Energy storage device and control method applied to shopping mall
By integrating a fish tank and air duct into the energy storage device, and installing negative oxygen ion and sterilization atomizing devices, the problems of lack of aesthetics and air purification in energy storage devices are solved, achieving air purification, sterilization, and humidity improvement, and providing a comfortable shopping mall environment.
Patent Information
- Application Number
- CN202411305063.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-19
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2044-09-19
AI Technical Summary
Existing shopping mall energy storage devices lack aesthetic appeal and cannot purify the air or improve environmental humidity.
The energy storage device integrates a fish tank and an air duct, and is equipped with a negative ion generator and a sterilization atomizing device. The sterilization airflow is delivered to the shopping mall, the fish tank and the energy storage device through multiple air outlet channels. The airflow direction is precisely controlled by the air guide valve assembly. Combined with a water recycling system and a heat dissipation structure, it achieves air purification and decorative effects.
It improves the aesthetics of the energy storage device, enhances air purification, sterilization, and humidity, providing a more comfortable and clean air environment, while also improving resource utilization efficiency and the heat dissipation effect of the battery compartment.
Smart Images

Figure CN118960144B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of energy storage systems, in particular to an energy storage device applied to a shopping mall and a control method. BACKGROUND
[0002] With the development and progress of society, energy storage gradually occupies an important position in social life. Energy storage cabinets have better volume utilization and are more widely used.
[0003] The prior art patent No. CN202320080253.9 discloses an energy storage device applied to a shopping mall storage cabinet, which comprises a box body, a plurality of storage batteries are arranged in the box body, a cooling box is arranged above the storage batteries in the box body, the cooling box is filled with cooling liquid, a drain port is arranged at the bottom of the cooling box, and a blocking piece is arranged in the drain port to block the drain port. A bellows and a pump body are also arranged in the box body. The movable end of the bellows is provided with a push rod, and the pump body is used to deliver fluid to the bellows, so that the bellows can push the push rod to move the blocking piece out of the drain port. Although the bellows can quickly open the blocked drain port, the cooling liquid stored in the cooling box can be poured into the box body, and the purpose of extinguishing the fire of the storage battery is achieved, and the occurrence of fire in the shopping mall is avoided. However, the energy storage device lacks ornamental value when placed in the shopping mall, and cannot purify the air.
[0004] Therefore, the present application is proposed. SUMMARY
[0005] The present application aims to provide an energy storage device applied to a shopping mall and a control method to solve the problem that the energy storage device lacks ornamental value when placed in the shopping mall and cannot purify the air.
[0006] To achieve the above-mentioned purpose, the technical solution of the present application is as follows:
[0007] An energy storage device applied to a shopping mall, which comprises a cabinet body, a fish tank and an air outlet duct. The fish tank is installed on the cabinet body, and the air outlet duct is arranged on the cabinet body. A negative oxygen ion generating device and a bacteria-removing atomizing device are installed in the air outlet duct. The negative oxygen ion generating device can generate negative oxygen ions for sterilization. The bacteria-removing atomizing device can generate nanometer water ions for sterilization and atomization. The air outlet duct can at least deliver sterilization airflow to the outside through an air outlet. The air outlet duct comprises a first air outlet channel, a second air outlet channel and a third air outlet channel. The sterilization airflow can be delivered to the shopping mall through the first air outlet channel, to the fish tank through the second air outlet channel, and to the cabinet body of the energy storage device through the third air outlet channel.
[0008] The energy storage device applied to the shopping mall has the fish tank arranged on the energy storage device, so that the cabinet and the fish tank are combined in structure, space is saved, the energy storage device is decorated, and the energy storage device has ornamental value; the negative oxygen ion generating device and the bacteria removing atomizing device are arranged in the air outlet air duct, the air outlet air duct comprises the first air outlet channel, the second air outlet channel and the third air outlet channel, and multiple functions are achieved: the air in the shopping mall can be sterilized and purified, the fish tank can be sterilized and purified, the inside of the energy storage device can be sterilized and purified, and the humidity of the shopping mall environment can be improved, so that more comfortable and cleaner air is provided for users.
[0009] Further, the third air outlet channel is arranged between the fish tank and the cabinet, the heat dissipation hole is arranged on the side wall of the cabinet, and the third air outlet channel is communicated with the inside of the energy storage device through the heat dissipation hole.
[0010] The arrangement facilitates the sterilization airflow to pass through the third air outlet channel and the heat dissipation hole to sterilize and purify the inside of the energy storage device, increases air flow, and is beneficial to heat dissipation of the inside of the energy storage device.
[0011] Further, the air guide door assembly is arranged at the air outlet, the air guide door assembly is rotatably connected with the cabinet, and the air guide door assembly is telescopically arranged, so that the first air outlet channel and / or the second air outlet channel and / or the third air outlet channel can be opened or closed through the air guide door assembly.
[0012] The arrangement facilitates the air guide door assembly to open or close the first air outlet channel and / or the second air outlet channel and / or the third air outlet channel, realizes accurate sterilization in the cabinet, the fish tank and the energy storage device of the shopping mall, and avoids resource waste.
[0013] Further, the air guide door assembly comprises a first air guide door and a second air guide door, the first air guide door is arranged at the upper end of the air outlet, the second air guide door is arranged at the lower end of the air outlet, one end of the first air guide door is rotatably connected with the cabinet, and the other end of the first air guide door is freely arranged; one end of the second air guide door is rotatably connected with the cabinet, and the other end of the second air guide door is freely arranged.
[0014] The arrangement facilitates the air guide door assembly to open or close the first air outlet channel and / or the second air outlet channel and / or the third air outlet channel.
[0015] Further, the energy storage device further comprises a water tank, a water inlet pipe of the water tank being communicated with the fish tank, the water tank being used at least for storing the water to be replaced in the fish tank, a water outlet pipe of the water tank being communicated with the negative oxygen ion generating device and the sterilization atomization device, the water outlet pipe being provided with a water supply pump, the water supply pump being used for conveying the water to be replaced in the fish tank to the negative oxygen ion generating device and the sterilization atomization device, the negative oxygen ion generating device being capable of generating negative oxygen ions by using the water to be replaced in the fish tank, and the sterilization atomization device being capable of generating nano water ions by using the water to be replaced in the fish tank.
[0016] The arrangement can realize the recycling of water, reduce the waste of water resources, ensure that the negative oxygen ion generating device and the sterilization atomization device can obtain sufficient water source, and purify and sterilize the air in the fish tank and / or the energy storage device cabinet.
[0017] Further, a battery compartment is arranged in the cabinet, the battery compartment being used for storing a battery.
[0018] On the one hand, the side wall of the battery compartment can support the installation of the water outlet pipe, so that the water outlet pipe has high installation stability, and on the other hand, the water in the water outlet pipe can take away the heat of the battery compartment, so that the battery compartment is cooled.
[0019] Further, an installation space is arranged on the cabinet, the installation space being arranged below the air outlet, and the fish tank can be detachably installed in the installation space.
[0020] The installation space is arranged below the air outlet, and the fish tank can be detachably installed in the installation space, so that the negative oxygen ion airflow discharged from the air outlet can be conveyed into the fish tank.
[0021] Further, an air exchange pipe is arranged in the fish tank, and an air pump is arranged in the air outlet duct, an air outlet of the air pump being communicated with the air exchange pipe, and the air pump being used for conveying the negative oxygen ion airflow directly into the water body of the fish tank.
[0022] The arrangement can convey the negative oxygen ion airflow directly into the water body of the fish tank, so that the negative oxygen ion airflow directly contacts the water body to purify and sterilize the water body, and the sterilization and purification effect of the water body in the fish tank is further improved.
[0023] Further, an end of the air exchange pipe away from the air pump extends to the bottom of the fish tank, and a distribution pipe is arranged at the end of the air exchange pipe away from the air pump, the distribution pipe having a plurality of air exchange openings.
[0024] The setting can uniformly supply air and negative oxygen ion airflow at the bottom of the fish tank, effectively increase the flow of the water body, increase the uniformity of the negative oxygen ion airflow contacting the water body, avoid the problem of too concentrated water body sterilization and purification area, and be beneficial to improving the sterilization and purification efficiency of the water body in the fish tank.
[0025] In a second aspect, the application provides a control method of the energy storage device applied to the shopping mall,
[0026] The control method comprises the following steps:
[0027] S1, obtaining the environmental humidity value H in the shopping mall, the water flow turbidity D of the fish tank, and the temperature T2 of the battery compartment;
[0028] S2, judging whether at least two of the following conditions are met: the environmental humidity value H in the shopping mall is greater than or equal to a first humidity threshold H1, the water flow turbidity D of the fish tank is greater than or equal to a water flow turbidity threshold D0, and the temperature T2 of the battery compartment is greater than or equal to a temperature threshold T20, if yes, entering step S3, if no, entering step S4;
[0029] S3, controlling to enter the fish tank cabinet sterilization mode in the shopping mall;
[0030] S4, judging whether the environmental humidity value H in the shopping mall is greater than or equal to the first humidity threshold H1, the water flow turbidity D of the fish tank is less than the water flow turbidity threshold D0, and the temperature T2 of the battery compartment is less than the temperature threshold T20, if yes, entering step S5, if no, entering step S6;
[0031] S5, controlling to enter the single sterilization mode in the shopping mall;
[0032] S6, judging whether the water flow turbidity D of the fish tank is greater than or equal to the water flow turbidity threshold D0, the environmental humidity value H in the shopping mall is less than the first humidity threshold H1, and the temperature T2 of the battery compartment is less than the temperature threshold T20, if yes, entering step S7, if no, entering step S8;
[0033] S7, controlling to enter the single sterilization mode of the fish tank;
[0034] S8, judging whether the temperature T2 of the battery compartment is greater than or equal to the temperature threshold T20, the environmental humidity value H in the shopping mall is less than the first humidity threshold H1, and the water flow turbidity D of the fish tank is less than the water flow turbidity threshold D0, if yes, entering step S9, if no, keeping the original state;
[0035] S9, controlling to enter the single sterilization mode of the cabinet.
[0036] The control method can enter different sterilization modes according to the environmental humidity value H in the shopping mall, the fish tank water flow turbidity D and the temperature T2 of the battery compartment, so that the sterilization control is more accurate in different scenes, resource waste is avoided, and the best effect can be achieved in different scenes.
[0037] The application provides a storage device applied to a shopping mall and a control method.
[0038] 1) The storage device applied to the shopping mall has the advantages that the fish tank is arranged on the storage device, the cabinet and the fish tank are combined in structure, space is saved, the storage device has a decorative effect and has ornamental properties.
[0039] 2) The storage device applied to the shopping mall has the advantages that the air outlet duct comprises a first air outlet channel, a second air outlet channel and a third air outlet channel, the sterilization airflow can be transported into the shopping mall through the first air outlet channel, the sterilization airflow can be transported into the fish tank through the second air outlet channel, the sterilization airflow can be transported into the cabinet of the storage device through the third air outlet channel, the air in the shopping mall can be sterilized and purified, the fish tank can be sterilized and purified, the inside of the storage device can be sterilized and purified, and the environmental humidity of the shopping mall is improved, so that more comfortable and clean air is provided for users.
[0040] 3) The control method of the storage device applied to the shopping mall has the advantages that the storage device and the control method of the storage device are associated and jointly act, the control method of the storage device is jointly controlled according to the environmental humidity value H in the shopping mall, the fish tank water flow turbidity D, the temperature T1 in the shopping mall and the temperature T2 of the battery compartment, multiple effects are achieved, the sterilization control is more accurate in different scenes, resource waste is avoided, the best effect can be achieved in different scenes, the temperature of the battery compartment is rapidly reduced, and sterilization and purification are facilitated. BRIEF DESCRIPTION OF DRAWINGS
[0041] Figure 1 One of internal structure side views of the storage device applied to the shopping mall;
[0042] Figure 2 One of front views of the storage device applied to the shopping mall;
[0043] Figure 3 A plan view of a storage device applied to a shopping mall according to an embodiment of the present application;
[0044] Figure 4 A side view of an internal structure of a storage device applied to a shopping mall according to an embodiment of the present application;
[0045] Figure 5 A side view of an internal structure of a storage device applied to a shopping mall according to an embodiment of the present application;
[0046] Figure 6 A side view of an internal structure of a storage device applied to a shopping mall according to an embodiment of the present application;
[0047] Figure 7 A front view of a storage device applied to a shopping mall according to an embodiment of the present application;
[0048] Figure 8 A side view of an internal structure of a storage device applied to a shopping mall according to an embodiment of the present application.
[0049] BRIEF DESCRIPTION OF DRAWINGS
[0050] 1, fish tank; 2, cabinet body; 21, battery compartment; 22, heat dissipation hole; 3, heat exchange air outlet assembly; 4, air outlet duct; 41, air outlet; 42, air guide door assembly; 421, first air guide door; 422, second air guide door; 431, first air outlet channel; 432, second air outlet channel; 433, third air outlet channel; 5, air exchange pipe; 51, distribution pipe; 6, negative oxygen ion generating device; 7, air pump; 8, water tank; 81, water inlet pipe; 82, water outlet pipe; 83, water supply pump; 9, bacteria removal atomizing device. DETAILED DESCRIPTION
[0051] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The description of "first", "second" and the like in the embodiments of the present application is only for the purpose of description and cannot be understood as indicating or implying the relative importance of the technical features indicated or the number of the technical features indicated. Therefore, the features with "first", "second" can explicitly or implicitly include at least one of the features. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist and is not within the protection scope required by the present application.
[0052] The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0053] Embodiment 1
[0054] As Figures 1-6 shown in the embodiment, the energy storage device applied to the shopping mall comprises a cabinet 2, a fish tank 1 and an air outlet air duct 4, the fish tank 1 is installed on the cabinet 2, the air outlet air duct 4 is arranged on the cabinet 2, a negative oxygen ion generating device 6 and a bacteria-removing atomizing device 9 are installed in the air outlet air duct 4, the negative oxygen ion generating device 6 can generate negative oxygen ions for sterilization, the bacteria-removing atomizing device 9 can generate nanometer water ions for sterilization and atomization, the air outlet air duct 4 can at least deliver sterilization airflow to the outside through an air outlet 41, the air outlet air duct 4 comprises a first air outlet passage 431, a second air outlet passage 432 and a third air outlet passage 433, the sterilization airflow can be delivered into the shopping mall through the first air outlet passage 431, the sterilization airflow can be delivered into the fish tank 1 through the second air outlet passage 432, and the sterilization airflow can be delivered into the cabinet 2 of the energy storage device through the third air outlet passage 433.
[0055] The energy storage device applied to the shopping mall, one, the fish tank 1 is arranged on the energy storage device, so that the cabinet 2 and the fish tank 1 are combined in structure, which not only saves space, but also decorates the energy storage device, so that the energy storage device has ornamental value; two, the negative oxygen ion generating device 6 and the bacteria-removing atomizing device 9 are installed in the air outlet air duct 4, and the air outlet air duct 4 comprises the first air outlet passage 431, the second air outlet passage 432 and the third air outlet passage 433, which has multiple functions: not only can sterilize and purify the air in the shopping mall, but also can sterilize and purify the fish tank 1, can purify and sterilize the inside of the energy storage device, and can improve the environmental humidity of the shopping mall to provide more comfortable and clean air for users.
[0056] The negative oxygen ion generating device 6 can generate negative oxygen ions and sterilize the air through the negative oxygen ions. The bacteria-removing atomizing device 9 can generate nanometer water ions by ionizing the water in the fish tank 1 that needs to be replaced, and sterilize and atomize through the nanometer water ions, which can effectively sterilize and disinfect the air, and the generated water mist can improve the air environmental humidity to provide more comfortable and clean air for consumers.
[0057] Specifically, as Figure 1 and Figure 3 shown, the third air outlet passage 433 is arranged between the fish tank 1 and the cabinet 2, and a heat dissipation hole 22 is arranged on the side wall of the cabinet 2, and the third air outlet passage 433 communicates with the inside of the energy storage device through the heat dissipation hole 22.
[0058] The arrangement facilitates the sterilization airflow to be delivered into the cabinet 2 of the energy storage device through the third air outlet passage 433, sterilizes and purifies the air in the inside of the energy storage device, increases the air flow, and is beneficial to heat dissipation in the inside of the energy storage device.
[0059] Specifically, such as Figure 1 As shown, an air guide damper assembly 42 is provided at the air outlet 41. The air guide damper assembly 42 is rotatably connected to the cabinet 2 and is extendable. The air guide damper assembly 42 can open or close the first air outlet channel 431 and / or the second air outlet channel 432 and / or the third air outlet channel 433.
[0060] This configuration allows the air guide assembly 42 to open or close the first air outlet channel 431 and / or the second air outlet channel 432 and / or the third air outlet channel 433, thereby achieving precise sterilization of the shopping mall, fish tank 1 and energy storage device cabinet 2 and avoiding resource waste.
[0061] For the air guide damper assembly 42, a corresponding motor can be set up. The output shaft of the motor can be directly connected to the hinge shaft of the air guide damper assembly 42, or the two can be connected through a conventional transmission component. The motor drives the hinge shaft of the air guide damper assembly 42 and causes the air guide damper assembly 42 to rotate.
[0062] Specifically, the air guide assembly 42 includes a first air guide 421 and a second air guide 422. The first air guide 421 is disposed at the upper end of the air outlet 41, and the second air guide 422 is disposed at the lower end of the air outlet 41. One end of the first air guide 421 is rotatably connected to the cabinet 2, and the other end of the first air guide 421 is freely disposed. One end of the second air guide 422 is rotatably connected to the cabinet 2, and the other end of the second air guide 422 is freely disposed.
[0063] This configuration allows the air guide assembly 42 to open or close the first air outlet channel 431 and / or the second air outlet channel 432 and / or the third air outlet channel 433, thereby achieving precise sterilization of the shopping mall, fish tank 1 and energy storage device cabinet 2 and avoiding resource waste.
[0064] Specifically, such as Figure 1 As shown, the energy storage device also includes a water tank 8. The inlet pipe 81 of the water tank 8 is connected to the fish tank 1. The water tank 8 is used to store the water that needs to be replaced in the fish tank 1. The outlet pipe 82 of the water tank 8 is connected to the negative oxygen ion generator 6 and the sterilization atomizing device 9. The outlet pipe 82 is equipped with a water supply pump 83. The water supply pump 83 is used to transport the water that needs to be replaced in the fish tank 1 stored in the water tank 8 to the negative oxygen ion generator 6 and the sterilization atomizing device 9. The negative oxygen ion generator 6 can generate negative oxygen ions using the water that needs to be replaced in the fish tank 1. The sterilization atomizing device 9 can generate nano water ions using the water that needs to be replaced in the fish tank 1, and perform sterilization and atomization through the nano water ions.
[0065] The setting can realize the recycling of water, reduce the waste of water resources, ensure that the negative oxygen ion generating device 6 and the sterilization atomization device 9 can obtain sufficient water source, and purify and sterilize the air in the shopping mall and / or fish tank 1 and / or energy storage device cabinet 2.
[0066] Preferably, a water purification and sterilization device is arranged in the water tank 8, which can purify and sterilize the water in the water tank 8.
[0067] The setting can avoid the blockage of the water outlet pipe 82, the water supply pump 83 and the negative oxygen ion generating device 6 connected with the water tank 8, and improve the sterilization effect of the negative oxygen ion generating device 6.
[0068] Preferably, as shown in Figure 1 The water tank 8 is arranged below the fish tank 1, which facilitates the water in the fish tank 1 to flow into the water tank 8 under the action of gravity.
[0069] Preferably, a drain valve is arranged on the water inlet pipe 81, which facilitates the control of the fish tank 1 to drain water.
[0070] Preferably, as shown in Figure 1 A battery compartment 21 is arranged inside the cabinet 2, which is used for storing batteries; the water outlet pipe 82 is arranged on the side wall of the battery compartment 21.
[0071] On the one hand, the side wall of the battery compartment 21 supports the installation of the water outlet pipe 82, so that the water outlet pipe 82 has high installation stability; on the other hand, the water in the water outlet pipe 82 can take away the heat of the battery compartment 21, so as to cool the battery compartment 21.
[0072] Preferably, as shown in Figure 1 A heat exchange air outlet assembly 3 is arranged above the battery compartment 21, which can exchange heat with the hot air in the battery compartment 21 and discharge the hot air outside the cabinet 2.
[0073] For the heat exchange air outlet assembly 3, the conventional structures such as heat exchanger and air outlet fan in the conventional energy storage device can be used, and other related structures of the conventional energy storage device can be used. Since the heat exchange structure, air outlet structure and other components or assemblies in the energy storage device can be used in the prior art, they will not be described here.
[0074] Similarly, the air outlet end of the heat exchange air outlet assembly 3 is provided with an air outlet air duct 4, which is the same as the conventional energy storage device structure, and will not be described here.
[0075] Preferably, the fish tank 1 is arranged around the cabinet 2.
[0076] This setup allows shoppers in the mall to enjoy the fish from all directions. Furthermore, the fish tank 1 surrounds the cabinet 2, effectively creating a water-based vibration absorber around the cabinet 2, thus improving the sound insulation of the energy storage device. Additionally, the water in the fish tank 1 helps dissipate heat from the energy storage device.
[0077] Preferably, the cabinet 2 is provided with an installation space, which is located below the air outlet 41, and the fish tank 1 is detachably installed in the installation space.
[0078] The installation space is located below the air outlet 41, and the fish tank 1 can be detachably installed in the installation space to facilitate the delivery of the sterilizing airflow from the air outlet 41 to the fish tank 1.
[0079] The energy storage device also includes a control device.
[0080] A water quality detector is installed in the fish tank 1 to detect the turbidity of the water in the fish tank 1; a humidity sensor is installed on the outside of the cabinet 2 to detect the humidity of the shopping mall environment; and a first temperature sensor is installed on the battery compartment 21 to detect the temperature of the battery compartment 21.
[0081] A second temperature sensor is installed on the outside of cabinet 2. The second temperature sensor is used to detect the temperature inside the shopping mall.
[0082] Example 2
[0083] Unlike Example 1, in this example, as Figures 7-8 As shown, for fishkeeping, an air exchange pipe 5 is often installed in the fish tank 1 to supply appropriate air or oxygen to the water to ensure the fish's living environment. Based on this conventional air exchange structure of the fish tank 1, this application further improves the energy storage device. An air pump 7 is installed in the air outlet duct 4 of the cabinet 2. The air outlet of the air pump 7 is connected to the air exchange pipe 5. By turning on the air pump 7, the bactericidal airflow can be directly delivered to the water in the fish tank 1, allowing the bactericidal airflow to directly contact the water for purification and sterilization, further improving the sterilization and purification effect on the water in the fish tank 1.
[0084] Preferably, the end of the air exchange pipe 5 away from the air pump 7 extends to the bottom of the fish tank 1, and a distribution pipe 51 is provided at the end of the air exchange pipe 5 away from the air pump 7. The distribution pipe 51 has multiple evenly distributed air exchange ports, which can evenly supply air and sterilization airflow at the bottom of the fish tank 1 on the one hand, and effectively increase the flow of water on the other hand, increase the uniformity of contact between the sterilization airflow and the water, avoid the problem of the water sterilization and purification area being too concentrated, and help improve the sterilization and purification efficiency of the water in the fish tank 1.
[0085] Example 3
[0086] In a second aspect, the application provides a control method of the energy storage device applied to a shopping mall, wherein the control method uses the energy storage device applied to a shopping mall according to the first aspect,
[0087] The control method comprises the following steps:
[0088] S1, obtaining the environmental humidity value H in the shopping mall, the water flow turbidity D of the fish tank 1, and the temperature T2 of the battery compartment 21;
[0089] S2, determining whether at least two of the following conditions are met: the environmental humidity value H in the shopping mall is greater than or equal to the first humidity threshold H1, the water flow turbidity D of the fish tank 1 is greater than or equal to the water flow turbidity threshold D0, and the temperature T2 of the battery compartment 21 is greater than or equal to the temperature threshold T20. If yes, go to step S3; if no, go to step S4.
[0090] S3, control the fish tank 1 cabinet 2 in the shopping mall to enter the sterilization mode;
[0091] S4, determining whether the environmental humidity value H in the shopping mall is greater than or equal to the first humidity threshold H1, the water flow turbidity D of the fish tank 1 is less than the water flow turbidity threshold D0, and the temperature T2 of the battery compartment 21 is less than the temperature threshold T20. If yes, go to step S5; if no, go to step S6.
[0092] S5, control the shopping mall to enter the sterilization mode alone;
[0093] S6, determining whether the water flow turbidity D of the fish tank 1 is greater than or equal to the water flow turbidity threshold D0, the environmental humidity value H in the shopping mall is less than the first humidity threshold H1, and the temperature T2 of the battery compartment 21 is less than the temperature threshold T20. If yes, go to step S7; if no, go to step S8.
[0094] S7, control the fish tank 1 to enter the sterilization mode alone;
[0095] S8, determining whether the temperature T2 of the battery compartment 21 is greater than or equal to the temperature threshold T20, the environmental humidity value H in the shopping mall is less than the first humidity threshold H1, and the water flow turbidity D of the fish tank is less than the water flow turbidity threshold D0. If yes, go to step S9; if no, keep the original state.
[0096] S9, control the cabinet 2 to enter the sterilization mode alone.
[0097] The control method has steps S1-S9 which are correlated and jointly act, and the environment humidity value H in the shopping mall, the water flow turbidity D of the fish tank 1 and the temperature T2 of the battery compartment 21 are obtained through step S1, so that at least two of the following conditions are judged through step S2: whether the environment humidity value H in the shopping mall satisfies H≥H1, whether the water flow turbidity D of the fish tank 1 satisfies D≥D0, and whether the temperature T2 of the battery compartment 21 satisfies T2≥T20, so as to judge whether the shopping mall, the fish tank 1 and the cabinet 2 need to be sterilized and purified. If at least two of the following conditions are satisfied: the environment humidity value H in the shopping mall satisfies H≥H1, the water flow turbidity D of the fish tank 1 satisfies D≥D0, and the temperature T2 of the battery compartment 21 satisfies T2≥T20, it indicates that the shopping mall, the fish tank 1 and the cabinet 2 all need to be sterilized and purified, and then step S3 is entered to enter the simultaneous sterilization mode of the shopping mall, the fish tank 1 and the cabinet 2. If the environment humidity value H in the shopping mall satisfies H≥H1, the water flow turbidity D of the fish tank 1 is less than D0, and the temperature T2 of the battery compartment 21 is less than T20, it indicates that the shopping mall needs to be sterilized and purified, and the fish tank 1 and the cabinet 2 do not need to be sterilized and purified, and then the shopping mall needs to enter the separate sterilization mode. If the water flow turbidity D of the fish tank 1 satisfies D≥D0, the environment humidity value H in the shopping mall is less than H1, and the temperature T2 of the battery compartment 21 is less than T20, it indicates that the fish tank 1 needs to be sterilized and purified, and the shopping mall and the cabinet 2 do not need to be sterilized and purified, and then the fish tank 1 needs to enter the separate sterilization mode. If the temperature T2 of the battery compartment 21 satisfies T2≥T20, the environment humidity value H in the shopping mall is less than H1, and the water flow turbidity D of the fish tank 1 is less than D0, it indicates that the cabinet 2 needs to be sterilized and purified, and the shopping mall and the fish tank 1 do not need to be sterilized and purified, and then the cabinet 2 needs to enter the separate sterilization mode. The control method can enter different sterilization modes according to the environment humidity value H in the shopping mall, the water flow turbidity D of the fish tank 1 and the temperature T2 of the battery compartment 21, so that the sterilization control is more accurate in different scenes, resource waste is avoided, and the best effect can be achieved in different scenes.
[0098] Under the condition that the environment humidity value H in the shopping mall satisfies H≥H1, the survival rate of viruses and bacteria in the environment is relatively high, thereby affecting the experience of consumers. If the consumers stay in the environment for a long time, viruses, bacteria and the like in the air will have a serious impact on the respiratory system and nervous system of the human body. Under the condition that the water flow turbidity D of the fish tank 1 satisfies D≥D0, the survival rate of viruses and bacteria in the fish tank 1 is relatively high, thereby affecting the survival of organisms such as fish and the ornamental nature of the fish tank 1. Under the condition that the temperature T2 of the battery compartment 21 satisfies T2≥T20, the viruses and bacteria in the cabinet 2 are suitable for sterilization, the sterilization effect is good, and the sterilization airflow can also reduce the temperature of the battery compartment 21.
[0099] The first humidity threshold H1, the water flow turbidity threshold D0 and the temperature threshold T20 are preset values and are not specifically limited herein.
[0100] Specifically, the step S3 comprises the following steps.
[0101] S31, acquiring the temperature T1 in the mall and the temperature T2 of the battery compartment;
[0102] S32, determining whether (T2-T1) / T1≥preset temperature coefficient k, if yes, entering step S33, and if no, entering step S34;
[0103] S33, controlling to start the negative oxygen ion generating device 6, controlling the heat exchange air outlet assembly 3 to enter the high-grade wind speed mode, the first air outlet channel 431, the second air outlet channel 432 and the third air outlet channel 433 are all opened, controlling the angle α between the first air guide door 421 and the cabinet 2 to be greater than 90°, and controlling the angle β between the second air guide door 422 and the cabinet 2 to be less than 10°;
[0104] S34, controlling to start the negative oxygen ion generating device 6, controlling the heat exchange air outlet assembly 3 to enter the low-grade wind speed mode, the first air outlet channel 431, the second air outlet channel 432 and the third air outlet channel 433 are all opened, controlling the angle α between the first air guide door 421 and the cabinet 2 to be greater than 90°, and controlling the angle β between the second air guide door 422 and the cabinet 2 to be less than 10°.
[0105] It is found that the higher the temperature and the lower the humidity of the air in the same state, the more conducive to sterilization and purification. (T2-T1) / T1≥preset temperature coefficient k indicates that the temperature difference between the temperature of the battery compartment 21 and the temperature in the mall accounts for a large proportion of the temperature in the mall. In this case, the battery compartment 21 needs to be cooled, and controlling the heat exchange air outlet assembly 3 to enter the high-grade wind speed mode can quickly heat exchange the battery compartment 21, reduce the temperature of the battery compartment 21, and the hot air blown out by the heat exchange can increase the temperature in the mall and the fish tank 1, thereby being conducive to sterilization and purification of the air in the mall and the fish tank 1.
[0106] The steps S31-S34 are associated with each other. In the simultaneous sterilization mode of the fish tank 1 cabinet 2 in the shopping mall, whether (T2-T1) / T1≥preset temperature coefficient k is detected and judged through steps S31 and S32 to determine whether the temperature difference between the temperature of the battery compartment and the temperature in the shopping mall accounts for a large proportion of the temperature in the shopping mall. If (T2-T1) / T1≥preset temperature coefficient k, it indicates that the temperature difference accounts for a large proportion of the temperature in the shopping mall, then step S33 is entered, the negative oxygen ion generating device 6 is controlled to be turned on, the heat exchange air outlet assembly 3 is controlled to enter the high-grade wind speed mode, the first air outlet channel 431, the second air outlet channel 432, and the third air outlet channel 433 are all opened, the angle α between the first air guide door 421 and the cabinet 2 is controlled to be greater than 90°, and the angle β between the second air guide door 422 and the cabinet 2 is controlled to be less than 10°. On the one hand, the high-grade wind speed mode of the heat exchange air outlet assembly 3 can quickly reduce the temperature of the battery compartment 21; at the same time, the negative oxygen ion airflow can circulate in the cabinet to further cool the battery compartment 21; on the other hand, the hot air after heat exchange in the cabinet can be blown out, thereby increasing the temperature in the shopping mall and the fish tank 1, which is conducive to sterilization and purification in the shopping mall and the fish tank 1. In addition, the area of the air outlet air duct 4 is also expanded, so that the negative oxygen ion airflow quickly and massively enters the shopping mall, the fish tank 1, and the cabinet 2, thereby improving the sterilization and purification efficiency.
[0107] Specifically, step S5 includes the following steps:
[0108] S51, acquiring the temperature T1 in the shopping mall and the temperature T2 of the battery compartment;
[0109] S52, determining whether (T2-T1) / T1≥preset temperature coefficient k. If yes, step S53 is entered, and if no, step S54 is entered;
[0110] S53, controlling the negative oxygen ion generating device 6 to be turned on, controlling the heat exchange air outlet assembly 3 to enter the high-grade wind speed mode, opening the first air outlet channel 431, closing the second air outlet channel 432 and the third air outlet channel 433, and setting the second air guide door 422 on the side of the fish tank 1 away from the cabinet 2, and controlling the angle α between the first air guide door 421 and the cabinet 2 to be greater than 90°;
[0111] S54, controlling the negative oxygen ion generating device 6 to be turned on, controlling the heat exchange air outlet assembly 3 to enter the low-grade wind speed mode, opening the first air outlet channel 431, closing the second air outlet channel 432 and the third air outlet channel 433, setting the second air guide door 422 on the side of the fish tank 1 away from the cabinet 2, and controlling the angle α between the first air guide door 421 and the cabinet 2 to be greater than 90°.
[0112] Steps S51-S54 are associated with each other. In the market individual sterilization mode, whether (T2-T1) / T1≥preset temperature coefficient k is detected and judged by steps S51 and S52 to determine whether the temperature difference between the battery compartment and the temperature in the market accounts for a large proportion of the temperature in the market. If (T2-T1) / T1≥preset temperature coefficient k, it indicates that the temperature difference accounts for a large proportion of the temperature in the market, then step S53 is entered, the negative oxygen ion generating device 6 is controlled to be turned on, and the heat exchange air outlet assembly 3 is controlled to enter the high-grade wind speed mode. On the one hand, the temperature of the battery compartment 21 can be quickly reduced, and on the other hand, the hot air in the cabinet body can be quickly blown out, thereby increasing the temperature in the market, which is conducive to sterilization and purification. The first air outlet passage 431 is opened, the second air outlet passage 432 and the third air outlet passage 433 are closed, and the second air guide door 422 is arranged on the side of the fish tank 1 away from the cabinet body 2. This can prevent the negative oxygen ion airflow from entering the fish tank 1 and the gap between the fish tank 1 and the cabinet body 2 to flow into the cabinet body, so that the negative oxygen ion airflow enters the market for accurate sterilization and purification, avoiding resource waste. The angle α between the first air guide door 421 and the cabinet body 2 is controlled to be greater than 90°, which expands the area of the first air outlet passage 431, so that the negative oxygen ion airflow quickly and massively enters the market, improving the efficiency of sterilization and purification. If (T2-T1) / T1<preset temperature coefficient k, it indicates that the temperature difference accounts for a small proportion of the temperature in the market, then step S34 is entered, the negative oxygen ion generating device 6 is controlled to be turned on, and the heat exchange air outlet assembly 3 is controlled to enter the low-grade wind speed mode. The first air outlet passage 431 is opened, the second air outlet passage 432 and the third air outlet passage 433 are closed, and the second air guide door 422 is arranged on the side of the fish tank 1 away from the cabinet body 2. This can prevent the negative oxygen ion airflow from entering the fish tank 1 and the gap between the fish tank 1 and the cabinet body 2, so that the negative oxygen ion airflow enters the market for accurate sterilization and purification, avoiding resource waste. The angle α between the first air guide door 421 and the cabinet body 2 is controlled to be greater than 90°, which expands the area of the first air outlet passage 431, so that the negative oxygen ion airflow quickly and massively enters the market, improving the efficiency of sterilization and purification.
[0113] Specifically, step S5 further includes the following steps:
[0114] After the first preset time t1, the market indoor environment humidity value H is acquired again, and whether the acquired market indoor environment humidity value H is less than the second humidity threshold H2 is determined. If yes, the sterilization atomization device 9 is controlled to be turned on. If no, the original state is maintained.
[0115] The second humidity threshold H2 is a preset value, and the second humidity threshold H2 is less than the first humidity threshold H1. The second humidity threshold H2 is not limited here.
[0116] If the indoor humidity value H < the second humidity threshold H2, it indicates that the air in the mall is relatively dry, at this time the sterilizing atomizing device 9 needs to be controlled to be opened, and the water mist generated by the sterilizing atomizing device 9 can improve the air environment humidity while being purified and sterilized, so as to provide more comfortable and clean air for consumers.
[0117] The first preset time t1 is a preset value, which is not limited here.
[0118] Specifically, as shown in Figure 6 The step S7 includes the following steps:
[0119] S71, control the first level sterilization mode of the fish tank 1: control the negative oxygen ion generating device 6 and the heat exchange air outlet assembly 3 to be opened, the first air outlet channel 431 and the third air outlet channel 433 are closed, the second air outlet channel 432 is opened, the first air door 421 is arranged on the side of the fish tank 1 away from the cabinet 2, and the second air door 422 is arranged on the side of the fish tank 1 close to the cabinet 2;
[0120] In the fish tank 1 single sterilization mode, the first level sterilization mode of the fish tank 1 is controlled, the first air outlet channel 431 and the third air outlet channel 433 are closed, the second air outlet channel 432 is opened, the first air door 421 is arranged on the side of the fish tank 1 away from the cabinet 2, and the second air door 422 is arranged on the side of the fish tank 1 close to the cabinet 2, which can avoid the negative oxygen ion airflow entering the mall, and also can avoid the negative oxygen ion airflow entering the cabinet 2, so that the negative oxygen ion airflow enters the fish tank 1 entirely, precise sterilization and purification are carried out, and resource waste is avoided.
[0121] S72, after the second preset time t2, the water flow turbidity D of the fish tank 1 is acquired again, and whether the water flow turbidity D of the fish tank 1 acquired again is greater than or equal to the water flow turbidity threshold D0 is judged, if yes, the second level sterilization mode of the fish tank 1 is controlled to be entered, if not, the step S74 is entered;
[0122] Whether the water flow turbidity D of the fish tank 1 acquired again is greater than or equal to the water flow turbidity threshold D0 is judged to judge whether the first level sterilization mode of the fish tank 1 is effective, if the water flow turbidity D of the fish tank 1 acquired again is greater than or equal to the water flow turbidity threshold D0, it indicates that the first level sterilization mode of the fish tank 1 is invalid or the effect is poor, and the set water flow turbidity is still not reached, so the second level sterilization mode of the fish tank 1 is controlled to be entered, if the water flow turbidity D of the fish tank 1 acquired is less than the water flow turbidity threshold D0, it indicates that the first level sterilization mode of the fish tank 1 is effective, so the negative oxygen ion generating device 6 and the heat exchange air outlet assembly 3 are controlled to be closed, and resource waste is avoided.
[0123] The second preset time t2 is a preset value, which is not limited here.
[0124] S73, control the air pump 7 and the sterilizing atomizing device 9 to be opened;
[0125] S74, Control and shut down the negative oxygen ion generator 6, heat exchange air outlet assembly 3.
[0126] The sterilization atomizing device 9 is activated by controlling its operation. This device ionizes the water in the aquarium 1 within the water tank 8, generating nano-water ions. These nano-water ions then sterilize and atomize the aquarium, further disinfecting it. The air pump 7 is activated to directly deliver negative oxygen ions and nano-water ions into the aquarium 1, allowing them to directly contact the water for purification and sterilization, further enhancing the sterilization and purification effect. Furthermore, it effectively increases water flow, increasing the uniformity of contact between the negative oxygen ion stream and nano-water ions, avoiding overly concentrated sterilization areas and improving the overall sterilization and purification efficiency of the aquarium 1.
[0127] Specifically, such as Figure 4 As shown, step S9 specifically involves: controlling the activation of the negative oxygen ion generator 6 and the heat exchange air outlet assembly 3, opening the third air outlet channel 433, closing the first air outlet channel 431 and the second air outlet channel 432, setting the first air guide door 421 on the side of the fish tank 1 close to the cabinet 2, and controlling the angle β between the second air guide door 422 and the cabinet 2 to be less than 10°.
[0128] In the stand-alone sterilization mode of cabinet 2, the third air outlet 433 is opened, while the first air outlet 431 and the second air outlet 432 are closed. The first air guide door 421 is positioned on the side of the fish tank 1 closest to cabinet 2, and the angle β between the second air guide door 422 and cabinet 2 is controlled to be less than 10°. This prevents the negative ion airflow from entering the fish tank 1 and the shopping mall, ensuring that all the negative ion airflow enters cabinet 2 for precise sterilization and purification, avoiding resource waste. At the same time, it also helps to dissipate heat inside cabinet 2.
[0129] More specifically, the control method further includes the following steps:
[0130] Real-time data acquisition is available for the following parameters: ambient humidity (H), water turbidity (D) in fish tank 1, and temperature (T2) in battery compartment 21.
[0131] If the humidity value H in the shopping mall is less than the first humidity threshold H1, the turbidity D of the water in the fish tank 1 is less than the turbidity threshold D0, and the temperature T2 of the battery compartment 21 is less than the temperature threshold T20, then the negative oxygen ion generator 6 and the heat exchange air outlet assembly 3 will be shut down.
[0132] If the environmental humidity value H in the shopping mall is less than the first humidity threshold H1, the water flow turbidity D of the fish tank 1 is less than the water flow turbidity threshold D0, and the temperature T2 of the battery compartment 21 is less than the temperature threshold T20, it indicates that the sterilization effect in the shopping mall, the fish tank 1 and the cabinet 2 is good, and sterilization is not needed any more, so the negative oxygen ion generating device 6 and the heat exchange air outlet assembly 3 are controlled to be closed, so as to avoid resource waste.
[0133] Although the present application has been disclosed with reference to the above embodiments, it is not intended to limit the present application to the above embodiments. Any person skilled in the art, without departing from the spirit and scope of the present application, can make various modifications and changes, and the protection scope of the present application should be limited by the scope defined in the claims.
Claims
1. An energy storage device applied to a shopping mall, characterized by, The energy storage device comprises a cabinet body (2), a fish tank (1) and an air outlet air duct (4), the fish tank (1) is installed on the cabinet body (2), the air outlet air duct (4) is arranged on the cabinet body (2), a negative oxygen ion generating device (6) and a bacteria-removing atomizing device (9) are installed in the air outlet air duct (4), the negative oxygen ion generating device (6) can generate negative oxygen ions for sterilization, the bacteria-removing atomizing device (9) can generate nanometer water ions for sterilization and atomization, the air outlet air duct (4) can at least deliver sterilization airflow to the outside through an air outlet (41), the air outlet air duct (4) comprises a first air outlet channel (431), a second air outlet channel (432) and a third air outlet channel (433), the sterilization airflow can be delivered into a shopping mall through the first air outlet channel (431), the sterilization airflow can be delivered into the fish tank (1) through the second air outlet channel (432), and the sterilization airflow can be delivered into the cabinet body (2) of the energy storage device through the third air outlet channel (433); A battery compartment (21) is arranged inside the cabinet body (2), and the battery compartment (21) is used for storing a battery; The control method of the energy storage device comprises the following steps: S1, acquiring an environment humidity value H in a shopping mall, a water flow turbidity D of the fish tank (1) and a temperature T2 of the battery compartment (21); S2, judging whether at least two of the following conditions are met: the environment humidity value H in the shopping mall is greater than or equal to a first humidity threshold H1, the water flow turbidity D of the fish tank (1) is greater than or equal to a water flow turbidity threshold D0, and the temperature T2 of the battery compartment (21) is greater than or equal to a temperature threshold T20, if yes, entering step S3, if no, entering step S4; S3, controlling to enter a simultaneous sterilization mode of the fish tank (1) cabinet body (2) in the shopping mall; S4, judging whether the environment humidity value H in the shopping mall is greater than or equal to the first humidity threshold H1, the water flow turbidity D of the fish tank (1) is less than the water flow turbidity threshold D0, and the temperature T2 of the battery compartment (21) is less than the temperature threshold T20, if yes, entering step S5, if no, entering step S6; S5, controlling to enter a separate sterilization mode in the shopping mall; S6, judging whether the water flow turbidity D of the fish tank (1) is greater than or equal to the water flow turbidity threshold D0, the environment humidity value H in the shopping mall is less than the first humidity threshold H1, and the temperature T2 of the battery compartment (21) is less than the temperature threshold T20, if yes, entering step S7, if no, entering step S8; S7, controlling to enter a separate sterilization mode of the fish tank (1); S8, judging whether the temperature T2 of the battery compartment (21) is greater than or equal to the temperature threshold T20, the environment humidity value H in the shopping mall is less than the first humidity threshold H1, and the water flow turbidity D of the fish tank (1) is less than the water flow turbidity threshold D0, if yes, entering step S9, if no, keeping the original state; S9, controlling to enter a separate sterilization mode of the cabinet body (2).
2. The energy storage device for use in a shopping mall of claim 1, wherein, The third air outlet channel (433) is arranged between the fish tank (1) and the cabinet body (2), a heat dissipation hole (22) is arranged on the side wall of the cabinet body (2), and the third air outlet channel (433) is in communication with the inside of the energy storage device through the heat dissipation hole (22).
3. The energy storage device for use in a shopping mall of claim 2, wherein, A guide vane assembly (42) is arranged at the air outlet (41), the guide vane assembly (42) is rotatably connected with the cabinet body (2) and the guide vane assembly (42) is telescopically arranged, the first air outlet channel (431) and / or the second air outlet channel (432) and / or the third air outlet channel (433) can be opened or closed through the guide vane assembly (42).
4. The energy storage device for use in a shopping mall of claim 3, wherein, The guide vane assembly (42) comprises a first guide vane (421) and a second guide vane (422), the first guide vane (421) is arranged at the upper end of the air outlet (41), the second guide vane (422) is arranged at the lower end of the air outlet (41), one end of the first guide vane (421) is rotatably connected with the cabinet body (2), the other end of the first guide vane (421) is freely arranged; one end of the second guide vane (422) is rotatably connected with the cabinet body (2), the other end of the second guide vane (422) is freely arranged.
5. The energy storage device for use in a shopping mall of claim 4, wherein, The energy storage device further comprises a water tank (8), a water inlet pipe (81) of the water tank (8) is communicated with the fish tank (1), the water tank (8) is at least used for storing the water required to be replaced by the fish tank (1), a water outlet pipe (82) of the water tank (8) is communicated with the negative oxygen ion generating device (6) and the sterilization atomization device (9), the water outlet pipe (82) is provided with a water supply pump (83), the water supply pump (83) is used for conveying the water required to be replaced by the fish tank (1) stored in the water tank (8) to the negative oxygen ion generating device (6) and the sterilization atomization device (9), the negative oxygen ion generating device (6) can generate negative oxygen ions by using the water required to be replaced by the fish tank (1), and the sterilization atomization device (9) can generate nano water ions by using the water required to be replaced by the fish tank (1).
6. The energy storage device for use in a shopping mall of claim 5, wherein, The water outlet pipe (82) is arranged on the side wall of the battery compartment (21).
7. The energy storage device for use in a shopping mall of claim 6, wherein, The cabinet body (2) is provided with a mounting space, the mounting space is arranged below the air outlet (41), and the fish tank (1) can be detachably mounted in the mounting space.
8. The energy storage device for use in a shopping mall of claim 7, wherein, The fish tank (1) is provided with an air exchange pipe (5), the air outlet duct (4) is provided with an air pump (7), an air outlet of the air pump (7) is communicated with the air exchange pipe (5), and the air pump (7) is used for directly conveying the negative oxygen ion airflow to the water body of the fish tank (1).
9. The energy storage device for use in a shopping mall of claim 8, wherein, One end of the air exchange pipe (5) away from the air pump (7) extends to the bottom of the fish tank (1), and the one end of the air exchange pipe (5) away from the air pump (7) is provided with a distribution pipe (51), and the distribution pipe (51) has a plurality of air exchange openings.
Citation Information
Patent Citations
Energy storage device applied to shopping mall storage cabinet
CN219739118U
Cabinet air conditioner with fish tank and fish tank cooling method
CN115950064A
Cabinet air conditioner
CN116182287A
Lithium battery energy storage cabinet
CN117832675A