Livestock barn ventilation system
The ventilation system addresses odor and dust issues by using treatment vessels with water and deodorizing agents, ensuring efficient air purification and temperature control, enhancing both livestock and residential environments.
Patent Information
- Application Number
- JP2024045110
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-03-21
- Publication Date
- 2025-10-03
AI Technical Summary
Conventional livestock barn ventilation systems effectively reduce dust and noise but fail to address odor removal, and they require cumbersome maintenance due to high-located dust removal nets.
A ventilation system with treatment vessels that use water and a deodorizing agent to separate dust and neutralize odors, incorporating a circulating water system and a deodorizing agent sprayer to purify air, and a control device for adjusting airflow.
Efficiently removes dust and odors, maintains indoor air quality, and regulates temperature, improving both livestock rearing conditions and the living environment near the barn.
Smart Images

Figure 2025145099000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a livestock house ventilation system for ventilating the inside of a livestock house in which livestock are raised. [Background technology]
[0002] Traditionally, livestock barns for raising livestock are equipped with ventilation equipment. For example, chicken coops for raising chickens are often equipped with a longitudinal ventilation system. This longitudinal ventilation system ventilates the coop by taking in outside air through an air inlet on one end of the coop, flowing it longitudinally through an exhaust fan attached to an exhaust outlet on the other end, and discharging it outside the coop through the exhaust outlet. Various improvements have been made to solve the problems with such ventilation systems (see, for example, Patent Document 1). Patent Document 1 discloses a ventilation system that can reduce dust and noise emitted with exhaust.
[0003] The ventilation system in Patent Document 1 forms a buffer chamber by surrounding the front and both front side faces of the gable end of a poultry house equipped with an exhaust fan with three nearly vertical walls, and at least one-third of the roof-equivalent portion of the buffer chamber is closed with a closing member. A chimney-shaped enclosure is attached to the roof-equivalent portion of the buffer chamber, and a mesh for capturing exhaust dust is attached horizontally to the opening of the chimney-shaped enclosure. Dust contained in the exhaust air discharged from the exhaust fan outside the poultry house collides with the walls of the buffer chamber and falls to the bottom of the buffer chamber. The mesh also enhances the dust capturing effect in the exhaust air. This reduces the amount of dust released and dispersed into the air above through the opening in the buffer chamber roof, as well as noise. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Application Publication No. 10-117624 Summary of the Invention [Problem to be solved by the invention]
[0005] However, while conventional ventilation systems such as those described in Patent Document 1 were able to reduce the amount of dust and noise to a certain extent, they did not take into consideration the removal of odors contained in the exhaust air discharged outside the poultry house. Chicken excrement and urine can produce strong odors in poultry houses, and if these odors escape outside the house untreated, they can have a negative impact on the living environment of residents living near the poultry house. Furthermore, the ventilation system described in Patent Document 1 uses a net to remove fine dust, but it had to be periodically cleared of blockages. Because the net was located high in the poultry house, clearing the blockages was a cumbersome process.
[0006] The present invention has been made in consideration of the above-mentioned circumstances, and its object is to provide a livestock house ventilation system that can efficiently deodorize and remove dust so that odors and dust are not contained in the exhaust gas discharged outside the livestock house. [Means for solving the problem]
[0007] The inventions disclosed in this specification to solve the above-mentioned problems are configured as follows: That is, a first invention is characterized by comprising a treatment vessel having a water receiving section at a bottom, a sidewall opening above the water receiving section, and an upper-end opening above the sidewall opening, a sprinkler nozzle section provided inside the treatment vessel at a height position between the sidewall opening and the upper-end opening, a treatment vessel exhaust fan provided at the upper-end opening and generating an air flow that takes in air from inside the livestock barn through the sidewall opening and exhausts it from the upper-end opening, a pumping pump that pumps up treatment water and sprinkles it downward toward the water receiving section from the sprinkler nozzle section, a duct connected to the upper-end opening, and a deodorizing agent sprayer that sprays a liquid deodorizing agent inside the duct.
[0008] According to the first aspect of the present invention, the dirty air in the livestock barn is drawn into the treatment vessel through the sidewall opening by driving the treatment vessel exhaust fan. The dirty air in the livestock barn contains floating dust from livestock feed, feathers, and the like, and this dust is drawn into the treatment vessel along with the air. After being drawn into the treatment vessel, the dirty air is directed toward the top opening of the treatment vessel. The dust in the air is captured by treatment water sprayed downward from the spray nozzle and falls into the water receiving section at the bottom of the treatment vessel. This separates the dust in the dirty air and treats it as impurities in the treatment vessel. Furthermore, because the dust can be separated by dropping into the water receiving section, the problem of clogging of the dust-removal screen, as occurs in conventional ventilation systems, is eliminated. This allows for efficient dust removal.
[0009] Furthermore, the air taken into the treatment vessel through the side wall opening exchanges heat with the treatment water sprayed from the sprinkler nozzles as it moves upward to the upper end opening. This allows the temperature of the air taken into the treatment vessel to be adjusted. In particular, in the summer, when the air inside the livestock barn tends to become hot, the air temperature can be effectively lowered by exchanging heat between the low-temperature treatment water sprayed from the sprinkler nozzles and the air inside the barn.
[0010] Furthermore, the liquid deodorizer sprayed into the duct breaks down malodorous components such as ammonia in the air discharged from the treatment vessel into the duct, eliminating the odor. This prevents dust and malodor from being scattered outside the livestock barn when the air is discharged from the duct. This improves the living environment for residents living near the barn compared to conventional systems.
[0011] The second invention is characterized in that, in the first invention, the deodorizing agent spray device has a spray nozzle, and the spray nozzle is provided in a position near the top of the exhaust fan for the treatment vessel.
[0012] According to the second invention, by utilizing the movement of the exhaust fan for the treatment container, the liquid deodorizer sprayed from the spray nozzle can be easily mixed with the air discharged from inside the treatment container, thereby enabling efficient deodorization of the air inside the duct.
[0013] The third invention is characterized in that, in the second invention, the exhaust fan for the treatment vessel has a blade portion that rotates around an upper and lower axis to generate a swirling flow, and the spray nozzle is configured to spray the liquid deodorizer toward the center of rotation of the exhaust fan for the treatment vessel.
[0014] According to the third aspect of the present invention, the rotation of the blades of the exhaust fan for the treatment vessel generates a swirling flow, and the liquid deodorizer is sprayed directly toward the area where turbulence is also occurring, which further promotes mixing of the air exhausted from the inside of the treatment vessel with the atomized or evaporated liquid deodorizer, thereby further improving the deodorizing effect.
[0015] The fourth invention is characterized in that, in the third invention, the pumping pump is disposed in a water tank for storing the treatment water discharged from the water receiving section to the outside of the treatment container, and a screening device is disposed in the water tank for separating impurities contained in the treatment water from the treatment water and removing them to the outside.
[0016] According to the fourth aspect of the present invention, the treatment water sprayed from the spray nozzle unit and falling into the receiving section is pumped up to the spray nozzle unit by the pumping pump and sprayed again from the spray nozzle unit. In other words, the treatment water is circulated and reused. This allows the treatment water to be used efficiently. Furthermore, impurities that accumulate in the receiving section of the treatment vessel move to the storage tank along with the treatment water, where they float or settle. The screening device can automatically separate these impurities from the treatment water and remove them to the outside. This prevents impurities from being contained in the treatment water pumped from the storage tank by the pumping pump, thereby maintaining the dust capture capacity of the treatment water sprayed from the spray nozzle unit at an appropriate level.
[0017] The fifth invention is characterized in that, in any one of the first to fourth inventions, the duct covers the upper end opening and comprises a deodorizing and purifying section that applies the liquid deodorizer sprayed by the deodorizer spraying device to the air discharged from inside the treatment container, and an air supply flow path for returning the air deodorized in the deodorizing and purifying section to the inside of the livestock house, and is configured to circulate air between the inside of the livestock house and the treatment container and the deodorizing and purifying section while removing dust and deodorizing.
[0018] According to the fifth aspect of the present invention, the air inside the livestock barn is circulated while dust removal and deodorization are performed, thereby reducing the amount of outside air taken in from the outside while maintaining clean air inside the livestock barn. This virtually eliminates the need to take in hot outside air in the summer or cold outside air in the winter from outside the livestock barn, allowing the temperature inside the livestock barn to be maintained constant. This allows a good rearing environment for livestock raised inside the livestock barn to be maintained. Furthermore, since the air inside the livestock barn is prevented from being discharged outdoors, the living environment for residents living near the livestock barn can be improved.
[0019] The sixth invention is characterized in that, in the fifth invention, a control device is provided for controlling the drive of the exhaust fan for the treatment vessel, and the control device is configured to adjust the flow rate of air circulated between the inside of the livestock house and the treatment vessel and the deodorizing and purifying section by controlling the exhaust fan for the treatment vessel.
[0020] According to the sixth aspect of the present invention, dust removal, deodorization, and temperature regulation inside the livestock barn can be performed in a well-balanced manner according to the increase or decrease in the number of livestock being raised, the season, etc. [Effects of the Invention]
[0021] According to the livestock house ventilation system of the present invention, deodorization and dust removal can be performed efficiently so that odors and dust are not contained in the exhaust air discharged outside the livestock house. [Brief explanation of the drawings]
[0022] [Figure 1] 1 is a plan cross-sectional view of a livestock house equipped with a livestock house ventilation system according to one embodiment of the present invention. [Figure 2] 1 is a side cross-sectional view of a main part of a livestock house ventilation system according to one embodiment of the present invention. [Figure 3] FIG. 1 is a cross-sectional plan view of a main part of a livestock house ventilation system according to one embodiment of the present invention. [Figure 4] 10 is a plan view of a main part for explaining the arrangement and operation of a spray nozzle of a deodorizing agent spraying device relative to an exhaust fan for a treatment vessel. FIG. [Figure 5] 1 is a control block diagram of a livestock house ventilation system according to an embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION
[0023] Hereinafter, embodiments of the present invention will be described with reference to the drawings.
[0024] FIG. 1 is a plan cross-sectional view of a livestock house 90 equipped with a livestock house ventilation system 1 according to one embodiment of the present invention. FIG. 2 is a side cross-sectional view of a main portion of the livestock house ventilation system 1. FIG. 3 is a plan cross-sectional view of a main portion of the livestock house ventilation system 1. The livestock house ventilation system 1 of this embodiment is applied as a ventilation system for longitudinal ventilation in a poultry house. As shown in FIG. 1, the livestock house (chicken house) 90 is formed in an elongated rectangular shape when viewed from above. The longitudinal end of the livestock house 90 is the gable side. An entrance / exit 93 and an air inlet 92 with an opening / closing function are provided on one end-side first side wall 90a of the livestock house 90. Furthermore, a plurality of livestock house-side exhaust fans 91 are provided on the other end-side second side wall 90b of the livestock house 90.
[0025] The entrance / exit 93 is provided for workers to enter and exit the livestock barn 90. The entrance / exit 93 is configured to be openable and closable with a shutter (not shown). The openable / closable air inlet 92 is provided to take in outside air from outside the livestock barn 90 into the inside of the livestock barn 90. The openable / closable air inlet 92 has movable louvers that rotate, for example, vertically. The opening and closing and the amount of outside air taken in can be adjusted by changing the angle of the louvers. The livestock barn-side exhaust fan 91 has blades that rotate around a horizontal axis. The livestock barn-side exhaust fan 91 has the function of exhausting air from the livestock barn interior space S2 to the outside of the gable-side second side wall 90b. This embodiment shows an example in which the livestock barn ventilation system 1 is retrofitted to an existing livestock barn 90. The livestock barn-side exhaust fan 91 was provided in the existing livestock barn 90 to exhaust air from the livestock barn interior space S2 to the outside. The livestock house ventilation system 1 does not necessarily require the livestock house-side exhaust fan 91. In this embodiment, the livestock house-side exhaust fan 91 that was installed in the existing livestock house 90 remains. However, when the livestock house ventilation system 1 is installed, the dust removal net that was attached to the livestock house-side exhaust fan 91 is removed. This is because the livestock house ventilation system 1 can remove dust.
[0026] A plurality of chicken breeding cages 94 are installed in the livestock house space S2. The plurality of breeding cages 94 are arranged parallel to each other and extending along the longitudinal direction of the livestock house 90.
[0027] As shown in Figures 1 to 3, the livestock house ventilation system 1 of this embodiment includes a main section S1 adjacent to the outside of the second side wall 90b on the gable side of the livestock house 90. The main section S1 is covered by a surrounding side wall 1a and a roof 1c. The main section S1 is equipped with main devices for removing dust such as feed and feathers contained in the polluted air in the livestock house interior space S2, and for deodorizing and sterilizing the air.
[0028] Specifically, the livestock barn ventilation system 1 comprises a plurality of treatment vessels 2 each having a side wall opening 22 and an upper end opening 23, a sprinkler nozzle section 3 provided inside each treatment vessel 2, a treatment vessel exhaust fan 4 provided at the upper end opening 23 of each treatment vessel 2, a pumping pump 5 for supplying treatment water to the sprinkler nozzle sections 3 of all treatment vessels 2, a duct 14 connected to the upper end openings 23 of all treatment vessels 2, and a deodorizing agent spray device 61.
[0029] The treatment vessels 2 are formed in a shape that extends upward from the bottom in a substantially cylindrical shape. In this embodiment, three treatment vessels 2 are arranged side by side in the longitudinal direction of the livestock house 90 in the main section S1. Six treatment vessels 2 are arranged side by side in the lateral direction of the livestock house 90 in the main section S1. That is, a total of 18 treatment vessels 2 in this embodiment are arranged side by side in the main section S1.
[0030] As shown in FIG. 2 , the treatment vessel 2 has a water receiving section 21 at its bottom. The sidewall openings 22 are provided above the water receiving section 21. The sidewall openings 22 are multiple slits provided on the outer periphery of the treatment vessel 2. The sidewall openings 22 are provided to take contaminated air from the livestock house space S2, which is guided to the main section S1 by the livestock house-side exhaust fan 91, into the treatment vessel 2. The sprinkler nozzle unit 3 is provided at a height position between the sidewall openings 22 and the upper end opening 23. The sprinkler nozzle unit 3 is configured, for example, to be arranged radially from the center to the periphery of the treatment vessel 2, thereby spraying treatment water over the entire horizontal cross-section of the treatment vessel 2. The sprinkler nozzle unit 3 sprays treatment water downward toward the water receiving section 21. The water sprayed from the sprinkler nozzle unit 3 acts to cause dust in the air taken in through the sidewall openings 22 to fall into the water receiving section 21. In this embodiment, the internal space of the treatment vessel 2 between the sprinkler nozzle unit 3 and the water receiving unit 21 below it is hollow. In other words, no components are disposed therein. This structure prevents the problem of dust clogging between the sprinkler nozzle unit 3 and the water receiving unit 21, even if a large amount of dust is taken into the treatment vessel 2 through the side wall opening 22.
[0031] The treatment vessel exhaust fan 4 generates an airflow that takes in air from the inside of the livestock barn 90 through the sidewall opening 22 and exhausts it through the top-end opening 23. The treatment vessel exhaust fan 4 has a blade unit 4b that rotates around a vertical axis to generate a swirling airflow, and a motor unit 4a that rotates the blade unit 4b. The air taken into the treatment vessel 2 through the sidewall opening 22 has dust removed by treatment water sprayed from the sprinkler nozzle unit 3 on its way to the top-end opening 23. The temperature of the air is also adjusted by heat exchange with the treatment water. Specifically, in summer, high-temperature air is taken into the treatment vessel 2 through the sidewall opening 22, but the temperature of the taken-in air is lowered by heat exchange with the treatment water inside the treatment vessel 2.
[0032] Inside the treatment vessel 2, a fall prevention member 16 is disposed between the spray nozzle unit 3 and the treatment vessel exhaust fan 4. The fall prevention member 16 is formed, for example, in a mesh shape, and is provided to prevent any object that has fallen from above the upper end opening 23 from falling down to the water receiving unit 21. Note that, since dust has already been removed from the air that flows above the spray nozzle unit 3, there is no risk of dust clogging the fall prevention member 16.
[0033] Dust particles that have fallen due to the action of the treatment water sprayed from the spray nozzle unit 3 are stored as impurities in the water receiving unit 21 of the treatment vessel 2. The livestock house ventilation system 1 has a function to treat this impurities so that they do not accumulate too much in the water receiving unit 21. Specifically, the livestock house ventilation system 1 includes a water storage tank 7 in which a pumping pump 5 is disposed and which stores the treatment water discharged from the water receiving unit 21 to the outside of the treatment vessel 2, and a screen device 8 disposed in the water storage tank 7 and which separates impurities contained in the treatment water from the treatment water and removes them to the outside.
[0034] The water tank 7 includes a first water tank 71, a second water tank 72, and a third water tank 73. The first water tank 71 is located below the bottom of the treatment vessel 2. In this embodiment, the first water tank 71 is located below the ground surface G. The first water tank 71 is connected to the water receiving sections 21 of all the treatment vessels 2 by transfer pipes 11. A screening device 8 is provided in the first water tank 71. The screening device 8 is provided to separate impurities contained in the treatment water from the treatment water and remove them to the outside. The screening device 8 has an impurity intake port 8b that opens into the treatment water stored in the first water tank 71. The impurity intake port 8b is provided at the lower end of the screening device 8. The screening device 8 also includes a conveyor unit 8a for transporting impurities diagonally upward from the impurity intake port 8b. An impurity discharge port 8c is provided at the upper end of the screening device 8. The impurity discharge port 8c is exposed to the outside of the side wall 1a that surrounds the main section S1. The impurities discharged from the impurity discharge port 8c are collected by a cart C and treated at another location.
[0035] The second water tank 72 is provided adjacent to the first water tank 71. The second water tank 72 is provided at a lower position than the first water tank 71. Treatment water from which most of the impurities have been removed flows into the second water tank 72 from the first water tank 71 through the inter-tank transfer pipe 15. In the second water tank 72, some of the impurities that could not be completely removed in the first water tank 71 are removed by settling.
[0036] The third water tank 73 is provided adjacent to the second water tank 72. Only the supernatant portion of the treatment water from the second water tank 72 is stored in the third water tank 73. A pumping pump 5 is disposed in the third water tank 73. The pumping pump 5 is connected to the spray nozzle unit 3 by a water supply pipe 51. The treatment water stored in the third water tank 73 is pumped up by the pumping pump 5 and supplied to the spray nozzle unit 3 through the water supply pipe 51. The treatment water that has been sprayed from the spray nozzle unit 3 and dropped into the water receiving unit 21 has impurities removed in the water tank 7, and then is pumped up to the spray nozzle unit 3 by the pumping pump 5 and sprayed from the spray nozzle unit 3 again. In other words, the treatment water is configured to be circulated and reused repeatedly.
[0037] As described above, the treatment water is circulated and reused repeatedly, but as it circulates, some of it evaporates, gradually reducing the total volume. Therefore, water is replenished as needed to restore the total volume. Water is replenished through a water supply pipe 12. The downstream end of the water supply pipe 12 is disposed at a height slightly higher than the water receiving section 21 of each treatment vessel 2. An electrically operated water supply valve 121 is provided midway along the water supply pipe 12. The water supply valve 121 is opened when water is replenished to the water receiving section 21. It is also preferable to provide a treatment water buffer tank (not shown) to suppress fluctuations due to evaporation of the treatment water in the water receiving section 21. Furthermore, wastewater generated throughout the livestock barn 90 may be used as make-up water. In this way, the wastewater generated in the livestock barn 90 can be subjected to evaporation treatment.
[0038] The deodorizer sprayer 61 is a device that sprays a liquid deodorizer inside the duct 14. In this embodiment, hypochlorous acid water is used as the liquid deodorizer. The deodorizer sprayer 61 includes a deodorizer storage unit 611, a deodorizer supply pump 612, a supply amount adjustment valve 613, and a plurality of spray nozzles 614. The deodorizer storage unit 611 is a container for storing hypochlorous acid water. The deodorizer storage unit 611 may include a hypochlorous acid water generator.
[0039] FIG. 4 is a plan view of a main part for explaining the arrangement and operation of the spray nozzles 614 of the deodorizing agent sprayer 61 relative to the treatment-vessel exhaust fan 4. As shown in FIGS. 2 and 4, a pair of spray nozzles 614 is provided for each treatment vessel 2. Specifically, the pair of spray nozzles 614 is attached to the upper end opening 23 of each treatment vessel 2 via a bracket 615 (see FIG. 4). The pair of spray nozzles 614, 614 is provided in a position near the upper part of the treatment-vessel exhaust fan 4. As shown in FIG. 4, the pair of spray nozzles 614, 614 is configured to spray hypochlorous acid water toward the rotation center O of the treatment-vessel exhaust fan 4. The treatment-vessel exhaust fan 4 generates a swirling flow (in the direction of arrow A in FIG. 4) by the rotation of the blade portion 4b. Turbulence also occurs near the blade portion 4b. The pair of spray nozzles 614, 614 sprays hypochlorous acid water toward this area.
[0040] As shown in Fig. 2, all of the spray nozzles 614 provided corresponding to the multiple treatment containers 2 are connected to the deodorizer storage unit 611 by a deodorizer supply flow path 61a. A deodorizer supply pump 612 and a supply amount adjustment valve 613 are provided in the middle of the deodorizer supply flow path 61a. The deodorizer supply pump 612 generates a flow for supplying the hypochlorite water stored in the deodorizer storage unit 611 to the spray nozzle 614. The supply amount adjustment valve 613 is disposed between the spray nozzle 614 and the deodorizer supply pump 612. The supply amount adjustment valve 613 is electrically operated and adjusts the amount of hypochlorite sprayed from the spray nozzle 614.
[0041] The duct 14 includes a deodorizing and purifying section 141 and an air supply passage 142. As shown in FIGS. 2 and 3 , the deodorizing and purifying section 141 is formed in a box shape whose horizontal dimension is several times larger than its vertical dimension. The deodorizing and purifying section 141 is disposed so as to cover the upper end openings 23 of all of the treatment vessels 2 from above. The bottom surface of the deodorizing and purifying section 141 is connected to all of the upper end openings 23. That is, air discharged from the interiors of all of the treatment vessels 2 enters the deodorizing and purifying section 141. Spray nozzles 614 are disposed inside the deodorizing and purifying section 141 in correspondence with the upper end openings 23 of each treatment vessel 2.
[0042] Inside the deodorizing and purifying unit 141, hypochlorous acid water sprayed by the spray nozzle 614 acts on the air discharged from the treatment vessel 2. This deodorizes and sterilizes ammonia and bacteria floating in the air. The deodorizing and purifying unit 141 is connected to one surface of the side wall 1a that surrounds the main compartment S1. An exhaust port 146 with an opening / closing function is provided at this connection. By opening the exhaust port 146 with an opening / closing function, the air that has been deodorized and sterilized in the deodorizing and purifying unit 141 can be discharged to the outdoors. In this embodiment, the exhaust port 146 with an opening / closing function has a movable louver that rotates vertically. The opening / closing function and the amount of air discharged can be adjusted by changing the angle of the louver.
[0043] In the livestock housing ventilation system 1 of this embodiment, the dirty air inside the livestock housing 90 is purified by removing dust in the treatment container 2 and deodorizing and sterilizing it in the deodorizing and purifying unit 141. The dirty air inside the livestock housing 90 is also subjected to heat exchange with treatment water sprayed inside the treatment container 2, thereby producing temperature-controlled air. The livestock housing ventilation system 1 of this embodiment is capable of returning the air thus purified and temperature-controlled by the treatment container 2 and the deodorizing and purifying unit 141 to the inside of the livestock housing 90 through the air supply flow path 142. As shown in FIGS. 1 and 2 , the air supply flow path 142 has a main pipe 143 and multiple secondary pipes 144. One end of the main pipe 143 is connected to the center of the top surface of the deodorizing and purifying unit 141. The main pipe 143 extends horizontally from above the deodorizing and purifying unit 141 through the second end wall 90b of the livestock housing 90 in the longitudinal direction of the livestock housing 90. The other end of the main pipe portion 143 is located near the first end wall 90 a of the livestock house 90 .
[0044] The main pipe 143 is disposed so that its entire length passes through a height position near the ceiling of the livestock house 90. The main pipe 143 is also disposed in the center of the livestock house 90 in the short side direction. A plurality of secondary pipes 144 are connected to the main pipe 143 at predetermined intervals along the longitudinal direction of the main pipe 143. Each secondary pipe 144 extends horizontally from the main pipe 143 outward in the short side direction of the livestock house 90. Each secondary pipe 144 is provided with a plurality of air supply ports 145. Each air supply port 145 is directed downward toward the rearing cages 94. Each air supply port 145 is also directed slightly toward the livestock house-side exhaust fan 91. Air that has been cleaned and temperature-adjusted in the treatment container 2 and the deodorizing and purifying section 141 passes through the main pipe 143 and secondary pipe 144, and is sent from the air supply ports 145 to the livestock house interior space S2. In this embodiment, the air flow in the air supply flow path 142 is generated by the driving force of the processing vessel exhaust fan 4. Note that a separate air supply fan may be provided inside the air supply flow path 142.
[0045] FIG. 5 is a control block diagram of a livestock house ventilation system 1 according to one embodiment of the present invention. As shown in FIG. 5, the livestock house ventilation system 1 of this embodiment includes a control device 1b for air conditioning the livestock house space S2. The control device 1b is electrically connected to the open / close air inlet 92, the livestock house-side exhaust fan 91, the livestock house situation detection sensor 95, the treatment container exhaust fan 4, the open / close exhaust port 146, the water supply valve 121, the pumping pump 5, the deodorizer supply pump 612, the supply amount adjustment valve 613, and the screen device 8. The control device 1b optimally controls the operation of each device according to the situation of the livestock house space S2 acquired by the livestock house situation detection sensor 95. The livestock house situation detection sensor 95 is disposed in the livestock house space S2. The livestock house situation detection sensor 95 is configured to acquire the temperature, humidity, oxygen concentration, and the like of the livestock house space S2.
[0046] When taking in outside air into the livestock house space S2 and actively purifying the polluted air in the livestock house space S2 and discharging it outside the livestock house 90, the control device 1b opens the air inlet port 92 with opening / closing function and the exhaust port 146 with opening / closing function. Then, the control device 1b drives the livestock house-side exhaust fan 91, the treatment container exhaust fan 4, the pumping pump 5, and the deodorizing agent supply pump 612. By operating them in this manner, fresh air is introduced into the livestock house space S2 through the air inlet port 92 with opening / closing function.
[0047] The dirty air in the barn space S2 moves from the barn space S2 to the main section S1 by driving the barn-side exhaust fan 91. In the main section S1, the dirty air enters the treatment vessels 2 through the sidewall openings 22 of the treatment vessels 2 by driving the treatment vessel exhaust fan 4. Inside the treatment vessels 2, dust such as feathers and feed is separated from the dirty air by spraying treatment water from the sprinkler nozzle unit 3. The dust-free air is discharged from the upper opening 23 to the deodorizing and purifying unit 141, where it is deodorized and sterilized by hypochlorous acid water sprayed from the spray nozzle 614. The clean air after deodorization and sterilization is exhausted to the outdoors through the open / close exhaust port 146 located at one end of the deodorizing and sterilizing unit 141. Inside the treatment vessels 2, the dust separated by the water sprayed from the sprinkler nozzle unit 3 accumulates in the water receiving unit 21 as impurities. The water containing the impurities is sent from the water receiving section 21 to the water tank 7. When a certain amount of impurities accumulates in the water tank 7, the screen device 8 is driven to separate and remove the impurities.
[0048] On the other hand, when the outside air temperature outside the livestock barn 90 is extremely high or low compared to the optimum temperature for raising livestock, it may be better not to introduce outside air into the livestock barn space S2 in order to maintain a constant temperature. In this case, air in the livestock barn space S2 is circulated between the livestock barn space S2 and the treatment container 2 and deodorizing and purifying unit 141 while removing dust and deodorizing. Specifically, the control device 1b closes the open / close air inlet 92 and the open / close exhaust port 146. The control device 1b then drives the barn-side exhaust fan 91, the treatment container exhaust fan 4, the pumping pump 5, and the deodorizer supply pump 612. Driving the barn-side exhaust fan 91 moves contaminated air from the livestock barn space S2 to the main section S1. Driving the treatment container exhaust fan 4 in the main section S1 allows contaminated air to enter the treatment container 2 through the sidewall openings 22. Inside the treatment vessel 2, dust particles such as feathers and feed are separated from the contaminated air by spraying treatment water from the spray nozzle section 3. The air from which the dust has been removed is discharged from the upper end opening 23 to the deodorizing and purifying section 141, where hypochlorous acid water sprayed from the spray nozzle 614 deodorizes and sterilizes ammonia and bacteria floating in the air.
[0049] The clean air after deodorization and sterilization is returned from the deodorizing and purifying unit 141 to the barn space S2 of the barn 90 through the air supply channel 142. At this time, the flow rate of air sent from the air outlet 145 of the air supply channel 142 to the barn space S2 is adjusted based on the temperature, humidity, and oxygen concentration of the barn space S2 acquired by the barn situation sensor 95. The air flow rate can be adjusted by controlling the drive of the treatment vessel exhaust fan 4. Specifically, the control device 1b adjusts the rotation speed of the blades 4b by inverter-controlling the motor 4a of the treatment vessel exhaust fan 4. The air flow rate can be increased by increasing the rotation speed of the blades 4b. Conversely, the air flow rate can be decreased by decreasing the rotation speed of the blades 4b.
[0050] In this embodiment, 18 treatment vessels 2 are provided, and accordingly, a total of 18 treatment vessel exhaust fans 4 are also provided. The control device 1b may vary the overall flow rate of air passing through the air supply passage 142 by setting some of the 18 treatment vessel exhaust fans 4 to a low rotation speed and the others to a high rotation speed. The control device 1b may also vary the overall flow rate of air passing through the air supply passage 142 by stopping some of the 18 treatment vessel exhaust fans 4 and driving the others. In this way, the control device 1b controls the treatment vessel exhaust fans 4 to adjust the flow rate of air circulated between the interior of the livestock house 90 and the treatment vessels 2 and the deodorizing and purifying unit 141. Furthermore, the temperature of the air inside the treatment vessel 2 is adjusted by heat exchange with the treatment water. This allows the air temperature in the livestock house space S2 to be maintained constant.
[0051] As described above, the livestock barn ventilation system 1 of this embodiment comprises a treatment vessel 2 having a water receiving section 21 at the bottom, a side wall opening 22 above the water receiving section 21, and an upper end opening 23 above the side wall opening 22; a sprinkler nozzle section 3 provided inside the treatment vessel 2 at a height position between the side wall opening 22 and the upper end opening 23; a treatment vessel exhaust fan 4 provided at the upper end opening 23 and generating an air flow that takes in air from the inside of the livestock barn 90 through the side wall opening 22 and exhausts it from the upper end opening 23; a pumping pump 5 that pumps up treatment water and sprays it downward from the sprinkler nozzle section 3 toward the water receiving section 21; a duct 14 connected to the upper end opening 23; and a deodorizer spray device 61 that sprays hypochlorous acid water as a liquid deodorizer inside the duct 14.
[0052] According to the above configuration, by driving the treatment vessel exhaust fan 4, the dirty air in the livestock barn 90 is drawn into the treatment vessel 2 through the sidewall opening 22 of the treatment vessel 2. The dirty air in the livestock barn 90 contains floating dust from livestock feed, feathers, etc., and this dust is drawn into the treatment vessel 2 along with the air. After being drawn into the treatment vessel 2, the dirty air is directed toward the upper opening 23 of the treatment vessel 2. At this time, the dust in the air is captured by treatment water sprayed downward from the water spray nozzle 3 and falls into the water receiving section 21 at the bottom of the treatment vessel 2. As a result, the dust in the dirty air is separated and treated as impurities in the treatment vessel 2. Furthermore, because the dust can be separated by falling into the water receiving section 21, the problem of clogging of the dust removal net, which occurs in conventional ventilation systems, does not occur. This allows for efficient dust removal.
[0053] Furthermore, the air taken into the treatment vessel 2 from the side wall opening 22 exchanges heat with the treatment water sprayed from the sprinkler nozzle unit 3 as it moves upward to the upper end opening 23. This makes it possible to adjust the temperature of the air taken into the treatment vessel 2. In particular, in summer, the air inside the livestock barn 90 tends to become hot, so by exchanging heat between the low-temperature treatment water sprayed from the sprinkler nozzle unit 3 and the air inside the livestock barn 90, the air temperature can be effectively lowered.
[0054] Furthermore, for the air discharged from the inside of the treatment vessel 2 to the duct 14, the hypochlorous acid water sprayed into the inside of the duct 14 breaks down malodorous components such as ammonia, thereby removing the odor. As a result, when air is discharged outside the livestock barn 90 from the duct 14, dust and malodors are not scattered outside the livestock barn 90. This makes it possible to improve the living environment of residents near the livestock barn 90 compared to conventional methods.
[0055] In the above embodiment, the deodorizing agent spraying device 61 has a spray nozzle 614. The spray nozzle 614 is provided in a position near and above the exhaust fan 4 for the treatment vessel.
[0056] According to the above configuration, by utilizing the movement of the exhaust fan 4 for the treatment vessel, the hypochlorous acid water sprayed from the spray nozzle 614 can be easily mixed with the air discharged from the inside of the treatment vessel 2, so that the air can be efficiently deodorized inside the duct 14.
[0057] In the above embodiment, the treatment vessel exhaust fan 4 has blades 4b that rotate around a vertical axis to generate a swirling flow. The spray nozzle 614 is configured to spray hypochlorous acid water toward the rotation center O of the treatment vessel exhaust fan 4.
[0058] According to the above configuration, a swirling flow is generated by the rotation of the blades 4b of the treatment vessel exhaust fan 4, and the hypochlorous acid water is sprayed directly toward the area where turbulence is also occurring, so that the mixing of the air discharged from the inside of the treatment vessel 2 with the atomized or evaporated hypochlorous acid water can be further promoted. This can further enhance the deodorizing effect.
[0059] The livestock shed ventilation system 1 of the above embodiment includes a water tank 7 in which a pumping pump 5 is disposed and which stores the treatment water discharged from the water receiving section 21 to the outside of the treatment container 2, and a screen device 8 which is disposed in the water tank 7 and which separates impurities contained in the treatment water from the treatment water and removes them to the outside.
[0060] According to the above configuration, the treatment water sprayed from the spray nozzle unit 3 and dropped into the water receiving unit 21 is pumped up to the spray nozzle unit 3 by the pumping pump 5 and sprayed again from the spray nozzle unit 3. In other words, the treatment water is circulated and reused. This allows the treatment water to be used efficiently. Furthermore, impurities that accumulate in the water receiving unit 21 of the treatment vessel 2 move to the water storage tank 7 along with the treatment water, where they float or settle. The screening device 8 can automatically separate these impurities from the treatment water and remove them to the outside. This prevents impurities from being contained in the treatment water pumped from the water storage tank 7 by the pumping pump 5, thereby maintaining the dust capturing capacity of the treatment water sprayed from the spray nozzle unit 3 at an appropriate level.
[0061] In the above embodiment, the duct 14 covers the upper end opening 23 and includes a deodorizing and purifying section 141 that applies a liquid deodorizer sprayed by a deodorizer sprayer 61 to the air discharged from the inside of the treatment container 2, and an air supply flow path 142 that returns the air deodorized by the deodorizing and purifying section 141 to the inside of the livestock house 90. The duct 14 is configured to circulate air between the inside of the livestock house 90 and the treatment container 2 and the deodorizing and purifying section 141 while removing dust and deodorizing the air.
[0062] According to the above configuration, the air inside the livestock house 90 is circulated while dust removal and deodorization are performed, so the amount of outside air taken in from outside can be reduced while the air inside the livestock house 90 is kept clean. This almost completely eliminates the need to take in hot outside air in the summer or cold outside air in the winter from outside the livestock house 90, so the temperature inside the livestock house 90 can be maintained constant. This makes it possible to maintain a good rearing environment for the livestock kept inside the livestock house 90. Furthermore, since it is possible to prevent the air inside the livestock house 90 from being discharged outdoors, it is possible to improve the living environment for residents living near the livestock house 90.
[0063] The livestock house ventilation system 1 of the above embodiment includes a control device 1b that controls the driving of the treatment vessel exhaust fan 4. The control device 1b is configured to adjust the flow rate of air circulated between the inside of the livestock house 90 and the treatment vessel 2 and the deodorizing and purifying unit 141 by controlling the treatment vessel exhaust fan 4.
[0064] According to the above configuration, dust removal, deodorization, sterilization, and temperature regulation inside the livestock barn 90 can be performed in a well-balanced manner according to the increase or decrease in the number of livestock being raised, the season, etc.
[0065] The embodiments disclosed herein are illustrative in all respects and are not intended to be limiting. The technical scope of the present invention is not to be interpreted solely by the above-described embodiments, but is defined by the claims. The technical scope of the present invention also includes all modifications within the scope and meaning equivalent to the claims.
[0066] For example, in the above embodiment, an example was shown in which the livestock house ventilation system 1 was applied to a chicken house, but the present invention is not limited to this and can be applied to various livestock houses for raising various livestock such as cows and pigs.
[0067] Furthermore, since the livestock house ventilation system 1 of the above embodiment was configured to be retrofitted to an existing livestock house 90, the livestock house-side exhaust fan 91 was provided on the end-side second side wall 90b at the boundary between the main section S1 of the livestock house ventilation system 1 and the livestock house interior space S2. The present invention is not limited to this, and it is not necessary to provide a side wall or livestock house-side exhaust fan between the main section of the livestock house ventilation system and the livestock house interior space. In other words, the treatment container, the treatment container exhaust fan, the duct deodorizing and purifying unit, etc. may be arranged directly in the livestock house interior space.
[0068] Although the livestock house ventilation system 1 of the above embodiment is shown as having 18 treatment containers 2, the present invention is not limited to this, and it is sufficient that at least one treatment container is provided. Similarly, it is sufficient that at least one sprinkler nozzle unit provided inside the treatment container and at least one treatment container exhaust fan provided at the upper end opening of the treatment container are provided.
[0069] Furthermore, in the livestock house ventilation system 1 of the above embodiment, the duct 14 is provided with the deodorizing and purifying section 141 and the air supply passage 142, and is configured to circulate air while removing dust and deodorizing between the inside of the livestock house 90 and the treatment container 2 and the deodorizing and purifying section 141. The present invention is not limited to this, and the duct may have a structure that does not include an air supply passage. [Explanation of symbols]
[0070] 1. Livestock ventilation system 1b Control device 2. Processing vessel 3. Watering nozzle 4 Exhaust fan for processing vessel 4b Wing part 5. Pump 7. Water Tank 8 Screen equipment 14 Duct 21 Water receiving part 22 Side wall opening 23 Top opening 61 Deodorizer sprayer 90 Livestock Barn 141 Deodorizing and Purifying Section 142 air supply channel 614 Spray nozzle O Center of rotation
Claims
1. a treatment vessel having a bottom water receiving portion, a side wall opening above the water receiving portion, and an upper end opening above the side wall opening; a water spray nozzle unit provided inside the treatment vessel at a height position between the side wall opening and the upper end opening; an exhaust fan for the treatment vessel that is provided at the upper end opening and generates an air flow so as to take in air inside the livestock house from the side wall opening and exhaust it from the upper end opening; a pump that pumps up the treatment water and sprays it downward from the spray nozzle portion toward the water receiving portion; a duct connected to the upper end opening; a deodorizing agent spraying device that sprays a liquid deodorizing agent into the inside of the duct. A livestock barn ventilation system characterized by:
2. The deodorizer spray device has a spray nozzle, The spray nozzle is provided at a position near an upper portion of the exhaust fan for the processing vessel.
2. The livestock house ventilation system according to claim 1.
3. the exhaust fan for the processing vessel has a blade portion that rotates around a vertical axis to generate a swirling flow, the spray nozzle is configured to spray the liquid deodorizing agent toward the rotation center of the exhaust fan for the treatment vessel.
3. The livestock house ventilation system according to claim 2.
4. a water tank in which the pumping pump is disposed and which stores the treatment water discharged from the water receiving section to the outside of the treatment container; a screening device disposed in the water storage tank and configured to separate impurities contained in the treatment water from the treatment water and remove them to the outside.
4. A livestock house ventilation system according to claim 3.
5. The duct covers the upper end opening and includes a deodorizing and purifying section that causes the liquid deodorizer sprayed by the deodorizer spray device to act on the air discharged from the inside of the treatment container, and an air supply flow path that returns the air deodorized by the deodorizing and purifying section to the inside of the livestock house, The system is configured to circulate air between the inside of the livestock house and the treatment container and the deodorizing and purifying unit while removing dust and deodorizing. A livestock house ventilation system according to any one of claims 1 to 4.
6. a control device that controls the drive of the exhaust fan for the processing vessel; The control device is configured to adjust the flow rate of air circulated between the inside of the livestock house and the treatment container and the deodorizing and purifying unit by controlling the treatment container exhaust fan.
6. A livestock house ventilation system according to claim 5.
Citation Information
Patent Citations
Exhausted dust preventing device for vertically ventilating poultry house
JP1998117624A