Refrigerator and humidity control method
10969163 · 2021-04-06
Assignee
Inventors
- Riyong Lu (Qingdao, CN)
- Bin FEI (Qingdao, CN)
- Xueli Cheng (Qingdao, CN)
- Xiaodong ZHOU (QINGDAO, CN)
- Xiaobing ZHU (Qingdao, CN)
Cpc classification
F25D2700/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D29/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D2317/04131
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B2700/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D17/042
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D2500/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D2700/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F25D11/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D29/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The present invention discloses a refrigerator and a humidity control method for the same. The refrigerator comprises a humidity controller to controllably maintain moisture and/or perform humidification. The humidity controller is configured to: set a target humidity value, measure an actual relative humidity value of a target space, and calculate a target water replenishing mass W based on a difference between the two values and a current temperature of the target space; measure and calculate a water replenishing time T, and adjust the humidity controller so as to maintain its maximum humidifying rate V.sub.max within the time T to achieve the humidification purpose; and adjust the humidity controller so as to maintain a humidifying rate consistent with a water vapor loss rate in the target space to achieve the moisture maintaining purpose.
Claims
1. A refrigerator comprising a humidity controller, wherein the humidity controller comprises a container and a humidifier, the container receiving an agent for use of humidifying and being provided with an opening to supply the agent to the humidifier, the humidifier is stretchable and foldable, and the humidity controller further comprises an adjuster for adjusting an unfolding degree of the humidifier so as to adjust humidity in a moisture maintaining space; wherein the adjuster comprises a connector member and a rotator pivotably connected to the connector member; and the humidity controller further comprises a housing, the housing comprises a bottom wall and side walls extending from the bottom wall, the bottom wall and the side walls together define a receiving chamber with an opening at the top portion; a first slide groove which extends horizontally is provided to one of the side walls of the housing, the rotator is located inside the receiving chamber of the housing, the connector member passes through the first slide groove and is connected with the rotator, the connector member slides along the extending direction of the first slide groove to adjust the unfolding degree of the humidifier.
2. The refrigerator of claim 1, wherein the opening of the container is adjustable to allow the humidity controller to reach a controlled humidifying rate.
3. The refrigerator of claim 2, wherein the humidity controller comprises a driver to adjust the opening of the container.
4. The refrigerator of claim 2, wherein the humidifying rate of the humidity controller is positively correlated with an opening area of the opening of the container.
5. The refrigerator of claim 1, wherein the humidity controller further comprises a sub-controller which is capable of setting the target humidity value H.sub.0.
6. The refrigerator of claim 1, wherein the humidity controller further comprises a temperature sensor and a humidity sensor.
7. The refrigerator of claim 1, wherein the rotator comprises a fixed end and a movable end opposite to the fixed end, and the adjuster comprises a working state and a non-working state; when the movable end rotates for the maximum distance away from the connector member, the adjuster enters the working state and the rotator interferes the humidifier, so that the humidifier is maintained at a limited unfolding length.
8. The refrigerator of claim 7, wherein the connector member comprises a body and at least one connecting arm extending from the body, the body is located outside the housing, the connecting arm passes through the first slide groove and is connected with the rotator, the connecting arm forms a receiving space, when the movable end rotates to the receiving space, the adjuster enters the non-working state and the rotator does not interferes the humidifier.
9. The refrigerator of claim 1, wherein a bottom opening is provided to bottom of the container, the bottom opening is an outlet for injecting the agent into the receiving chamber of the housing to maintain the humidity of the humidifier, the humidity controller further comprises a puller which adjusts the opening degree of the bottom opening of the container to adjust the flow rate of the agent.
10. The refrigerator of claim 9, wherein the puller is located at the bottom of the container and slides along the bottom of the container, a route of the puller at least partially covers the bottom opening of the container, so that the puller controls the opening degree of the bottom opening of the container during the pulling progress.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(11) The followings describe the present invention in detail with reference to the embodiments shown in the figures. However, these embodiments do not restrict the present invention. Modifications of the structures, methods or functions made based on these embodiments by those skilled in the art shall be embraced by the protection scope of the present invention.
(12) According to an embodiment of the present invention, a refrigerator comprises at least one compartment. Independent moisture maintaining spaces such as boxes are arranged inside the compartment. Alternatively, the compartment may be a moisture maintaining space. A humidity controller is arranged inside the moisture maintaining space to adjust the relative humidity of the space.
(13) As shown in
(14) The housing 10 comprises a bottom wall and side walls extending from the bottom wall. The bottom wall and the side walls together define a receiving chamber with an opening at the top portion. At least part of the side walls of the housing 10 is provided with several through holes to allow water vapor in the housing 10 to flow out.
(15) Referring to
(16) The container 30 is located within the housing 10 and neighbors the humidifier 20. The container 30 is used to receive an agent for use of humidifying, which is usually water. Openings are provided to the top and bottom of the container 30 respectively. The top opening 301 is an inlet for injecting the agent into the container 30. The bottom opening 302 is an outlet for injecting the agent into the receiving chamber of the housing 10 to maintain the humidity of the humidifier 20.
(17) The proximal end 201 of the humidifier 20 is connected with the bottom opening 302 of the container 30. The wet membrane directly contacts the bottom opening 302 to guide the agent to flow to the entire humidifier 20.
(18) In another embodiment of the present invention, the humidity controller further comprises an adjuster 40 for adjusting the unfolding degree of the humidifier 20 so as to adjust the humidity in the moisture maintaining space. Referring to
(19) Further, at least one elongate through hole is provided to the side wall of the housing 10 as a first slide groove 101 of the connector member 41. The rotator 43 is located inside the receiving chamber of the housing 10. The connector member 41 passes through the first slide groove 101 from the outer side of the housing 10 and is connected with the rotator 43. The connector member 41 comprises a body 411 and at least one connecting arm 413 extending from the body 411. The body 411 is located outside the housing 10. The connecting arm 413 passes through the first slide groove 101 and is connected with the rotator 43. The first slide groove 101 of the housing 10 extends horizontally. The connector member 41 may slide along the extending direction of the first slide groove 101 to adjust the unfolding degree of the humidifier 20.
(20) The adjuster 40 further comprises a rotary shaft 45, through which the connector member 41 and the rotator 43 are pivotably connected.
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(22) Referring to
(23) In this way, by adjusting the unfolding degree of the humidifier 20 with the adjuster 40, the effective evaporation surface area of the humidifier 20 can be altered so as to realize moisture maintaining or humidifying of the moisture maintaining space. As water vapor in the compartment of the refrigerator is evaporated continuously and is carried away by convection air, properly adjusting the unfolding degree of the humidifier 20 can enable the water replenishing mass to be the same as the water vapor loss mass of the moisture maintaining space so as to realize moisture maintaining, or enable the water replenishing mass to be larger than the water vapor loss mass of the moisture maintaining space so as to realize humidifying.
(24) In yet another embodiment of the present invention, the humidity controller further comprises a puller 50, which is located at the bottom of the container 30 and may slide along the bottom of the container 30. The puller 50 may adjust the opening degree of the bottom opening 302 of the container 30 to adjust the flow rate of the agent. Referring to
(25) Further, a second slide groove (not shown) in the lower surface of the bottom wall of the container 30 is formed near the bottom opening 302. The puller 50 cooperates with the shape of the second slide groove so as to slide in the second slide groove. The extending direction of the second slide groove may be the same as that of the foldable humidifier 20. The route of the puller 50 at least partially covers the bottom opening 302 of the container 30, so that the puller 50 can control the opening degree of the bottom opening 302 of the container 30 during the pulling process.
(26) The puller 50 is in the shape of a strip. One end of the puller 50 is used as a handle for a sliding operation and is defined as a proximal end 501. The opposite end of the puller 50 is connected with the proximal end 201 of the humidifier 20 and is defined as a distal end 503.
(27) Referring to
(28) In this way, by controlling the opening degree of the bottom opening 302 with the puller 50, the humidifying rate of the humidifier 20 can be adjusted, so that the humidity of the moisture maintaining space can be controlled.
(29) In yet another embodiment of the present invention, the humidity controller further comprises a driver 60. Referring to
(30) Further, the driver 60 comprises a step motor and a sub-controller to accurately adjust the movement distance of the puller 50.
(31) In this way, the driver 60 can adjust the opening degree of the bottom opening 302 of the container, replenish the humidity in the moisture maintaining space to the preset target humidity value H.sub.0, and maintain the humidity in the space by balancing the water vapor loss mass in the space through real-time water replenishment, thereby achieving the purposes of accurate humidifying and moisture maintaining.
(32) Specifically, referring to
(33) In step S1, a target humidity value H.sub.0 is set, and a temperature T.sub.0 and an actual relative humidity value h of the moisture maintaining space are measured.
(34) The target humidity value H.sub.0 may be preset by a user using the sub-controller. The temperature T.sub.0 and the humidity value h are measured by a temperature sensor and a humidity sensor arranged in the compartment.
(35) In step S2, a target water replenishing mass W in the moisture maintaining space is calculated by enquiring the Moisture Content of Saturated Wet Air at Different Temperatures look-up table based on the ΔH, and is related with the temperature T.sub.0 and a volume of the moisture maintaining space, wherein ΔH equals H.sub.0−h and is a difference between the target humidity value and the actual relative humidity value.
(36) The sub-controller may preset the above look-up table and the calculation relations. Once the temperature T.sub.0 is set, the value of W can be obtained.
(37) In step S3, a water replenishing time T is measured and calculated. When the bottom opening of the container fully opens, water in the mass of W can be added into the humidifier 20 within the time T, which equals W/V.sub.max. V.sub.max is the maximum humidifying rate when the bottom opening of the container fully opens, and can be measured through experiments.
(38) The sub-controller may preset the above calculation relations. Once the temperature T.sub.0 is set, the value of T can be obtained.
(39) In step S4, the bottom opening 302 of the container fully opens within the time T through adjustment of the driver 60 to perform humidification.
(40) In step S5, the opening area S of the bottom opening 302 of the container is adjusted to reach a humidifying rate V.sub.m, and the humidifying rate V.sub.m of the container is measured and calculated, wherein V.sub.m is a flow rate of the humidifying liquid of the bottom opening of the container when the humidity in the moisture maintaining space is maintained at a constant. V.sub.m equals a.sub.1, and a.sub.1 is the water vapor mass loss rate of the moisture maintaining space.
(41) a.sub.1 is related with the temperature, air flow rate, position and volume of the moisture maintaining space, and its mean can be obtained through experiments and inference. The water vapor mass loss value is hardly affected by the relative humidity change in the moisture maintaining space, and its change can be neglected. For refrigerators of specific models, it may be deemed that a.sub.1 is only related with the temperature T.sub.0, and may be preset in the sub-controller.
(42) When V.sub.m=a.sub.1, the water vapor mass loss rate a.sub.1 of the moisture maintaining space is the same as the flow rate of the humidifying liquid in the container, so the relative humidity in the moisture maintaining space is maintained to be stable.
(43) As mentioned above, the flow rate of the humidifying liquid is positively correlated with the opening area S of the bottom opening 302 of the container. By adjusting the opening area S of the bottom opening 302 of the container using the driver 60, the humidifying rate V.sub.m can be reached, thereby realizing the purpose of performing humidification.
(44) The present method assumes that the moisture maintaining space is in the normal atmosphere to simplify calculations. It should be understood that those skilled in the art may adjust the humidity in the moisture maintaining space more accurately by calculating under different atmosphere pressures based on the teaching of the present application, and such embodiments shall also be embraced by the protection scope of the present application.
(45) It should be understood that although the present description describes the present invention through the embodiments, each embodiment may include several technical solutions. The presentation manner of the present description only aims to make the descriptions clearer. Those skilled in the art should take the present description as an integral document. The technical solutions in the respective embodiments may be combined properly to form other embodiments which may be understood by those skilled in the art.
(46) The above detailed descriptions are only descriptions of the feasible embodiments of the present invention, and are not intended to limit the protection scope of the present invention. Equivalent embodiments or modifications within the spirit of the present invention shall be embraced by the protection scope of the present invention.