Indoor climate control system

CN224718938UActive Publication Date: 2026-09-04CHINA ENERGY GRP NINGXIA COAL IND CO LTD
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Patent Information

Application Number
CN202522193940.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-13
Publication Date
2026-09-04
Estimated Expiration
2035-10-13

AI Technical Summary

Technical Problem

[0002]随着社会的发展,人们对生活品质的要求越来越高,在夏季,人们在室内已经不满足于空调制冷,空调制冷虽然可以快速降温,但是其会导致室内干燥,引起人们的不适,一些场所已经普及供冷设备,其利用在室内铺设管道,管道之中流动16-19℃冷水,降低地面温度,根据热交换原理,靠近管道的空气变冷,配合加湿系统可以实现有效室内降温,相比较空调制冷,这种温控系统会使人体感到更加舒适,为了获取室内的温度和湿度等各项参数,一般在室内设置传感器,但是传感单元通常设置在墙面等区域,采用的固定式安装,只能检测附近区域的各项参数,室内的温度变化有一个过程,这种在固定区域的数据采集,容易产生偏差,并且传感器的检测范围是有限制的,致使检测的结果与实际情况存在的偏差较大

Benefits of technology

[0014] Through the above technical solution, this utility model provides an indoor temperature control system, including a temperature control device, multiple sets of coils, a detection component, and a ceiling panel. The ceiling panel is suspended from the top of the house, and the coils are laid above the ceiling panel and below the floor of the house. Each coil is connected to the temperature control device through a pipe. The detection component includes a mounting frame, a motor, a coil, a suspension rope, and a cover. The mounting frame is fixed to the ceiling panel, and the motor is mounted on the mounting frame with its output shaft connected to the coil. One end of the suspension rope is connected to the coil, and the other end is connected to the cover. The motor is adapted to drive the coil to rotate in both directions, so that the suspension rope can be raised and lowered through the coil. The raising and lowering of the suspension rope allows the height of the cover from the ground to be dynamically adjusted, which facilitates the detection component to detect various parameters such as temperature and humidity at different heights in the house, improves the accuracy of parameter acquisition, and is beneficial to the control of indoor temperature.

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Abstract

The utility model relates to indoor temperature control discloses a kind of indoor temperature control regulating system, for adjusting the indoor temperature of house, including temperature control equipment, multiple sets of coil, detection component and ceiling, ceiling is hoisted in the top of house, coil is laid above ceiling and below the floor of house, each coil is communicated with temperature control equipment by pipeline, detection component includes mounting bracket, motor, wire reel, hanging rope and cover body, mounting bracket is fixed on ceiling, motor is installed on mounting bracket, its output shaft is connected with wire reel, one end of hanging rope is connected with wire reel, other end is connected with cover body, motor is suitable for driving wire reel to rotate in positive and negative directions, to be able to through wire reel to retract hanging rope, the retracting of hanging rope makes that the height of cover body distance ground is dynamically adjustable, facilitate detection component can detect the temperature, humidity etc. various parameters of different height in house, improve the precision of parameter acquisition, it is favorable to the regulation and control of indoor temperature.
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Description

Technical Field

[0001] This utility model relates to indoor temperature control, specifically to an indoor temperature control and regulation system. Background Technology

[0002] With societal development, people's demands for quality of life are increasing. In summer, people are no longer satisfied with air conditioning for indoor cooling. While air conditioning can quickly lower the temperature, it can also cause indoor dryness, leading to discomfort. Some places have widely adopted cooling systems, which utilize pipes laid indoors with 16-19°C cold water flowing through them to lower the floor temperature. Based on the principle of heat exchange, the air near the pipes cools down, and combined with a humidification system, effective indoor cooling can be achieved. Compared to air conditioning, this temperature control system makes people feel more comfortable. To obtain various parameters such as indoor temperature and humidity, sensors are generally installed indoors. However, these sensors are usually fixed to walls or other areas, only able to detect parameters in nearby areas. Indoor temperature changes gradually, and this data collection in a fixed area is prone to errors. Furthermore, the detection range of the sensors is limited, resulting in significant discrepancies between the detected results and the actual situation. Utility Model Content

[0003] To address the aforementioned technical problems, this invention provides an indoor temperature control system, wherein the detection component can detect various parameters such as temperature and humidity at different heights within the building, thereby improving the accuracy of parameter acquisition and facilitating indoor temperature regulation.

[0004] To address the aforementioned technical problems, this utility model provides an indoor temperature control system for regulating the indoor temperature of a house. The system includes a temperature control device, multiple sets of coils, a detection component, and a ceiling panel. The ceiling panel is suspended from the top of the house. The coils are laid above the ceiling panel and below the floor of the house. Each coil is connected to the temperature control device via a pipe. The detection component includes a mounting frame, a motor, a coil, a suspension rope, and a cover. The mounting frame is fixed to the ceiling panel. The motor is mounted on the mounting frame, and its output shaft is connected to the coil. One end of the suspension rope is connected to the coil, and the other end is connected to the cover. The motor is adapted to drive the coil to rotate in both directions, enabling the release and retraction of the suspension rope via the coil. Multiple sensors are installed inside the cover.

[0005] Preferably, the enclosure is further provided with an indicator light and an elastic component, the elastic component being located at the connection between the enclosure and the suspension rope, and the suspension rope being connected to the elastic component.

[0006] Preferably, the sensor includes at least a temperature sensor and a humidity sensor.

[0007] Preferably, the ceiling panel has an opening at which an exhaust fan is installed.

[0008] Preferably, it also includes a humidifying component, which is fixed to the ceiling panel and electrically connected to the detection component.

[0009] Preferably, the humidification component includes a humidifier, a nozzle, a controller, a water tank, and a water collection tank. The nozzle is installed on the ceiling panel, the humidifier is disposed between the coil and the ceiling panel, the humidifier is connected to the nozzle through a pipe, the humidifier is connected to the water tank, the controller is electrically connected to the humidifier, the detection component, and the water tank, and the water collection tank is connected to the ceiling panel or the house and connected to the outside of the house.

[0010] Preferably, the cross-sectional area of ​​the water collection tank gradually decreases from the opening towards the liquid outflow direction.

[0011] Preferably, the ceiling panel is provided with a movable component, and the nozzle is mounted on the movable component.

[0012] Preferably, the moving component includes a bracket, a motor, a lead screw, a slider, and a mounting base. The output shaft of the motor is connected to the lead screw. The slider is fitted onto the lead screw and connected to the mounting base. The mounting base is slidably connected to the bracket. The motor is fixedly connected to the bracket. The bracket is installed below the ceiling panel. The contact nozzle is installed on the mounting base.

[0013] Preferably, it also includes a fresh air unit, and an exhaust nozzle is provided between the coil and the ceiling panel, and the fresh air unit is connected to the exhaust nozzle through an exhaust pipe.

[0014] Through the above technical solution, this utility model provides an indoor temperature control system, including a temperature control device, multiple sets of coils, a detection component, and a ceiling panel. The ceiling panel is suspended from the top of the house, and the coils are laid above the ceiling panel and below the floor of the house. Each coil is connected to the temperature control device through a pipe. The detection component includes a mounting frame, a motor, a coil, a suspension rope, and a cover. The mounting frame is fixed to the ceiling panel, and the motor is mounted on the mounting frame with its output shaft connected to the coil. One end of the suspension rope is connected to the coil, and the other end is connected to the cover. The motor is adapted to drive the coil to rotate in both directions, so that the suspension rope can be raised and lowered through the coil. The raising and lowering of the suspension rope allows the height of the cover from the ground to be dynamically adjusted, which facilitates the detection component to detect various parameters such as temperature and humidity at different heights in the house, improves the accuracy of parameter acquisition, and is beneficial to the control of indoor temperature. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 This is a schematic diagram of the structure of the indoor temperature control system of this utility model;

[0017] Figure 2 This is a schematic diagram of the structure of the detection component of the indoor temperature control system of this utility model;

[0018] Figure 3 yes Figure 2 A schematic diagram of the structure at point A;

[0019] Figure 4 This is a schematic diagram of the moving component of the indoor temperature control system of this utility model.

[0020] Explanation of reference numerals in the attached figures

[0021] 1. Temperature control equipment; 2. Piping; 3. Building; 4. Ceiling panel; 5. Moving parts; 501. Bracket; 502. Motor; 503. Lead screw; 504. Slider; 505. Mounting base; 507. Protective layer; 6. Detection components; 601. Mounting bracket; 602. Motor; 603. Coil; 604. Suspension rope; 605. Cover; 606. Indicator light; 607. Sensor; 608. Elastic component; 7. Humidification component; 701. Humidifier; 702. Nozzle; 8. Exhaust nozzle; 9. Fresh air unit; 10. Exhaust fan; 11. Water collection tank; 12. Exhaust duct; 13. Coil. Detailed Implementation

[0022] The embodiments of this utility model will be further described in detail below with reference to the accompanying drawings and examples. The detailed descriptions and accompanying drawings of the following embodiments are used to exemplarily illustrate the principles of this utility model, but should not be used to limit the scope of this utility model. This utility model can be implemented in many different forms and is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims. The orientations or positional relationships indicated by terms such as "upper," "lower," "inner," and "outer" are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. When the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0023] Furthermore, the terms "first," "second," and similar words used in this invention do not indicate any order, quantity, or importance, but are merely used to distinguish different parts. "Parallel" is not strictly parallel, but within the permissible range of error. Words such as "including" or "comprising" mean that the element preceding the word encompasses the element listed after it, and do not exclude the possibility of encompassing other elements as well.

[0024] It should also be noted that, in the description of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model depending on the specific circumstances. When a specific device is described as being located between a first device and a second device, an intermediary device may or may not be present between the specific device and the first or second device.

[0025] All terms used in this invention have the same meaning as understood by one of ordinary skill in the art to which this invention pertains, unless otherwise specifically defined. It should also be understood that terms defined in general dictionaries should be interpreted as having meanings consistent with their meanings in the context of the relevant art, and not as idealized or highly formalized, unless expressly defined herein.

[0026] Techniques, methods, and equipment known to those skilled in the art may not be discussed in detail, but where appropriate, they should be considered part of the specification.

[0027] See Figures 1 to 4This utility model provides an indoor temperature control system for regulating the indoor temperature of a room 3. It includes a temperature control device 1, multiple sets of coils 13, a detection component 6, and a ceiling panel 4. The ceiling panel 4 is suspended from the top of the room 3. The coils 13 are laid above the ceiling panel 4 and below the floor of the room 3. Each coil 13 is connected to the temperature control device 1 via a pipe 2. The detection component 6 includes a mounting bracket 601, a motor 602, a coil 603, a suspension rope 604, and a cover 605. The mounting bracket 601 is fixed to the ceiling panel 4. The motor 602 is mounted on the mounting bracket 601, and its output shaft is connected to the coil 603. One end of the suspension rope 604 is connected to the coil 603, and the other end is connected to the cover 605. The motor 602 is adapted to drive the coil 603 to rotate in both directions, so that the suspension rope 604 can be retracted or extended via the coil 603. The enclosure 605 is equipped with multiple sensors 607. Among them, the temperature control device 1 is existing technology and works with the coil 13 to adjust the indoor temperature. It can refer to existing technologies such as temperature-controlled radiant panels. The temperature control device 1 delivers a medium to the coil 13. The medium circulates within the coil 13, and the temperature of the medium is dissipated into the room, thereby regulating the indoor temperature. The ceiling panel 4 is provided with multiple through holes to facilitate indoor air flow and improve the temperature control effect. The detection component 6 is used to detect various parameters in the room, such as temperature and humidity. The motor 602 can move the suspension rope 604, so that the height of the enclosure 605 from the ground can be dynamically adjusted. This allows the detection component to detect various parameters such as temperature and humidity at different heights in the room, improving the accuracy of parameter acquisition and facilitating the regulation of indoor temperature.

[0028] In some embodiments, the cover 605 is further provided with an indicator light 606 and an elastic component 608. The elastic component 608 is a torsion bar spring, a spring tube, etc. The elastic component 608 is located at the connection between the cover 605 and the suspension rope 604. The suspension rope 604 is connected to the elastic component 608. The elastic component 608 can stabilize the state of the cover 605 during movement and reduce the shaking of the cover 605. During descent, it stops moving. The elastic component 608 can buffer the cover 605. The indicator light 606 can inform the user of the working status of the detection component to avoid frequent adjustment of the set temperature of the temperature control device 1. It can also serve as a warning to prevent pedestrians indoors from colliding with the cover 605.

[0029] In some embodiments, the sensor 607 includes at least a temperature sensor and a humidity sensor to obtain the indoor temperature and humidity, which is beneficial for setting the temperature of the temperature control device 1 and for adjusting the operation of the humidification component 7. In addition, a distance sensor is provided inside the cover 605 to detect the distance between the cover 605 and the ground, and a corresponding control program can be set. When the cover 605 is about to collide with an object, the motor 602 stops moving, or the motor 602 controls the cover 605 to move away from the object.

[0030] In some embodiments, the ceiling panel 4 is provided with an opening, at which an exhaust fan 10 is installed. The exhaust fan 10 can promote the flow of indoor air, which is beneficial for adjusting the indoor temperature.

[0031] In some embodiments, a humidifying component 7 is also included. The humidifying component 7 is fixed on the ceiling panel 4 and electrically connected to the detection component 6. It maintains appropriate indoor humidity, which is beneficial for regulating indoor temperature and improving the user's comfort. The humidifying component 7 has preset humidity parameters. The operating status of the humidifying component 7 is adjusted according to the indoor humidity parameters detected by the detection component 6.

[0032] In some embodiments, the humidifying component 7 includes a humidifier 701, a nozzle 702, a controller, a water tank, and a water collection tank 11. The nozzle 702 is mounted on the ceiling panel 4. The humidifier 701 is disposed between the coil 13 and the ceiling panel 4. The humidifier 701 is connected to the nozzle 702 through a pipe and is also connected to the water tank. The controller is electrically connected to the humidifier 701, the detection component 6, and the water tank. The water collection tank 11 is connected to the ceiling panel 4 or the house 3 and extends to the outside of the house 3, thereby draining the accumulated water generated by the humidifying component 7 outdoors and preventing it from dripping onto the ground. The controller receives signals, including humidity parameters provided by the detection component 6. A protective layer 507 is provided on the pipe connecting the humidifier 701 to the nozzle 702.

[0033] In some embodiments, the cross-sectional area of ​​the water collection tank 11 gradually decreases from the opening to the liquid outflow direction, which facilitates the collection of liquid and its outflow to the outside of the house 3, while avoiding water accumulation in the water collection tank 11. The water collection tank 11 needs to be located below the horizontal position of the nozzle 702. When the humidifying component 7 stops operating, the nozzle 702 can be suspended above the water collection tank 11 by the moving component 5.

[0034] In some embodiments, a movable component 5 is provided on the ceiling panel 4, and a nozzle 702 is mounted on the movable component 5, so that the nozzle 702 can move indoors, making the indoor humidity more even.

[0035] In some embodiments, the moving component 5 includes a bracket 501, a motor 502, a lead screw 503, a slider 504, and a mounting base 505. The output shaft of the motor 502 is connected to the lead screw 503. The slider 504 is fitted onto the lead screw 503 and connected to the mounting base 505. The mounting base 505 is slidably connected to the bracket 501. The motor 502 is fixedly connected to the bracket 501. The bracket 501 is installed below the ceiling panel 4. The nozzle 702 is installed on the mounting base 505. When the motor 502 is turned on, the lead screw 503 rotates. The slider 504 is limited by the bracket 501, so that the slider 504 can only move along the direction of the lead screw, thereby allowing the nozzle 702 to move to different positions in the room 3, resulting in a better humidification effect.

[0036] In some embodiments, see Figure 1 It also includes a fresh air unit 9, and an exhaust nozzle 8 is provided between the coil 13 and the ceiling panel 4. The fresh air unit 9 is connected to the exhaust nozzle 8 through the exhaust pipe 12, so that the air in the house 3 can circulate, which is conducive to controlling the difference in indoor temperature and making it easier to achieve precise adjustment of indoor temperature.

[0037] To better understand the technical content provided by this utility model, the following description is based on a preferred embodiment.

[0038] This utility model provides an indoor temperature control system for regulating the indoor temperature of a room 3. It includes a temperature control device 1, multiple sets of coils 13, a detection component 6, and a ceiling panel 4. The ceiling panel 4 is suspended from the top of the room 3. The coils 13 are laid above the ceiling panel 4 and below the floor of the room 3. Each coil 13 is connected to the temperature control device 1 via a pipe 2. The ceiling panel 4 has an opening at which an exhaust fan 10 is installed. A humidifying component 7 is fixed to the ceiling panel 4 and electrically connected to the detection component 6. The humidification component 7 includes a humidifier 701, a nozzle 702, a temperature control device 1, a water tank, and a water collection tank 11. The nozzle 702 is mounted on the ceiling panel 4. The humidifier 701 is located between the coil 13 and the ceiling panel 4. The humidifier 701 is connected to the nozzle 702 via pipe fittings and is also connected to the water tank. The controller is electrically connected to the humidifier 701, the detection component 6, and the water tank. The water collection tank 11 is connected to the ceiling panel 4 and extends to the outside of the building 3. The cross-sectional area of ​​the water collection tank 11 gradually decreases from the opening towards the liquid outflow direction. A movable component 5 is provided on the ceiling panel 4, and the nozzle 702 is mounted on the movable component 5. The moving part 5 includes a bracket 501, a motor 502, a lead screw 503, a slider 504, and a mounting base 505. The output shaft of the motor 502 is connected to the lead screw 503. The slider 504 is fitted on the lead screw 503 and connected to the mounting base 505. The mounting base 505 is slidably connected to the bracket 501. The motor 502 is fixedly connected to the bracket 501. The bracket 501 is installed below the ceiling panel 4. The nozzle 702 is installed on the mounting base 505. An exhaust nozzle 8 is provided between the coil 13 and the ceiling panel 4. The fresh air unit 9 is connected to the exhaust nozzle 8 through the exhaust pipe 12. The detection component 6 includes a mounting bracket 601, a motor 602, a coil 603, a suspension rope 604, and a cover 605. The mounting bracket 601 is fixed to the ceiling panel 4. The motor 602 is mounted on the mounting bracket 601, and its output shaft is connected to the coil 603. One end of the suspension rope 604 is connected to the coil 603, and the other end is connected to the cover 605. The motor 602 is adapted to drive the coil 603 to rotate in both directions, so that the suspension rope 604 can be wound up and down through the coil 603. The cover 605 is equipped with multiple sensors 607, including at least a temperature sensor and a humidity sensor. The cover 605 is also equipped with an indicator light 606 and an elastic component 608. The elastic component 608 is located at the connection between the cover 605 and the suspension rope 604, and the suspension rope 604 is connected to the elastic component 608.

[0039] When the detection component 6 of this utility model is in operation, the motor 602 is started to drive the coil 603, and the coil 603 winds up and unwinds the suspension rope 604, so that the height of the cover 605 connected to the suspension rope 604 from the ground can be dynamically adjusted. The sensor installed in the cover 605 detects parameters such as indoor temperature and humidity, and transmits the parameters to the temperature control device 1 and the controller to improve the adjustment of indoor temperature.

[0040] The various embodiments of this utility model have now been described in detail. To avoid obscuring the concept of this utility model, some details known in the art have not been described. Those skilled in the art can fully understand how to implement the technical solutions disclosed herein based on the above description.

[0041] Although specific embodiments of the present invention have been described in detail by way of examples, those skilled in the art should understand that the above examples are for illustrative purposes only and are not intended to limit the scope of the present invention. Those skilled in the art should understand that modifications can be made to the above embodiments or equivalent substitutions can be made to some technical features without departing from the scope and spirit of the present invention. In particular, as long as there is no structural conflict, the various technical features mentioned in the embodiments can be combined in any manner.

Claims

1. An indoor temperature control system for regulating the indoor temperature of a house (3), characterized in that, The system includes a temperature control device (1), multiple sets of coils (13), a detection component (6), and a ceiling panel (4). The ceiling panel (4) is suspended from the top of the house (3). The coils (13) are laid above the ceiling panel (4) and below the floor of the house (3). Each coil (13) is connected to the temperature control device (1) through a pipe (2). The detection component (6) includes a mounting bracket (601), a motor (602), a coil (603), a suspension rope (604), and a cover (605). The mounting bracket (601) is fixed on the ceiling panel (4). The motor (602) is mounted on the mounting bracket (601), and its output shaft is connected to the spool (603). One end of the suspension rope (604) is connected to the spool (603), and the other end is connected to the cover (605). The motor (602) is adapted to drive the spool (603) to rotate in both directions so that the suspension rope (604) can be wound up and down through the spool (603). The cover (605) is equipped with multiple sensors (607).

2. The indoor temperature control system according to claim 1, characterized in that, The cover (605) is also equipped with an indicator light (606) and an elastic component (608). The elastic component (608) is located at the connection between the cover (605) and the suspension rope (604). The suspension rope (604) is connected to the elastic component (608).

3. The indoor temperature control system according to claim 2, characterized in that, The sensor (607) includes at least a temperature sensor and a humidity sensor.

4. The indoor temperature control system according to claim 1, characterized in that, The ceiling panel (4) has an opening, and an exhaust fan (10) is installed at the opening.

5. The indoor temperature control system according to claim 1, characterized in that, It also includes a humidifying component (7), which is fixed on the ceiling panel (4) and electrically connected to the detection component (6).

6. The indoor temperature control system according to claim 5, characterized in that, The humidification component (7) includes a humidifier (701), a nozzle (702), a controller, a water tank, and a water collection tank (11). The nozzle (702) is installed on the ceiling panel (4). The humidifier (701) is located between the coil (13) and the ceiling panel (4). The humidifier (701) is connected to the nozzle (702) through a pipe. The humidifier (701) is connected to the water tank. The controller is electrically connected to the humidifier (701), the detection component (6), and the water tank. The water collection tank (11) is connected to the ceiling panel (4) or the house (3) and is connected to the outside of the house (3).

7. The indoor temperature control system according to claim 6, characterized in that, The cross-sectional area of ​​the water collection tank (11) gradually decreases from the opening towards the liquid outflow direction.

8. The indoor temperature control system according to claim 6, characterized in that, The ceiling panel (4) is provided with a movable part (5), and the nozzle (702) is installed on the movable part (5).

9. The indoor temperature control system according to claim 8, characterized in that, The moving component (5) includes a bracket (501), a motor (502), a lead screw (503), a slider (504), and a mounting base (505). The output shaft of the motor (502) is connected to the lead screw (503). The slider (504) is fitted onto the lead screw (503) and connected to the mounting base (505). The mounting base (505) is slidably connected to the bracket (501). The motor (502) is fixedly connected to the bracket (501). The bracket (501) is installed below the ceiling panel (4). The nozzle (702) is installed on the mounting base (505).

10. The indoor temperature control system according to any one of claims 1 to 9, characterized in that, It also includes a fresh air unit (9), and an exhaust nozzle (8) is provided between the coil (13) and the ceiling panel (4). The fresh air unit (9) is connected to the exhaust nozzle (8) through an exhaust pipe (12).