Energy-saving control device of fresh air dehumidifier
By introducing a monitoring box and a rotatable air inlet structure into the fresh air dehumidifier, the problem of the dehumidifier being unable to monitor the dryness and humidity and draw in dehumidified air is solved, achieving energy saving and accurate monitoring data, and ensuring the efficient operation of the dehumidifier.
Patent Information
- Application Number
- CN202520307492.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-02-25
AI Technical Summary
Existing fresh air dehumidifiers cannot monitor the dryness and humidity of the dehumidified air after they are turned on, causing the dehumidifier to always operate at high dehumidification power, which fails to achieve energy-saving effects. In addition, the fixed position of the air intake makes it easy to draw in dehumidified air, affecting the accuracy of monitoring.
An energy-saving control device for a fresh air dehumidifier was designed, comprising a monitoring box, an air sensor, a control module, and a rotatable air inlet structure. The air sensor monitors the humidity data of the air and transmits it to the control module. The control module controls the dehumidifier to turn on and off according to the set data. At the same time, the position of the air inlet can be changed to draw in air from different locations, enabling multiple monitoring operations.
It enables accurate monitoring of air humidity, controls the start and stop of the dehumidifier, achieves energy-saving effects, and ensures the accuracy of monitoring data.
Smart Images

Figure CN223814770U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a new trend dehumidifier technical field, specifically is a new trend dehumidifier energy -conserving control device. BACKGROUND
[0002] The new trend dehumidifier sends the air that is relatively dry and reaches the target relative humidity air to the room through the new trend pipeline after filtering and dehumidifying the outdoor air, to reach the comfortable or process indoor environment humidity demand.
[0003] The existing new trend dehumidifier energy -conserving control device has the following defects:
[0004] 1, the existing new trend dehumidifier can not monitor the dry and wet conditions of the dehumidified air after starting, and the new trend dehumidifier is always in high -intensity dehumidification power, so as to cause the overall good energy to be higher, and the energy -conserving effect can not be achieved.
[0005] 2, the air suction port position is fixed when sucking the air, and there is the phenomenon that the dehumidified air is easily sucked in when sucking the air, so as to cause the problem that the accuracy of monitoring is easily affected.
[0006] Therefore, a solution is needed. UTILITY MODEL CONTENT
[0007] (I) the technical problem solved
[0008] In view of the deficiencies of the prior art, the utility model provides a new trend dehumidifier energy -conserving control device to solve the problems in the above background art.
[0009] (II) technical scheme
[0010] In order to realize the above object, the utility model is realized by the following technical scheme: a new trend dehumidifier energy -conserving control device, including new trend dehumidifier box, environmental protection refrigerant, indoor air inlet and new trend inlet, the inside of new trend dehumidifier box is provided with monitoring box, the inside of monitoring box is provided with fixed baffle, the fixed baffle is provided with exhaust pump, the inside of monitoring box is provided with evaporimeter, the evaporimeter is provided with air blower, the air inlet of air blower is provided with air inlet main pipe between new trend dehumidifier box, the inner wall of monitoring box is provided with air sensor, the inner wall position of monitoring box is provided with control module close to air sensor.
[0011] The outer edge of the new trend dehumidifier box is provided with two support side plates, the air inlet auxiliary pipe is provided between the air inlet main pipe and the support side plate, a plurality of air inlet holes are uniformly arranged on the air inlet auxiliary pipe, a transmission gear ring is arranged on one end of the air inlet auxiliary pipe, a transmission gear column is arranged in the air inlet main pipe, and a drive box is arranged on the outside of the air inlet main pipe.
[0012] Preferably, the inside of the fresh air dehumidifier box is provided with a compressor assembly, one end of the fresh air dehumidifier box is provided with an air outlet pipe, and the inside of the fresh air dehumidifier box at the position of the air outlet pipe is provided with an exhaust fan, and the exhaust fan is connected with the air outlet pipe.
[0013] Preferably, a connecting pipe is arranged between the exhaust fan and the monitoring box, the monitoring box is provided with an air inlet pipe on the other side opposite to the connecting pipe, and the control module is connected between the air sensor and the exhaust pump.
[0014] Preferably, the end of the support side plate is in a circular arc structure, one end of the air inlet auxiliary pipe is in an open structure and located in the inside of the air inlet main pipe, and the other end of the air inlet auxiliary pipe connected with the support side plate is in a closed structure and is connected with the box in rotation.
[0015] Preferably, the transmission gear ring is located at the end of the air inlet auxiliary pipe in the open structure, the transmission gear column is composed of two transmission gears and a rotating column body, and the two transmission gears are fixed on the two ends of the rotating column body, respectively.
[0016] Preferably, the driving box is composed of a transmission gear two, a fixed shell and a driving motor, the transmission gear two is located in the inside of the air inlet main pipe and is fixed on the driving end of the driving motor, and the transmission gear one is in meshing connection with the transmission gear two and the transmission gear ring.
[0017] (Three) beneficial effects
[0018] The utility model provides a kind of fresh air dehumidifier energy-saving control device.It has the following beneficial effects:
[0019] The fresh air dehumidifier energy-saving control device can conveniently inhale and monitor ambient air, and transmit the dry and wet data of the air to the control module. The control module compares the dry and wet data of the dehumidified air according to the settings, and can control the opening and closing of the fresh air dehumidifier, achieving energy-saving effect. At the same time, when inhaling ambient air, the position of the air inlet hole can be changed, and air at different positions can be inhaled to achieve the accuracy of monitoring data. BRIEF DESCRIPTION OF DRAWINGS
[0020] Fig. 1 It is a schematic diagram of the overall structure of the utility model;
[0021] Fig. 2 It is a schematic diagram of the monitoring box of the utility model;
[0022] Fig. 3The utility model discloses an air inlet main pipe schematic view.
[0023] In the drawing: fresh air inlet -1, air inlet main pipe -2, monitoring box -3, support side plate -4, exhaust fan -5, air outlet pipe -6, compressor assembly -7, environmental protection refrigerant -8, fresh air dehumidifier box -9, indoor air suction inlet -10, drive box -11, transmission tooth column -12, air inlet auxiliary pipe -13, air inlet hole -14, transmission tooth ring -15, air sensor -16, control module -17, connecting pipe -18, exhaust pump -19, air inlet pipe -20, fixed baffle -21, evaporator -22, air suction fan -23. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.
[0025] Please refer to Figs. 1-3 The utility model embodiment provides a technical scheme:
[0026] Embodiment 1
[0027] For the above-mentioned problem 1 to be solved: the existing fresh air dehumidifier cannot monitor the dry and wet conditions of the dehumidified air after starting, and the fresh air dehumidifier is always in high-strength dehumidification power, so that the overall energy is higher, and the energy-saving effect cannot be achieved.
[0028] The solution is as follows: a fresh air dehumidifier energy-saving control device, including fresh air dehumidifier box 9, environmental protection refrigerant 8, indoor air suction inlet 10 and fresh air inlet 1, the inside of fresh air dehumidifier box 9 is provided with monitoring box 3, the inside of monitoring box 3 is provided with fixed baffle 21, fixed baffle 21 is provided with exhaust pump 19, the inside of monitoring box 3 is provided with evaporator 22, evaporator 22 is provided with air suction fan 23, the air inlet of air suction fan 23 and fresh air dehumidifier box 9 are provided with air inlet main pipe 2, the inner wall of monitoring box 3 is provided with air sensor 16, monitoring box 3 is provided with control module 17 on the inner wall position close to air sensor 16.
[0029] Two support side plates 4 are arranged on the outer edge of the fresh air dehumidifier box 9, an air inlet auxiliary pipe 13 is arranged between the air inlet main pipe 2 and the support side plate 4, a plurality of air inlet holes 14 are uniformly arranged on the air inlet auxiliary pipe 13, a transmission gear ring 15 is arranged on one end of the air inlet auxiliary pipe 13, and a transmission gear column 12 is arranged on the inside of the air inlet main pipe 2. The outside of the air inlet main pipe 2 is provided with a drive box 11.
[0030] Further, the inside of the fresh air dehumidifier box 9 is provided with a compressor assembly 7, one end of the fresh air dehumidifier box 9 is provided with an air outlet pipe 6, and the inside of the fresh air dehumidifier box 9 at the position of the air outlet pipe 6 is provided with an exhaust fan 5. The box is connected between the exhaust fan 5 and the air outlet pipe 6.
[0031] Further, a connecting pipe 18 is arranged between the exhaust fan 5 and the monitoring box 3, an air inlet pipe 20 is arranged on the other side of the monitoring box 3 opposite to the connecting pipe 18, and the control module 17 is connected between the air sensor 16 and the exhaust pump 19.
[0032] Further, the end of the support side plate 4 is in a circular arc structure, one end of the air inlet auxiliary pipe 13 is in an open structure and located in the inside of the air inlet main pipe 2, and the end of the air inlet auxiliary pipe 13 connected with the support side plate 4 is in a closed structure and is connected with the box.
[0033] Further, the transmission gear ring 15 is located on the end of the air inlet auxiliary pipe 13 in the open structure, the transmission gear column 12 is composed of two transmission gears and a rotating column, and the two transmission gears are fixed on the two ends of the rotating column.
[0034] Further, the drive box 11 is composed of a transmission gear, a fixed shell and a drive motor, the transmission gear is located in the inside of the air inlet main pipe 2 and is fixed on the driving end of the drive motor, and the transmission gear is meshed and connected with the transmission gear and the transmission gear ring.
[0035] Example 2
[0036] For the above-mentioned problem 2 to be solved: the air suction port position is fixed when air is sucked in, and when air is sucked in, the phenomenon of easily sucking in dehumidified air occurs, thereby causing the problem of easily affecting the accuracy of monitoring.
[0037] The solution is as follows: when air is sucked in, air is sucked in through the air inlet main pipe 2, at the same time, the drive box 11 drives the transmission gear main 12 to rotate, further drives the two air inlet auxiliary pipes 13 to rotate, at this time, the position of the air inlet hole 14 can be changed, air in each place is sucked in, to achieve the effect of multiple monitoring, avoid the influence of the air discharged after dehumidification, and ensure the accuracy of the monitoring data.
[0038] Working principle: when working, when the ambient air needs to be monitored, the air suction fan 23 can suck the ambient air through the air inlet main pipe 2, and further send it to the inside of the monitoring box 3, and the air is monitored by the air sensor 16, and the monitored air can open the exhaust pump 19 to exhaust the air, and at the same time, the driving box 11 drives the transmission tooth main 12 to rotate, further drives the two air inlet auxiliary pipes 13 to rotate, at this time, the position of the air inlet hole 14 can be changed to suck the air in each place, so as to achieve the effect of multiple monitoring, avoid the influence of the air exhausted after dehumidification, and ensure the accuracy of the monitoring data.
[0039] The new air inlet-1, the air inlet main pipe-2, the monitoring box-3, the supporting side plate-4, the exhaust fan-5, the air outlet pipe-6, the compressor assembly-7, the environmental protection refrigerant-8, the new air dehumidifier box-9, the indoor air suction inlet-10, the driving box-11, the transmission tooth column-12, the air inlet auxiliary pipe-13, the air inlet hole-14, the transmission tooth ring-15, the air sensor-16, the control module-17, the connecting pipe-18, the exhaust pump-19, the air inlet pipe-20, the fixed partition-21, the evaporator-22, the air suction fan-23, and the components are all general standard components or components known by those skilled in the art, the structure and principle thereof can be known by technical personnel through a technical manual or through a conventional experimental method, the problem solved by the utility model is that the existing new air dehumidifier cannot monitor the dry and wet conditions of the air after dehumidification after being started, and the new air dehumidifier is always in high-intensity dehumidification power, so that the overall energy consumption is high, and the energy-saving effect cannot be achieved, the utility model can monitor the ambient air through the mutual combination of the above components, and the dry and wet data of the air can be transmitted to the control module, the control module compares the dry and wet data of the air after dehumidification, and then the new air dehumidifier can be controlled to be started and stopped, the energy-saving effect is achieved, and when the ambient air is sucked in, the position of the air inlet hole can be changed, and then the air at different positions can be sucked in, so that the accuracy of the monitoring data is ensured.
[0040] The basic principle and main features of the utility model are shown and described above, and the advantages of the utility model are shown and described above, and it is obvious for those skilled in the art that the utility model is not limited to the details of the above-mentioned exemplary embodiments, and the utility model can be realized in other specific forms without departing from the spirit or basic characteristics of the utility model. Therefore, no matter from which point of view, the embodiments should be regarded as exemplary and non-limiting, the scope of the utility model is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the utility model. Any reference signs in the claims should not be regarded as limiting the claims involved.
[0041] Furthermore, it should be understood that although the specification is described in terms of embodiments, not every embodiment includes every feature or implementation described herein. The specification can include implicit combinations of explicitly mentioned features and / or implicit combinations of implicitly mentioned features. Such combinations are also expressly included within the scope of the specification and an embodiment.
Claims
1. A fresh air dehumidifier energy-saving control device, characterized in that: The utility model provides a new air dehumidifier box body (9), environmental protection refrigerant (8), indoor air suction port (10) and new air inlet (1), the inside of new air dehumidifier box body (9) is provided with monitoring box (3), the inside of monitoring box (3) is provided with fixed baffle (21), be provided with exhaust pump (19) on fixed baffle (21), the inside of monitoring box (3) is provided with evaporimeter (22), be provided with air suction fan (23) on evaporimeter (22), the air inlet of air suction fan (23) with new air dehumidifier box body (9) between be provided with air inlet main pipe (2), the inner wall of monitoring box (3) is provided with air sensor (16), monitoring box (3) is provided with control module (17) on the inner wall position close to air sensor (16), The outer edge of new air dehumidifier box body (9) is provided with two support side plates (4), the air inlet auxiliary pipe (13) is arranged between the air inlet main pipe (2) and the support side plate (4), a plurality of air inlet holes (14) are uniformly arranged on the air inlet auxiliary pipe (13), a transmission gear ring (15) is arranged on one end of the air inlet auxiliary pipe (13), a transmission gear column (12) is arranged inside the air inlet main pipe (2), and a drive box (11) is arranged outside the air inlet main pipe (2).
2. The energy-saving control device for a fresh air dehumidifier according to claim 1, characterized in that: The inside of new air dehumidifier box body (9) is provided with a compressor assembly (7), one end of new air dehumidifier box body (9) is provided with an air outlet pipe (6), and an air exhaust fan (5) is arranged inside new air dehumidifier box body (9) at the position of the air outlet pipe (6). The air exhaust fan (5) is connected to the air outlet pipe (6).
3. The energy-saving control device for a fresh air dehumidifier according to claim 2, characterized in that: The connecting pipe (18) is arranged between the air exhaust fan (5) and the monitoring box (3), the air inlet pipe (20) is arranged on the other side of the monitoring box (3) opposite to the connecting pipe (18), and the control module (17) is connected between the air sensor (16) and the exhaust pump (19).
4. The energy-saving control device for a fresh air dehumidifier according to claim 1, characterized in that: The end of the support side plate (4) is in a circular arc structure, one end of the air inlet auxiliary pipe (13) is in an open structure and located inside the air inlet main pipe (2), and the other end of the air inlet auxiliary pipe (13) connected to the support side plate (4) is in a closed structure and is rotationally connected.
5. The energy-saving control device for a fresh air dehumidifier according to claim 1, characterized in that: The transmission gear ring (15) is located at one end of the air inlet auxiliary pipe (13) in an open structure, the transmission gear column (12) is composed of two transmission gears and a rotating column body, and the two transmission gears are fixed at both ends of the rotating column body.
6. The energy-saving control device for a fresh air dehumidifier according to claim 5, characterized in that: The drive box (11) is composed of a transmission gear, a fixed shell and a drive motor, the transmission gear is located inside the air inlet main pipe (2) and is fixed to the driving end of the drive motor, and the transmission gear is engaged with the transmission gear and the transmission gear ring (15).