Application of humidity control system in vegetable storage

By using a rotating 90-degree angle partition and drive system in the vegetable square warehouse, the humidity and condensation problems are solved, and the humidity and temperature are rapidly adjusted, and the stability of the vegetable growth environment is promoted.

CN117016258BActive Publication Date: 2025-08-08NORTHWEST A & F UNIV
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Patent Information

Application Number
CN202311185851.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-14
Publication Date
2025-08-08
Estimated Expiration
2043-09-14

AI Technical Summary

Technical Problem

The prior art is difficult to quickly and effectively control humidity and dissipate condensation in the inner wall of the bin in the vegetable square ware, resulting in unbalanced temperature and humidity, affecting vegetable growth.

Method used

A plurality of second partitions with 90 degrees curved angles are used to rotate in the vegetable square bin, and the heating part rotates to the side cavity when the humidity exceeds the standard. Combined with the driving part and the slider system, dry air is guided into the top cavity and exhausted moisture, maintaining the temperature and humidity balance in the chamber.

Benefits of technology

It quickly dissipates the condensation in the warehouse, maintains the balance of humidity and temperature in the warehouse, avoids temperature drop and condensation problems, and promotes the healthy growth of vegetables.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides an application of a humidity control system in a vegetable square warehouse, relating to the technical field of humidity control in a vegetable square warehouse, comprising: a square warehouse, a main cavity is provided in the center of the square warehouse, and side cavities are connected on both sides of the main cavity; a second partition, a plurality of second partitions with a ninety-degree bend angle are arranged in a straight array at the junction of the main cavity and the side cavity; the second partition has a heating part; the rotation range of the second partition involves the main cavity and the side cavity, wherein, when the humidity in the main cavity is within the standard range, the heating part is located in the main cavity; on the contrary, after the humidity in the main cavity exceeds the standard range, all the second partitions located at the junction of the main cavity and the two side cavities are turned and rotated synchronously by ninety degrees, so that the second partition is located on the inner surface of the main cavity and is rotated into the side cavity together with the heating part.
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Description

Technical Field

[0001] The present invention relates to the technical field of humidity control in vegetable cubicles, and in particular to the application of a humidity control system in vegetable cubicles. Background Art

[0002] Using vegetable storage silos in winter requires careful temperature control. Therefore, humidity regulation must be combined with temperature. When exposed to sunlight, the temperature and humidity inside the vegetable storage silos rise. Dehumidifiers can be used to control humidity, while ventilation can also be used to dissipate excess moisture. However, dehumidifiers are noisy and energy-intensive, making the cost-effectiveness of installing one or even multiple dehumidifiers in a large storage space extremely low. Ventilation can quickly dissipate excess moisture, but the temperature drops rapidly during ventilation, making it more cost-effective than the benefits. Furthermore, neither of these methods can quickly resolve the problem of water condensation on the silo walls. This condensation, combined with spores in the air, can easily produce fungi that are detrimental to vegetable growth. Therefore, considering the above, it is necessary to propose a vegetable storage silo with a humidity control system for winter use. Summary of the Invention

[0003] The purpose of the present invention is to provide an application of a humidity control system in a vegetable cubicle to solve the above technical problems.

[0004] In order to solve the above technical problems, the present invention adopts the following technical solutions:

[0005] Vegetable storage, including:

[0006] Square warehouse, with a main cavity in the center and side cavities on both sides of the main cavity;

[0007] Second baffles, a plurality of second baffles with a ninety-degree bend angle are arranged in a straight line array at the junction of the main cavity and the side cavity;

[0008] The second partition has a heating portion;

[0009] The rotation range of the second partition involves the main cavity and the side cavity. When the humidity in the main cavity is within the standard range, the heating part is located in the main cavity. On the contrary, when the humidity in the main cavity exceeds the standard range, all the second partitions located at the junction of the main cavity and the two side cavities are rotated synchronously by ninety degrees, so that the second partition is located on the inner surface of the main cavity and is rotated into the side cavity together with the heating part.

[0010] Preferably, the top of the main cavity is a top cavity, and the top cavity is connected to the two side cavities by combining with the adapter located at the cavity opening of the side cavity.

[0011] Preferably, the plurality of second partitions in the linear array at the junction of the main cavity and the side cavity extend into the top cavity, wherein the portion of the second partition extending into the top cavity is provided with a first roller, and in addition, at least two or more first rollers are directly opposite to the plurality of second rollers in the top cavity;

[0012] A soft plate corresponds to the junction of the main cavity and a side cavity, and the soft plate is wound around a plurality of first rollers and at least two or more second rollers;

[0013] A slider is provided between the two soft plates, which connects the two soft plates and drives the two soft plates to move synchronously when the slider slides with the square warehouse, so that several second partitions of the linear array at the junction of the main cavity and the two side cavities rotate synchronously.

[0014] Preferably, the slider has an interface, and the top of the main cavity is provided with an overflow, wherein the overflow is either coincident with or misaligned with the interface when the slider and the square bin are slidably engaged.

[0015] Preferably, when the interface and the overflow are coincident, the heating part is located in the side cavity; when the interface and the overflow are misaligned, the heating part is located in the main cavity.

[0016] Preferably, the soft board has a first through-hole and a second through-hole diagonally opposite to the first through-hole, wherein when the interface coincides with the overflow, the second through-hole is exposed from the top cavity opening, and when the interface and the overflow are misaligned, the second through-hole is completely covered by the side wall of the top cavity.

[0017] Preferably, it further comprises a driving portion for driving the slider to slide in the top cavity.

[0018] Preferably, the second partition includes a hot plate and a heat preservation plate forming a ninety-degree angle with the hot plate, and also includes a shaft, which is located at the junction of the hot plate and the heat preservation plate and extends upward to the top cavity to connect with the first roller.

[0019] Preferably, it further comprises two first baffles opposite to the transition portion, the two first baffles being respectively arranged at the cavity openings of the two side cavities;

[0020] There is also a second transfer wheel in rolling contact with the soft plate in the top cavity, and a first transfer wheel in rolling contact with the second transfer wheel. The first transfer wheel extends downward into the side cavity and is combined with the first partition plate. When the slider drives the two soft plates to move synchronously, the two first partition plates rotate axially in the corresponding side cavity.

[0021] Preferably, when the interface and the overflow port coincide with each other, the first partition plate is misaligned with the cavity opening of the side cavity; when the interface and the overflow port are misaligned, the first partition plate is blocked at the cavity opening of the side cavity.

[0022] The beneficial effects of the present invention are:

[0023] 1. The present invention uses a plurality of second partitions with a ninety-degree bend angle to replace the whole wall panel used for the side wall of the main cavity. Specifically, the plurality of second partitions are in end-to-end contact and spliced together into a whole wall panel for heat preservation of the main cavity. In addition, because the main cavity is a closed environment with high temperature and high humidity, the surfaces of the plurality of second partitions in the main cavity are prone to condensation due to the temperature difference. Therefore, all the second partitions located at the junction of the main cavity and the two side cavities can be rotated synchronously ninety degrees, so that the surfaces originally located in the main cavity are rotated into the side cavity, and then combined with the dry air outside the warehouse, the condensed water can be quickly dissipated.

[0024] 2. The present invention combines a driving unit to drive the slider to slide, so that the interface set on the slider coincides with the overflow. In addition, the slider drives the soft board to make all the second partitions reverse direction at the junction of the main cavity and the side cavity, that is, the surface of the second partition located in the main cavity faces the side cavity, and combined with the air discharged from the overflow, the air in the side cavity is guided into the top cavity through the adapter and discharged outward. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 This is a structural diagram of the vegetable square warehouse;

[0026] Figure 2 for Figure 1 The structure diagram of the vegetable square bin after side section is shown;

[0027] Figure 3 for Figure 2 The schematic diagram of the split structure of the vegetable square warehouse shown;

[0028] Figure 4 for Figure 2 The schematic diagram of the structure of the vegetable cube bin after the top is cut away;

[0029] Figure 5 for Figure 4 The schematic diagram of the structure of the vegetable square warehouse after further sectioning is shown;

[0030] Figure 6 This is a schematic diagram of the structure of the vegetable square warehouse when adjusting the humidity;

[0031] Figure 7 for Figure 6 The structure diagram of the vegetable square bin after side section is shown;

[0032] Figure 8 It is a structural schematic diagram of the second partition and the roller correspondingly combined with the second partition.

[0033] Figure numerals: 1. first transfer wheel; 2. first partition; 3. square warehouse; 4. side cavity; 5. warehouse door; 6. second transfer wheel; 7. second partition; 71. hot plate; 72. insulation plate; 73. shaft; 8. adapter; 9. discharge port; 10. inlet; 11. first roller; 12. soft plate; 13. first through-port; 14. second roller; 15. driving part; 16. slider; 17. interface; 18. overflow; 19. second through-port. DETAILED DESCRIPTION

[0034] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific embodiments and drawings. However, the following embodiments are only preferred embodiments of the present invention and are not exhaustive. Based on the embodiments in the implementation manner, other embodiments obtained by those skilled in the art without making any creative work are all within the scope of protection of the present invention.

[0035] Specific embodiments of the present invention are described below with reference to the accompanying drawings.

[0036] Example 1

[0037] In this embodiment, a vegetable square warehouse is proposed, please refer to Figures 1-8 The vegetable square bin includes a square bin 3. Specifically, a main cavity with only one cavity opening is set in the central area of the square bin 3. In addition, side cavities 4 are set on both sides of the main cavity.

[0038] See also Figure 3-Figure 5 There is a through open area at the junction of the main cavity and the side cavity 4, and a plurality of second partitions 7 are arranged in a linear array in the open area.

[0039] For the second separator 7, Figure 8 As shown, it has a hot plate 71 that can be heated and an insulation plate 72 that forms a ninety-degree angle with the hot plate 71. In addition, there is a shaft 73 arranged at the junction of the hot plate 71 and the insulation plate 72. It is further explained that the shaft 73 penetrates into the cavity top at the junction of the main cavity and the side cavity 4, so that the combination of the hot plate 71 and the insulation plate 72 can rotate at the junction of the main cavity and the side cavity 4.

[0040] See also Figure 4 as well as Figure 7 The rotation range of the combination of the hot plate 71 and the heat preservation plate 72 involves the main cavity and the side cavity 4.

[0041] Specifically, when the humidity in the main cavity is within the standard range, the heat plate 71 is completely located in the main cavity, and the heat preservation plate 72 acts as a barrier to separate the main cavity from the side cavity 4;

[0042] On the contrary, when the humidity in the main cavity exceeds the standard range, all the assemblies located at the junction of the main cavity and the two side cavities 4 are rotated synchronously by ninety degrees, so that the insulation plate 72 originally used to form the blocking part is completely screwed into the side cavity 4, and the hot plate 71 used to control the temperature replaces the insulation plate 72 as the blocking part. It should be noted that when the hot plate 71 replaces the insulation plate 72 as the blocking part, the heating surface of the hot plate 71 faces the side cavity 4.

[0043] This embodiment repeatedly emphasizes that the second partition plate 7 can rotate at the junction of the main cavity and the side cavity 4. Figures 1-8 , the principle of how the second partition 7 rotates at the junction is explained in detail:

[0044] First, there is a top cavity above the main cavity;

[0045] Second, the linear array includes several second baffles 7 at the junction of the main cavity and the side cavity 4 extending into the top cavity (the shaft 73 extends into the top cavity). The portion of the second baffles 7 extending into the top cavity is provided with a first roller 11. In addition, at least two or more second rollers 14 are located in the top cavity facing the several first rollers 11.

[0046] Third, a soft plate 12 is located at the junction of the main cavity and a side cavity 4 , and the soft plate 12 is wound around a plurality of first rollers 11 and at least two or more second rollers 14 ;

[0047] Fourth, a slider 16 is provided between the two soft plates 12, and the slider 16 connects the two soft plates 12. In addition, the slider 16 is driven and supported by the driving part 15. Therefore, when the slider 16 slides with the square chamber 3, the slider 16 can drive the two soft plates 12 to move synchronously, so that the several second partitions 7 of the linear array at the junction of the main cavity and the two side cavities 4 rotate synchronously.

[0048] The core of this embodiment is to eliminate condensation on the side wall of the main cavity. Therefore, multiple second partitions 7 with a ninety-degree bend angle are used to replace the whole wall panel used for the side wall of the main cavity. It is further explained that the multiple second partitions 7 are in contact end to end and are spliced together into a whole wall panel for insulation of the main cavity. In addition, because the main cavity is a closed environment with high temperature and high humidity, the surfaces of the multiple second partitions 7 located in the main cavity are prone to condensation due to the temperature difference. Therefore, all the second partitions 7 located at the junction of the main cavity and the two side cavities 4 can be rotated synchronously by ninety degrees, so that the surface originally located in the main cavity is rotated into the side cavity 4, and then combined with the dry air outside the warehouse, the condensation is quickly dissipated.

[0049] Example 2

[0050] In this embodiment, a vegetable square warehouse is proposed, please refer to Figures 1-8The vegetable square bin includes a square bin 3. Specifically, a main cavity with only one cavity opening is set in the central area of the square bin 3. In addition, side cavities 4 are set on both sides of the main cavity.

[0051] See also Figure 3-Figure 5 There is a through open area at the junction of the main cavity and the side cavity 4, and a plurality of second partitions 7 are arranged in a linear array in the open area.

[0052] For the second separator 7, Figure 8 As shown, it has a hot plate 71 that can be heated and an insulation plate 72 that forms a ninety-degree angle with the hot plate 71. In addition, there is a shaft 73 arranged at the junction of the hot plate 71 and the insulation plate 72. It is further explained that the shaft 73 penetrates into the cavity top at the junction of the main cavity and the side cavity 4, so that the combination of the hot plate 71 and the insulation plate 72 can rotate at the junction of the main cavity and the side cavity 4.

[0053] See also Figure 4 as well as Figure 7 The rotation range of the combination of the hot plate 71 and the heat preservation plate 72 involves the main cavity and the side cavity 4.

[0054] Specifically, when the humidity in the main cavity is within the standard range, the heat plate 71 is completely located in the main cavity, and the heat preservation plate 72 acts as a barrier to separate the main cavity from the side cavity 4;

[0055] On the contrary, when the humidity in the main cavity exceeds the standard range, all the assemblies located at the junction of the main cavity and the two side cavities 4 are rotated synchronously by ninety degrees, so that the insulation plate 72 originally used to form the blocking part is completely screwed into the side cavity 4, and the hot plate 71 used to control the temperature replaces the insulation plate 72 as the blocking part. It should be noted that when the hot plate 71 replaces the insulation plate 72 as the blocking part, the heating surface of the hot plate 71 faces the side cavity 4.

[0056] The principle of how the second partition 7 rotates at the junction is explained in detail:

[0057] First, there is a top cavity above the main cavity;

[0058] Second, the linear array includes several second baffles 7 at the junction of the main cavity and the side cavity 4 extending into the top cavity (the shaft 73 extends into the top cavity). The portion of the second baffles 7 extending into the top cavity is provided with a first roller 11. In addition, at least two or more second rollers 14 are located in the top cavity facing the several first rollers 11.

[0059] Third, a soft plate 12 is located at the junction of the main cavity and a side cavity 4 , and the soft plate 12 is wound around a plurality of first rollers 11 and at least two or more second rollers 14 ;

[0060] Fourth, a slider 16 is provided between the two soft plates 12, and the slider 16 connects the two soft plates 12. In addition, the slider 16 is driven and supported by the driving part 15. Therefore, when the slider 16 slides with the square chamber 3, the slider 16 can drive the two soft plates 12 to move synchronously, so that the several second partitions 7 of the linear array at the junction of the main cavity and the two side cavities 4 rotate synchronously.

[0061] This embodiment further improves the embodiment 1 in that it dissipates condensed water, removes excessive humidity in the main cavity, and maintains the temperature in the main cavity.

[0062] Specifically, a connecting portion 8 is provided on one side of the square warehouse 3, see Figure 3 The adapter 8 has an inlet 10 corresponding to one of the cavity openings of the two side cavities 4, and an outlet 9 corresponding to one of the cavity openings of the top cavity. In this way, the two side cavities 4 are connected to the top cavity through the adapter 8.

[0063] See also Figure 5 In the enlarged figure, there is a through overflow 18 at the junction of the main cavity and the top cavity. Correspondingly, an interface 17 is set at the slider 16, which is either coincident with or offset from the overflow 18. In this way, it can be determined that when the overflow 18 and the interface 17 coincide with each other, the main cavity and the top cavity are connected. On the contrary, when the overflow 18 and the interface 17 are offset (completely offset), the main cavity and the top cavity are closed.

[0064] Further explanation, combined with the above content, when the interface 17 coincides with the overflow 18, the hot plate 71 replaces the insulation plate 72 as a blocking part, and the heating surface of the hot plate 71 faces the side cavity 4; on the contrary, when the overflow 18 and the interface 17 are staggered, the hot plate 71 is completely located in the main cavity, and the insulation plate 72 acts as a blocking part to separate the main cavity from the side cavity.

[0065] See also Figure 3 and Figure 4 The soft board 12 has a first through-hole 13 and a second through-hole 19 diagonally opposite to the first through-hole 13. When the interface 17 and the overflow 18 coincide with each other, the second through-hole 19 is exposed at the top cavity opening. When the interface 17 and the overflow 18 are misaligned, the second through-hole 19 is completely covered by the side wall of the top cavity.

[0066] After sunlight shines on the warehouse body, the temperature and humidity in the main cavity rise. For this reason, the driving part 15 is combined to drive the slider 16 to slide so that the interface 17 set at the slider 16 coincides with the overflow 18. In addition, the slider 16 is combined to drive the soft plate 12 so that all the second partitions 7 are reversed at the junction of the main cavity and the side cavity 4, that is, the surface of the second partition 7 in the main cavity is facing the side cavity 4, and combined with the air discharged from the overflow 18 (compared to the hot air in the external environment), the air in the side cavity 4 is guided from the adapter 8 into the top cavity. During this period, because the hot plate 71 is located in the side cavity 4, the hot plate 71 heats the air in the side cavity 4, so that the air entering the top cavity from the adapter 8 is dried, and the air has a certain temperature, and brings corresponding airflow rising force.

[0067] Further explanation: the process of dehumidification of the main chamber is the process of the second partition 7 dissipating condensed water, and also the process of the second partition 7 heating and drying the air entering the side chamber 4. In addition, for how to guide the air in the top chamber to be discharged outward, please refer to Figure 3 and Figure 4 , and Figure 7 For reference, in the figure, when the interface 17 and the overflow port 18 are overlapped, the second through-port 19 is exposed from the top cavity opening, so that the air in the top cavity can be discharged outward through the passage formed by the first through-port 13 and the second through-port 19.

[0068] After the air in the main cavity enters the top cavity through the overflow 18, the temperature therein tends to decrease. In this regard, corresponding insulation measures are taken to maintain the temperature. First, although the hot plate 71 faces the side cavity 4, the process of the hot plate 71 heating the air in the side cavity 4 can form a warm wall with a heating function on both sides of the main cavity, thereby suppressing the temperature drop in the main cavity. Second, the hot air entering the top cavity from the side cavity 4 forms a warm wall at the top of the main cavity with the same effect as on both sides of the main cavity, further suppressing the temperature drop in the main cavity.

[0069] Example 3

[0070] This embodiment further improves upon embodiment 2. Specifically, two first baffles 2 are provided opposite to the adapter portion 8, and the two first baffles 2 are respectively provided at the other two cavity openings of the two side cavities 4. In addition, a second transfer wheel 6 in rolling contact with the soft plate 12 is provided in the top cavity, as well as a first transfer wheel 1 in rolling contact with the second transfer wheel 6. It should be noted that the first transfer wheel 1 extends downward into the side cavity 4 and is combined with the first baffle 2, so that when the slider 16 drives the two soft plates 12 to move synchronously, the two first baffles 2 are caused to rotate axially in the corresponding side cavity 4.

[0071] To further illustrate, when the interface 17 and the overflow 18 coincide with each other, the first partition 2 is misaligned with the cavity opening of the side cavity 4 ; when the interface 17 and the overflow 18 are misaligned, the first partition 2 is blocked at the cavity opening of the side cavity 4 .

[0072] See also Figure 1-Figure 3 In Example 1, Example 2 and Example 3, a door 5 is provided at the only cavity opening of the main cavity.

[0073] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Furthermore, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.

[0074] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely preferred examples of the present invention and are not intended to limit the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. Vegetable square warehouse, characterized by: include: Square warehouse, with a main cavity in the center and side cavities on both sides of the main cavity; Second baffles, a plurality of second baffles with a ninety-degree bend angle are arranged in a straight line array at the junction of the main cavity and the side cavity; The second partition has a heating portion; The rotation range of the second partition involves the main chamber and the side chamber. When the humidity in the main chamber is within the standard range, the heating unit is located in the main chamber. On the contrary, when the humidity in the main chamber exceeds the standard range, all the second partitions located at the junction of the main chamber and the two side chambers are rotated synchronously by 90 degrees, so that the second partitions are located on the inner surface of the main chamber and rotated into the side chamber together with the heating unit. Above the main cavity is a top cavity, which is connected to the two side cavities by a connecting portion located at the opening of the side cavity; The plurality of second partitions at the junction of the main cavity and the side cavity of the linear array extend into the top cavity, wherein the portion of the second partition extending into the top cavity is provided with a first roller, and in addition, at least two or more second rollers are directly opposite to the plurality of first rollers in the top cavity; A soft plate corresponds to the junction of the main cavity and a side cavity, and the soft plate is wound around a plurality of first rollers and at least two or more second rollers; A slider is provided between the two soft plates, connecting the two soft plates. When the slider slides with the square chamber, it drives the two soft plates to move synchronously, so that the second partitions of the linear array at the junction of the main cavity and the two side cavities rotate synchronously. The top of the main cavity is provided with an overflow port, wherein the overflow port is either coincident with the interface or misaligned with the interface when the slider and the square bin are in sliding engagement; When the interface and the overflow are coincident, the heating part is located in the side cavity; when the interface and the overflow are misaligned, the heating part is located in the main cavity.

2. The vegetable cube according to claim 1, characterized in that: The soft board has a first through-hole and a second through-hole diagonally opposite to the first through-hole, wherein when the interface coincides with the overflow, the second through-hole is exposed at the top cavity opening; when the interface and the overflow are misaligned, the second through-hole is completely covered by the side wall of the top cavity.

3. The vegetable cube according to any one of claims 1-2, characterized in that: The utility model also includes a driving portion for driving the slider to slide in the top cavity.

4. The vegetable cube according to claim 1, characterized in that: The second partition includes a hot plate and a heat preservation plate forming a ninety-degree angle with the hot plate, and also includes a shaft, which is located at the junction of the hot plate and the heat preservation plate and extends upward to the top cavity to connect with the first roller.

5. The vegetable cube according to claim 2, characterized in that: It also includes two first baffles opposite to the transition portion, the two first baffles being respectively arranged at the cavity openings of the two side cavities; There is also a second transfer wheel in rolling contact with the soft plate in the top cavity, and a first transfer wheel in rolling contact with the second transfer wheel. The first transfer wheel extends downward into the side cavity and is combined with the first partition plate. When the slider drives the two soft plates to move synchronously, the two first partition plates rotate axially in the corresponding side cavity.

6. The vegetable cube according to claim 5, characterized in that: When the interface and the overflow port coincide with each other, the first partition plate is misaligned with the cavity port of the side cavity; when the interface and the overflow port are misaligned, the first partition plate is blocked at the cavity port of the side cavity.

Citation Information

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