered to generate magnetism, the corresponding closing plate 2 can be adsorbed and fixed, when all the closing plates 2 are adsorbed and fixed, the whole heating and ventilation adjusting frame 1 is in a closed state, when part of the electromagnetic plates 8 are powered to adsorb and fix part of the closing plates 2, part of the air inlet of the heating and ventilation adjusting frame 1 can be closed, by controlling the number and position of the powered electromagnetic plates 8, the size of the air inlet of the heating and ventilation adjusting frame 1 can be controlled.

Claims

1. A smart temperature control adaptive heating and ventilation flow regulating device, comprising a heating and ventilation regulating frame (1), characterized in that: The rear side of the warm air conditioning frame (1) is internally provided with a flow control mechanism for partially closing the air inlet, and the front side of the warm air conditioning frame (1) is internally provided with a warm air mechanism for controlling the warm air flow.

2. The intelligent temperature control self-adapting heating flow regulating device according to claim 1, characterized in that: The flow control mechanism comprises a plurality of closing plates (2) rotatably connected to the rear side of the warm air conditioning frame (1), and the width of the closing plate (2) is greater than the distance between adjacent closing plates (2). The bottom of the rotating shaft of the closing plate (2) is sleeved with a torsion spring (3), and the torsion of the torsion spring (3) causes the closing plate (2) to merge into a closed state, and the torsion of the torsion spring (3) is smaller than the wind force of the warm air mechanism.

3. The intelligent temperature control self-adapting heating flow regulating device according to claim 1, characterized in that: The warm air mechanism comprises a servo motor (4) fixedly connected to the inside of the warm air conditioning frame (1), the output end of the servo motor (4) is fixedly connected with a rotating shaft (5), the outer side of the rotating shaft (5) is fixedly connected with a plurality of fan blades (6), and the servo motor (4) is electrically connected with the power supply.

4. The intelligent temperature control self-adapting heating flow regulating device according to claim 3, characterized in that: The outer side of the servo motor (4) is fixedly connected with an electric heating disc (7), the electric heating disc (7) is in a spiral shape, the electric heating disc (7) separates the inside of the warm air conditioning frame (1), and the electric heating disc (7) is electrically connected with the power supply.

5. The intelligent temperature control self-adapting heating flow regulating device according to claim 2, characterized in that: The rear side of the warm air conditioning frame (1) is fixedly connected with a plurality of electromagnetic plates (8), and the top of the rear side of the warm air conditioning frame (1) is fixedly connected with an electromagnetic device (9), and the electromagnetic plates (8) are electrically connected with the electromagnetic device (9). The number of the electromagnetic plates (8) is matched with the number of the closing plates (2), the material of the closing plates (2) is magnetic material, and the electromagnetic plates (8) are in a closed state when they are attached to the closing plates (2).

6. The intelligent temperature control self-adapting heating flow regulating device according to claim 5, characterized in that: The front half of the warm air conditioning frame (1) is in a cylindrical shape, the rear half of the warm air conditioning frame (1) is in a square cylindrical shape, and the two parts of the warm air conditioning frame (1) are sealingly connected.

7. The intelligent temperature control self-adapting heating flow regulating device according to claim 1, characterized in that: The outer side of the front end of the warm air conditioning frame (1) is fixedly connected with a connecting flange (10), the warm air conditioning frame (1) is communicated with the indoor air supply device through the connecting flange (10), the inner side of the connecting flange (10) is provided with a plurality of suction cup grooves (11), and the suction cup grooves (11) are annularly and equidistantly distributed on the inner side of the connecting flange (10).

8. The intelligent temperature control self-adapting heating flow regulating device according to claim 1, characterized in that: The four corners of the rear end of the warm air conditioning frame (1) are fixedly connected with mounting plates (12), and the warm air conditioning frame (1) is fixedly connected with the wall body through the mounting plates (12) and bolts.

Citation Information

Patent Citations

  • Intelligent temperature control device of different usage buildings

    CN206330208U