A method, system and computer storage medium for rapid humidity adjustment

By using a dehumidification system consisting of a semiconductor cooling chip and a condensation component in the cigar storage box, combined with a humidification system and dynamically adjusting the operating power, the problem of inaccurate humidity regulation inside the storage box is solved, achieving fast and precise humidity control and improving the storage effect of cigars.

CN116725228BActive Publication Date: 2025-12-16GUANGDONG FUXIN ELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202310683437.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-09
Publication Date
2025-12-16
Estimated Expiration
2043-06-09

AI Technical Summary

Technical Problem

Existing cigar storage boxes cannot effectively regulate the humidity inside the box, especially when the environment changes, resulting in a large error between the humidity setting and the actual humidity, which affects the storage and maintenance of cigars.

Method used

The dehumidification system, composed of a semiconductor cooling chip, a condensation component, and a heat dissipation component, combined with a humidification system, dynamically adjusts the operating power of the humidification or dehumidification system by monitoring the external ambient temperature and humidity in real time, thereby achieving rapid and precise regulation of the humidity inside the storage chamber.

Benefits of technology

It enables rapid and precise adjustment of humidity inside the storage chamber under different environmental conditions, improving the storage and maintenance effect of the cigar storage box, ensuring that the humidity meets the set range, simplifying the structure and reducing costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a kind of humidity rapid adjustment method, system and computer storage medium, humidity rapid adjustment method includes S1, the external environment temperature and external environment humidity of maintenance storage device are acquired, and the humidity setting range of the storage cavity is acquired;S2, the initial humidity in cavity of storage cavity is acquired, whether the initial humidity in cavity of storage cavity meets humidity setting range is judged;If not meet, then execute step S3;If meet, then execute step S4;S3, according to the initial humidity in cavity of storage cavity and humidity setting range, execute humidification action or execute dehumidification action;S4, according to the volume of storage cavity, external environment temperature, external environment humidity and humidity setting range, execute humidification action.This adjustment method will maintenance storage device The external environment temperature and external environment humidity of device are included in the regulation basis of humidification system and dehumidification system, to promote the initial humidity in cavity of storage cavity Rapid, accurate control, improve the storage maintenance effect of maintenance storage device.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of storage equipment, in particular to a humidity rapid adjusting method, system and computer storage medium. BACKGROUND

[0002] With the improvement of people's living standards, the number of people who smoke tobacco products is increasing, and tobacco products generally include cigars and cigarettes, which are taken as examples for illustration in this paper.

[0003] Generally speaking, the storage and maintenance of cigars need to be placed in a specific temperature and humidity environment. In general, the storage and maintenance conditions of cigars are that the temperature requirement is between 16℃ and 20℃, and the humidity requirement is between 60% and 70%. At present, most cigars are stored in wooden cigar boxes or wine cabinets, and the existing cigar boxes or wine cabinets cannot well control and adjust the temperature and humidity in the box or cabinet, and cannot achieve the purpose of long-term storage and maintenance of cigars.

[0004] In order to store cigars for a long time, cigar storage boxes that are specially used for maintenance and storage of cigars have appeared on the market, which generally include a refrigeration system, a humidification system and a dehumidification system. The dehumidification system in the existing cigar storage box generally adopts a physical dehumidification method, that is, a desiccant or other dehumidification material is used for dehumidification. The dehumidification effect of the desiccant or other dehumidification material will decrease with the increase of the use time, and the dehumidification effect is unstable. Therefore, in order to ensure the dehumidification effect of the maintenance and storage cabinet, the desiccant in the dehumidification assembly must be replaced frequently. In addition, the controllability of the dehumidification effect of the dehumidification assembly using the desiccant is poor, and it is difficult to adjust the dehumidification effect of the storage box according to the storage requirements and other factors, which is not conducive to meet the use requirements.

[0005] In addition, although the existing cigar storage box can also adjust the humidity inside the storage box, the humidity adjusting method of the existing cigar storage box often ignores the influence of the use environment of the storage box on the humidity inside the storage box. Especially when the use environment of the storage box appears low temperature, high temperature, low humidity and / or high humidity, the existing humidity adjusting method will cause a large error between the set humidity and the actual humidity inside the storage box, thus making the storage and maintenance effect of the existing cigar storage box on cigars poor. SUMMARY

[0006] The purpose of the present application is to provide a humidity rapid adjusting method, system and computer storage medium, which fully considers the influence of the external environment temperature and humidity of the maintenance and storage device on the humidity inside the storage cavity, is conducive to rapidly and accurately adjusting the humidity inside the storage cavity, and improves the storage and maintenance effect of the maintenance and storage device, so as to overcome the shortcomings in the prior art.

[0007] In order to achieve this purpose, the following technical solutions are adopted in the present application:

[0008] A humidity rapid adjusting method, applied to a curing storage device, and the curing storage device comprises a storage box body, a humidifying system and a dehumidifying system, and an internal storage cavity is formed in the storage box body;

[0009] The dehumidifying system is installed on the storage box body, and the dehumidifying system comprises a semiconductor refrigerating sheet, a condensing assembly and a heat dissipation assembly which are sequentially connected from inside to outside, the semiconductor refrigerating sheet comprises a cold end face and a hot end face, the cold end face is in close contact with the condensing assembly, and the hot end face is in close contact with the heat dissipation assembly; the condensing assembly faces the storage cavity, and the heat dissipation assembly faces the outside of the storage box body;

[0010] The method comprises the following steps:

[0011] S1, obtaining the external environment temperature and the external environment humidity of the curing storage device, and obtaining the humidity setting range of the storage cavity;

[0012] S2, obtaining the initial cavity humidity of the storage cavity, and judging whether the initial cavity humidity of the storage cavity meets the humidity setting range;

[0013] If the initial cavity humidity of the storage cavity does not meet the humidity setting range, step S3 is performed;

[0014] If the initial cavity humidity of the storage cavity meets the humidity setting range, step S4 is performed;

[0015] S3, according to the initial cavity humidity of the storage cavity and the humidity setting range, performing a humidifying action or a dehumidifying action until the current cavity humidity of the storage cavity meets the humidity setting range, and then performing step S4;

[0016] S4, according to the volume of the storage cavity, the external environment temperature, the external environment humidity and the humidity setting range, performing a humidity maintaining action, so that the real-time cavity humidity of the storage cavity meets the humidity setting range.

[0017] Preferably, step S4 comprises:

[0018] S41, obtaining the volume of the storage cavity;

[0019] S42, according to the volume of the storage cavity, the external environment temperature, the external environment humidity and the humidity setting range, obtaining a humidity maintaining power;

[0020] S43, adjusting the operating power of the semiconductor refrigerating sheet to the humidity maintaining power, dynamically starting the humidifying system and stopping the dehumidifying system, or starting the dehumidifying system and stopping the humidifying system, so that the real-time cavity humidity of the storage cavity meets the humidity setting range.

[0021] Preferably, in step S43, the humidification system is started and the dehumidification system is stopped, or the dehumidification system is started and the humidification system is stopped, including:

[0022] Continuously obtaining the real-time humidity in the storage cavity;

[0023] If the real-time humidity in the storage cavity is less than or equal to the upper limit of the humidity setting range, the humidification system is started and the dehumidification system is stopped.

[0024] If the real-time humidity in the storage cavity is greater than the upper limit of the humidity setting range, the dehumidification system is started and the humidification system is stopped.

[0025] Preferably, in step S3, including:

[0026] S31, determining to execute a humidification action or a dehumidification action according to the initial humidity in the storage cavity and the humidity setting range;

[0027] S32, if the initial humidity in the storage cavity is greater than the upper limit of the humidity setting range, executing the dehumidification action until the current humidity in the storage cavity meets the humidity setting range, and executing step S4.

[0028] If the initial humidity in the storage cavity is less than the lower limit of the humidity setting range, executing the humidification action until the current humidity in the storage cavity meets the humidity setting range, and executing step S4.

[0029] Preferably, executing the dehumidification action includes:

[0030] Obtaining the temperature in the storage cavity;

[0031] Obtaining a temperature compensation value according to the external environment temperature, the external environment humidity and the temperature in the storage cavity;

[0032] Calculating a target dehumidification temperature according to the temperature in the storage cavity and the temperature compensation value,

[0033] The target dehumidification temperature = the temperature in the storage cavity - the temperature compensation value.

[0034] Obtaining a target dehumidification power of the semiconductor refrigeration sheet according to the target dehumidification temperature.

[0035] The dehumidification system is started, and the operating power of the semiconductor refrigeration sheet is adjusted to the target dehumidification power to execute the dehumidification action.

[0036] Preferably, executing the humidification action includes:

[0037] The humidification system is started, and the humidification action is executed according to the preset humidification parameters.

[0038] A humidity rapid adjusting system is applied to a curing storage device, and the curing storage device comprises a storage box body, a humidifying system and a dehumidifying system, and an internal storage cavity is arranged in the storage box body;

[0039] The dehumidifying system is installed on the storage box body, and the dehumidifying system comprises a semiconductor refrigerating sheet, a condensing assembly and a heat dissipation assembly which are sequentially connected from inside to outside, the semiconductor refrigerating sheet comprises a cold end face and a hot end face, the cold end face is in close contact with the condensing assembly, and the hot end face is in close contact with the heat dissipation assembly; the condensing assembly faces the storage cavity, and the heat dissipation assembly faces the outside of the storage box body;

[0040] The method comprises an acquisition module, a comparison module, a humidity adjusting module and a humidity maintaining module;

[0041] The acquisition module is used for acquiring an external environment temperature and an external environment humidity of the curing storage device and acquiring a humidity setting range of the storage cavity;

[0042] The comparison module is used for acquiring an initial cavity humidity of the storage cavity and judging whether the initial cavity humidity of the storage cavity meets the humidity setting range;

[0043] The humidity adjusting module is used for performing a humidifying action or a dehumidifying action according to the initial cavity humidity of the storage cavity and the humidity setting range, until a current cavity humidity of the storage cavity meets the humidity setting range;

[0044] The humidity maintaining module is used for performing a humidity maintaining action according to a volume of the storage cavity, the external environment temperature, the external environment humidity and the humidity setting range, so that a real-time cavity humidity of the storage cavity meets the humidity setting range.

[0045] Preferably, the humidity maintaining module comprises a volume acquisition unit, a humidity maintaining power acquisition unit and a humidity maintaining execution unit;

[0046] The volume acquisition unit is used for acquiring the volume of the storage cavity;

[0047] The humidity maintaining power acquisition unit is used for obtaining a humidity maintaining power according to the volume of the storage cavity, the external environment temperature, the external environment humidity and the humidity setting range;

[0048] The humidity maintaining execution unit is used for adjusting an operating power of the semiconductor refrigerating sheet to the humidity maintaining power, dynamically starting the humidifying system and stopping the dehumidifying system, or starting the dehumidifying system and stopping the humidifying system, so that the real-time cavity humidity of the storage cavity meets the humidity setting range.

[0049] Preferably, the humidity adjusting module comprises an action judging unit, a dehumidifying execution unit and a humidifying execution unit;

[0050] An action judging unit is configured to judge whether to perform a humidifying action or a dehumidifying action according to the initial humidity in the storage cavity and the humidity setting range;

[0051] A dehumidifying execution unit is configured to perform a dehumidifying action if the initial humidity in the storage cavity is greater than the upper limit value of the humidity setting range, until the current humidity in the storage cavity meets the humidity setting range.

[0052] A humidifying execution unit is configured to perform a humidifying action if the initial humidity in the storage cavity is less than the lower limit value of the humidity setting range, until the current humidity in the storage cavity meets the humidity setting range.

[0053] A computer readable storage medium, which stores a computer program, the computer program is executed by a processor to implement the steps of the above humidity rapid adjusting method.

[0054] The technical scheme provided by the embodiments of the present application can have the following beneficial effects:

[0055] The adjusting method takes the external environment temperature and the external environment humidity of the curing storage device into the adjusting basis of the humidifying system and the dehumidifying system, so as to improve the rapid and accurate regulation of the humidity in the storage cavity, and improve the storage curing effect of the curing storage device. BRIEF DESCRIPTION OF DRAWINGS

[0056] Figure 1 is a structure diagram of a curing storage device applied in the humidity rapid adjusting method of the present application.

[0057] Figure 2 is a local structure diagram of a curing storage device applied in the humidity rapid adjusting method of the present application.

[0058] Figure 3 is a structure diagram of a dehumidifying system in a curing storage device applied in the humidity rapid adjusting method of the present application.

[0059] Figure 4 is a flow diagram of the humidity rapid adjusting method of the present application.

[0060] Figure 5 is a structure block diagram of the humidity rapid adjusting method of the present application.

[0061] Among them: the storage box body 1, the storage cavity 101, the humidifying system 3, the dehumidifying system 4, the semiconductor refrigeration sheet 41, the condensing assembly 42, the heat dissipation assembly 43. DETAILED DESCRIPTION

[0062] Embodiments of the present application are described below in detail with reference to the accompanying drawings, wherein the same or similar components are denoted by the same or similar reference numerals throughout the drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only for explanation of the present application, and should not be construed as limiting the present application.

[0063] The technical solution provides a humidity rapid adjusting method, which is applied to a curing storage device, and the curing storage device comprises a storage box body 1, a humidifying system 3 and a dehumidifying system 4, an inside of the storage box body 1 is provided with a storage cavity 101;

[0064] The dehumidifying system 4 is installed on the storage box body 1, and the dehumidifying system 4 comprises a semiconductor refrigerating sheet 41, a condensing assembly 42 and a heat dissipation assembly 43 which are sequentially connected from inside to outside, the semiconductor refrigerating sheet 41 comprises a cold end face and a hot end face, the cold end face is in mutual adhesion with the condensing assembly 42, and the hot end face is in mutual adhesion with the heat dissipation assembly 43; the condensing assembly 42 is towards the storage cavity 101, and the heat dissipation assembly 43 is towards an outside of the storage box body 1;

[0065] The method comprises the following steps:

[0066] S1, obtaining an external environment temperature and an external environment humidity of the curing storage device, and obtaining a humidity setting range of the storage cavity 101;

[0067] S2, obtaining an initial cavity humidity of the storage cavity 101, and judging whether the initial cavity humidity of the storage cavity 101 meets the humidity setting range;

[0068] If the initial cavity humidity of the storage cavity 101 does not meet the humidity setting range, step S3 is performed;

[0069] If the initial cavity humidity of the storage cavity 101 meets the humidity setting range, step S4 is performed;

[0070] S3, according to the initial cavity humidity of the storage cavity 101 and the humidity setting range, a humidifying action or a dehumidifying action is performed until a current cavity humidity of the storage cavity 101 meets the humidity setting range, and then step S4 is performed;

[0071] S4, according to a volume of the storage cavity 101, the external environment temperature, the external environment humidity and the humidity setting range, a humidity maintaining action is performed, so that a real-time cavity humidity of the storage cavity 101 meets the humidity setting range.

[0072] In order to fully consider the influence of the external environment temperature and humidity of the maintenance storage device on the humidity in the storage cavity, so as to improve the storage maintenance effect of the maintenance storage device, the present scheme proposes a humidity rapid adjusting method applied to a maintenance storage device, which comprises a storage box body 1, a humidifying system 3 and a dehumidifying system 4, as shown in Figures 1-4 The humidifying system 3 is used to increase the humidity in the storage cavity 101, and the dehumidifying system 4 is used to reduce the humidity in the storage cavity 101, so as to adjust the humidity (i.e. the relative humidity inside the storage cavity 101) of the maintenance storage device as needed.

[0073] Since the existing cigar storage box humidity control method often ignores the influence of the use environment of the storage box on the humidity inside the storage box, especially when the use environment of the storage box appears low temperature, high temperature, low humidity and / or high humidity, the existing humidity control method will cause a large error between the set humidity and the actual humidity inside the storage box, thus making the existing cigar storage box have poor storage and maintenance effect on cigars. Therefore, in the humidity adjusting process of the control method, the external environment temperature and humidity of the maintenance storage device are both included in the adjusting basis of the humidifying system 3 and the dehumidifying system 4, so as to improve the rapid and accurate regulation of the humidity in the storage cavity 101 and improve the storage and maintenance effect of the maintenance storage device.

[0074] Specifically, the dehumidifying system 4 in the maintenance storage device to which the present scheme is applied comprises a semiconductor refrigeration sheet 41, a condensing assembly 42 and a heat dissipation assembly 43, and the cold end face of the semiconductor refrigeration sheet 41 is in mutual adhesion with the condensing assembly 42, and the hot end face of the semiconductor refrigeration sheet 41 is in mutual adhesion with the heat dissipation assembly 43, as shown in Figure 4 When the dehumidifying system 4 is started, the dehumidified gas in the storage cavity 101 enters the condensing assembly 42 through the dehumidifying inlet, so that the water vapor in the dehumidified gas is condensed into liquid beads and separated from the air due to low-temperature cooling, achieving the purpose of condensation and dehumidification, and then the dry air after dehumidification is discharged from the condensing assembly 42 through the dehumidifying outlet and flows back to the storage cavity 101.

[0075] It should be noted that the semiconductor refrigeration sheet 41 of the present scheme is made by using Peltier effect, which is a phenomenon that one end of an electric couple absorbs heat and the other end releases heat when a direct current passes through the electric couple composed of two kinds of semiconductor materials; in other words, the semiconductor refrigeration sheet 41 is made of two kinds of semiconductor materials, forming a hot end and a cold end, the cold end continuously absorbs heat to achieve refrigeration, and the hot end continuously releases heat. The present technical scheme uses the condensation method of semiconductor refrigeration to dehumidify the gas, which saves complex mechanical structure, effectively simplifies the structure and compresses the volume, facilitates silent dehumidification, is safe and reliable, convenient and practical, has low manufacturing cost and wide application range.

[0076] It needs to be further explained that the acquisition of the humidity setting range including the storage cavity 101 in step S1 can be the default range of the humidity control system of the curing storage device, which is usually the factory setting of the curing storage device product, or can be input and set by the user through the control panel, smart phone or other smart terminal. The control method is not limited here.

[0077] More specifically, in step S2 of the present adjustment method, it is first determined whether the initial cavity humidity of the storage cavity 101 meets the humidity setting range; if it does not meet the humidity setting range, then according to the needs, it enters the humidity adjusting stage of step S3 in the humidity adjustment process, performs humidifying action or performs dehumidifying action, so that the cavity humidity in the storage cavity 101 can quickly and accurately reach the humidity setting range, and then enters the humidity maintaining stage of step S4 in the humidity adjustment process; if the initial cavity humidity of the storage cavity 101 meets the humidity setting range, it directly enters the humidity maintaining stage of step S4 in the humidity adjustment process, and performs the humidity maintaining action, so that the real-time cavity humidity of the storage cavity 101 meets the humidity setting range, and ensures the storage and curing effect of the cigar.

[0078] Further, step S4 includes:

[0079] S41, acquiring the volume of the storage cavity 101;

[0080] S42, obtaining the humidity maintaining power according to the volume of the storage cavity 101, the external environment temperature, the external environment humidity and the humidity setting range;

[0081] S43, adjusting the operating power of the semiconductor refrigerating sheet 41 to the humidity maintaining power, dynamically starting the humidifying system 3 and stopping the dehumidifying system 4, or starting the dehumidifying system 4 and stopping the humidifying system 3, so that the real-time cavity humidity of the storage cavity 101 meets the humidity setting range.

[0082] When the cavity humidity of the storage cavity 101 reaches the humidity setting range, if the operation of the humidifying system 3 and the dehumidifying system 4 is stopped at this time, the cavity humidity of the storage cavity 101 will change at a certain humidity rising rate (or humidity falling rate), and finally reach a humidity range similar to the external environment humidity of the curing storage device. Therefore, the humidity maintaining stage in the present control method needs the alternating operation of the humidifying system 3 and the dehumidifying system 4 to ensure that the cavity humidity is maintained.

[0083] Further, since the humidity in the storage cavity 101 has reached the required storage humidity range of the curing storage device after step S3, and the external environment humidity of the curing storage device will not change greatly in a short time, or the change is within the error allowable range, the control method allows the dehumidification system 4 to continue to run at a lower humidity maintenance power (relative to the dehumidification power when the dehumidification action is performed) in the humidity maintenance stage of step S4, while the operating parameters of the humidification system 2 remain unchanged, and only by dynamically adjusting the alternating operation of the humidification system 3 and the dehumidification system 4, the real-time humidity in the storage cavity 101 is maintained in the humidity setting range, which can not only meet the storage humidity conditions of the cigar, but also achieve the purpose of energy saving.

[0084] In addition, since when the humidification system 3 and the dehumidification system 4 stop running, the humidity in the storage cavity 101 will have a tendency to change with the external environment humidity of the curing storage device, and the speed of the change is related to the volume of the storage cavity 101 and the external environment temperature. Therefore, in a preferred embodiment of the present technical solution, the adjustment method obtains the humidity maintenance power of the dehumidification system 4 in the humidity maintenance stage according to the volume of the storage cavity 101, the external environment temperature, the external environment humidity and the humidity setting range, which is beneficial to guarantee the dehumidification effect under the premise of energy saving.

[0085] It should be noted that in some embodiments, the mapping relationship between the volume of the storage cavity 101, the external environment temperature, the external environment humidity, the humidity setting range and the humidity maintenance power in the present solution can be summarized by pre-experiment in a simulated environment to obtain a mapping table, and then in the humidity maintenance stage of the adjustment method, the humidity maintenance power is obtained by looking up the table according to the volume of the storage cavity 101, the external environment temperature, the external environment humidity and the humidity setting range. In other embodiments, the mapping relationship between the volume of the storage cavity 101, the external environment temperature, the external environment humidity, the humidity setting range and the humidity maintenance power in the present solution can be summarized by pre-experiment in a simulated environment to obtain a mapping formula, and then in the humidity maintenance stage of the adjustment method, the humidity maintenance power is calculated according to the volume of the storage cavity 101, the external environment temperature, the external environment humidity and the humidity setting range, which is not limited herein.

[0086] Further, in step S43, dynamically starting the humidification system 3 and stopping the dehumidification system 4, or starting the dehumidification system 4 and stopping the humidification system 3, comprises:

[0087] Continuously acquiring the real-time humidity in the storage cavity 101;

[0088] If the real-time humidity in the storage cavity 101 is less than or equal to the upper limit value of the humidity setting range, the humidification system 3 is started and the dehumidification system 4 is stopped;

[0089] If the real-time humidity in the storage cavity 101 is greater than the upper limit of the humidity setting range, the dehumidification system 4 is turned on and the humidification system 3 is turned off.

[0090] Since the humidity requirement of cigars is generally higher than the humidity of the external environment, when the real-time humidity in the storage cavity 101 is less than or equal to the upper limit of the humidity setting range, the humidification system 3 can be kept on until the real-time humidity is too high, and then the dehumidification system 4 is turned on to dehumidify. In the humidification stage of the present adjustment method, the maintenance of the humidity in the storage cavity 101 can be realized through simple logical comparison, and the performance is very reliable.

[0091] Further, step S3 comprises:

[0092] S31, determining whether to perform humidification or dehumidification according to the initial humidity in the storage cavity 101 and the humidity setting range;

[0093] S32, if the initial humidity in the storage cavity 101 is greater than the upper limit of the humidity setting range, performing dehumidification until the current humidity in the storage cavity 101 meets the humidity setting range, and then performing step S4;

[0094] If the initial humidity in the storage cavity 101 is less than the lower limit of the humidity setting range, performing humidification until the current humidity in the storage cavity 101 meets the humidity setting range, and then performing step S4.

[0095] Further, performing dehumidification comprises:

[0096] Obtaining the temperature in the storage cavity 101;

[0097] Obtaining a temperature compensation value according to the external environment temperature, the external environment humidity and the temperature in the storage cavity;

[0098] Calculating a target dehumidification temperature according to the temperature in the storage cavity and the temperature compensation value,

[0099] Target dehumidification temperature = temperature in the storage cavity - temperature compensation value;

[0100] Obtaining a target dehumidification power of the semiconductor refrigeration sheet 41 according to the target dehumidification temperature;

[0101] Turning on the dehumidification system 4 and adjusting the operating power of the semiconductor refrigeration sheet 41 to the target dehumidification power to perform dehumidification.

[0102] Since the use environment of the maintenance storage device often has an impact on the relative humidity of the storage cavity 101, especially when the use environment of the maintenance storage device appears low temperature, high temperature, low humidity and / or high humidity, it has a greater impact on the relative humidity of the storage cavity 101.

[0103] Since the dehumidification system 4 of the maintenance storage device to which the present adjustment method is applied adopts a semiconductor refrigeration mode for dehumidification, and based on the use characteristics of the semiconductor refrigeration mode, when the dehumidification temperature of the dehumidification system 4 (i.e. the refrigeration temperature of the semiconductor refrigeration sheet 41) and the cavity temperature of the storage cavity 101 reach a certain temperature difference, condensation dehumidification can be realized. At the same time, since the dehumidification system 4 also has a certain impact on the cavity temperature of the storage cavity 101 during the dehumidification process, in order to further accurately control the temperature, the temperature drop caused by dehumidification during the dehumidification process also needs to be considered. Therefore, in order to fully consider the above two cases, the present scheme introduces a temperature compensation value during the dehumidification process. Then, the target dehumidification temperature = cavity temperature-temperature compensation value is used to calculate the refrigeration temperature of the semiconductor refrigeration sheet 41 in the dehumidification system 4, and then the dehumidification power of the semiconductor refrigeration sheet 41 in the dehumidification system 4 is obtained, so that the dehumidification system 4 performs dehumidification action according to the dehumidification power, realizes rapid and accurate dehumidification. In the present adjustment method, according to different external environment temperature, external environment humidity and cavity temperature, the corresponding temperature compensation value is selected, and then the dehumidification power of the dehumidification system 4 is accurately determined, and accurate dehumidification control is realized.

[0104] It should be noted that in some embodiments, the mapping relationship between the external environment temperature, the external environment humidity and the cavity temperature and the temperature compensation value in the present scheme can be summarized by pre-experiment in a simulated environment to obtain a mapping relationship table, and then in the dehumidification stage of the adjustment method, the temperature compensation value is obtained by looking up the table according to the external environment temperature, the external environment humidity and the cavity temperature.

[0105] Further, the humidification action is performed, specifically:

[0106] The humidification system 3 is started and performs humidification action according to the preset humidification parameters.

[0107] Further, in the curing storage device to which the present adjustment method is applied, the humidifying system 3 can be an ultrasonic atomizer, and the operating parameters of the ultrasonic atomizer can be set according to the default parameters in the humidity control system, and the execution and stop of the humidifying action can be realized only by turning on and off the humidifying system 3, so that the logic is simple and the performance is reliable. Further, in the curing storage device to which the present adjustment method is applied, the humidifying system 3 comprises a wet sponge and a humidifying fan, and the air in the storage cavity 101 is humidified by the wet sponge under the driving of the humidifying fan and then flows back to the storage cavity 101, so that the air is humidified, and the execution and stop of the humidifying action can be realized only by turning on and off the humidifying fan, so that the structure is simple and the cost is low.

[0108] The present application also provides a humidity rapid adjustment system applied to a curing storage device, wherein the curing storage device comprises a storage box body 1, a humidifying system 3 and a dehumidifying system 4, and the inside of the storage box body 1 is provided with a storage cavity 101;

[0109] The dehumidifying system 4 is installed on the storage box body 1, and the dehumidifying system 4 comprises a semiconductor refrigerating sheet 41, a condensing assembly 42 and a heat dissipation assembly 43 connected in sequence from inside to outside, the semiconductor refrigerating sheet 41 comprises a cold end face and a hot end face, the cold end face is in close contact with the condensing assembly 42, and the hot end face is in close contact with the heat dissipation assembly 43; the condensing assembly 42 faces the storage cavity 101, and the heat dissipation assembly 43 faces the outside of the storage box body 1;

[0110] The present application also provides a humidity rapid adjustment system applied to a curing storage device, wherein the curing storage device comprises a storage box body 1, a humidifying system 3 and a dehumidifying system 4, and the inside of the storage box body 1 is provided with a storage cavity 101;

[0111] The present application also provides a humidity rapid adjustment system applied to a curing storage device, wherein the curing storage device comprises a storage box body 1, a humidifying system 3 and a dehumidifying system 4, and the inside of the storage box body 1 is provided with a storage cavity 101;

[0112] The present application also provides a humidity rapid adjustment system applied to a curing storage device, wherein the curing storage device comprises a storage box body 1, a humidifying system 3 and a dehumidifying system 4, and the inside of the storage box body 1 is provided with a storage cavity 101;

[0113] If the initial cavity humidity of the storage cavity 101 does not conform to the humidity setting range, step S3 is performed;

[0114] If the initial cavity humidity of the storage cavity 101 conforms to the humidity setting range, step S4 is performed;

[0115] The present application also provides a humidity rapid adjustment system applied to a curing storage device, wherein the curing storage device comprises a storage box body 1, a humidifying system 3 and a dehumidifying system 4, and the inside of the storage box body 1 is provided with a storage cavity 101;

[0116] The moisturizing module is configured to perform a moisturizing operation according to the volume of the storage cavity 101, the external environment temperature, the external environment humidity, and the humidity setting range, so that the real-time cavity humidity of the storage cavity 101 meets the humidity setting range.

[0117] As shown in Figure 5 The present application further provides a humidity rapid adjustment system configured to perform the humidity rapid adjustment method, and the system comprises an acquisition module, a comparison module, a dehumidifying module, and a moisturizing module.

[0118] Further, the moisturizing module comprises a volume acquisition unit, a moisturizing power acquisition unit, and a moisturizing execution unit.

[0119] The volume acquisition unit is configured to acquire the volume of the storage cavity 101.

[0120] The moisturizing power acquisition unit is configured to acquire the moisturizing power according to the volume of the storage cavity 101, the external environment temperature, the external environment humidity, and the humidity setting range.

[0121] The moisturizing execution unit is configured to adjust the operation power of the semiconductor refrigeration sheet 41 to the moisturizing power, dynamically turn on the humidifying system 3 and turn off the dehumidifying system 4, or turn on the dehumidifying system 4 and turn off the humidifying system 3, so that the real-time cavity humidity of the storage cavity 101 meets the humidity setting range.

[0122] Further, the dehumidifying module comprises an action judgment unit, a dehumidifying execution unit, and a humidifying execution unit.

[0123] The action judgment unit is configured to judge whether to perform a humidifying operation or a dehumidifying operation according to the initial cavity humidity of the storage cavity 101 and the humidity setting range.

[0124] The dehumidifying execution unit is configured to perform a dehumidifying operation if the initial cavity humidity of the storage cavity 101 is greater than the upper limit value of the humidity setting range, until the current cavity humidity of the storage cavity 101 meets the humidity setting range, and then perform step S4.

[0125] The humidifying execution unit is configured to perform a humidifying operation if the initial cavity humidity of the storage cavity 101 is less than the lower limit value of the humidity setting range, until the current cavity humidity of the storage cavity 101 meets the humidity setting range, and then perform step S4.

[0126] The present application further provides a computer readable storage medium, which stores a computer program, and the computer program is configured to implement the steps of the humidity rapid adjustment method when executed by a processor.

[0127] The technical principles of the present application are described above in combination with specific embodiments. These descriptions are only for explaining the principles of the present application, and cannot be interpreted as limiting the protection scope of the present application in any way. Based on the explanations herein, other specific embodiments of the present application can be conceived by those skilled in the art without any creative effort, and these embodiments will all fall within the protection scope of the present application.

Claims

1. A method for rapid humidity adjustment, characterized in that, It is applied to a maintenance and storage device, and the maintenance and storage device includes a storage box body, a humidification system and a dehumidification system, wherein a storage cavity is opened inside the storage box body; The dehumidification system is installed on the storage box body. The dehumidification system includes a semiconductor cooling chip, a condensation component, and a heat dissipation component connected sequentially from the inside to the outside. The semiconductor cooling chip includes a cold end face and a hot end face. The cold end face is in contact with the condensation component, and the hot end face is in contact with the heat dissipation component. The condensation component faces the storage cavity, and the heat dissipation component faces the outside of the storage box body. Includes the following steps: S1. Obtain the external ambient temperature and humidity of the maintenance storage device, and obtain the humidity setting range of the storage chamber; S2. Obtain the initial humidity inside the storage cavity and determine whether the initial humidity inside the storage cavity meets the humidity setting range. If the initial humidity inside the storage cavity does not meet the humidity setting range, then step S3 is executed; If the initial humidity inside the storage cavity meets the set humidity range, then step S4 is executed; S3. Based on the initial humidity inside the storage cavity and the humidity setting range, perform a humidification action or a dehumidification action until the current humidity inside the storage cavity meets the humidity setting range, and then proceed to step S4. S4. Based on the volume of the storage cavity, the external ambient temperature, the external ambient humidity, and the humidity setting range, perform a humidification action to ensure that the real-time humidity inside the storage cavity meets the humidity setting range. In step S3, the dehumidification action is performed, including: Obtain the internal temperature of the storage cavity; The temperature compensation value is obtained based on the external ambient temperature, external ambient humidity, and internal cavity temperature; The target dehumidification temperature is calculated based on the internal temperature and temperature compensation value. Target dehumidification temperature = cavity temperature - temperature compensation value; The target dehumidification power of the semiconductor cooling chip is obtained based on the target dehumidification temperature. The dehumidification system is turned on, and the operating power of the semiconductor cooling chip is adjusted to the target dehumidification power to perform the dehumidification action; Step S4 includes: S41. Obtain the volume of the storage cavity; S42. Obtain the moisturizing power based on the volume of the storage cavity, the external ambient temperature, the external ambient humidity, and the humidity setting range; S43. Adjust the operating power of the semiconductor cooling chip to the humidification power, dynamically turn on the humidification system and turn off the dehumidification system, or turn on the dehumidification system and turn off the humidification system, so that the real-time humidity inside the storage cavity meets the humidity setting range.

2. The method for rapid humidity adjustment according to claim 1, characterized in that, In step S43, dynamically turning on the humidification system and turning off the dehumidification system, or turning on the dehumidification system and turning off the humidification system, includes: Continuously acquire the real-time humidity inside the storage cavity; If the real-time humidity inside the storage cavity is less than or equal to the upper limit of the humidity setting range, then the humidification system is turned on and the dehumidification system is turned off. If the real-time humidity inside the storage chamber is greater than the upper limit of the humidity setting range, then the dehumidification system is turned on and the humidification system is turned off.

3. The method for rapid humidity adjustment according to claim 1, characterized in that, Step S3 includes: S31. Based on the initial humidity inside the storage cavity and the humidity setting range, determine whether to perform a humidification action or a dehumidification action. S32. If the initial humidity inside the storage cavity is greater than the upper limit of the humidity setting range, then perform dehumidification until the current humidity inside the storage cavity meets the humidity setting range, and then proceed to step S4. If the initial humidity inside the storage chamber is less than the lower limit of the humidity setting range, a humidification action is performed until the current humidity inside the storage chamber meets the humidity setting range, and then step S4 is executed.

4. The method for rapid humidity adjustment according to claim 3, characterized in that, The humidification process is performed as follows: The humidification system is activated and performs humidification actions according to preset humidification parameters.

5. A rapid humidity control system, characterized in that, It is applied to a maintenance and storage device, and the maintenance and storage device includes a storage box body, a humidification system and a dehumidification system, wherein a storage cavity is opened inside the storage box body; The dehumidification system is installed on the storage box body. The dehumidification system includes a semiconductor cooling chip, a condensation component, and a heat dissipation component connected sequentially from the inside to the outside. The semiconductor cooling chip includes a cold end face and a hot end face. The cold end face is in contact with the condensation component, and the hot end face is in contact with the heat dissipation component. The condensation component faces the storage cavity, and the heat dissipation component faces the outside of the storage box body. The rapid humidity adjustment system is used to implement the rapid humidity adjustment method according to any one of claims 1 to 4, and includes an acquisition module, a comparison module, a humidity adjustment module, and a humidity humidification module. The acquisition module is used to acquire the external ambient temperature and humidity of the maintenance storage device, and to acquire the humidity setting range of the storage chamber; The comparison module is used to obtain the initial humidity inside the storage cavity and determine whether the initial humidity inside the storage cavity meets the humidity setting range. The humidity control module is used to perform humidification or dehumidification based on the initial humidity inside the storage cavity and the humidity setting range, until the current humidity inside the storage cavity meets the humidity setting range; The humidification module is used to perform humidification actions based on the volume of the storage cavity, the external ambient temperature, the external ambient humidity, and the humidity setting range, so that the real-time humidity inside the storage cavity meets the humidity setting range.

6. The humidity rapid adjustment system according to claim 5, characterized in that, The moisturizing module includes a volume acquisition unit, a moisturizing power acquisition unit, and a moisturizing execution unit; A volume acquisition unit is used to acquire the volume of the storage cavity; A moisturizing power acquisition unit is used to obtain the moisturizing power based on the volume of the storage cavity, the external ambient temperature, the external ambient humidity, and the humidity setting range; The humidification execution unit is used to adjust the operating power of the semiconductor cooling chip to the humidification power, dynamically turn on the humidification system and turn off the dehumidification system, or turn on the dehumidification system and turn off the humidification system, so that the real-time humidity inside the storage cavity meets the humidity setting range.

7. The humidity rapid adjustment system according to claim 5, characterized in that, The humidity control module includes an action judgment unit, a dehumidification execution unit, and a humidification execution unit; An action determination unit is used to determine whether to perform a humidification action or a dehumidification action based on the initial humidity inside the storage cavity and the humidity setting range. The dehumidification execution unit is used to perform dehumidification if the initial humidity inside the storage cavity is greater than the upper limit of the humidity setting range, until the current humidity inside the storage cavity meets the humidity setting range. The humidification execution unit is used to perform a humidification action if the initial humidity inside the storage cavity is less than the lower limit of the humidity setting range, until the current humidity inside the storage cavity meets the humidity setting range.

8. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the processor, it implements the steps of the rapid humidity adjustment method according to any one of claims 1 to 4.

Citation Information

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