The present invention relates to a fish breeding cage.
JP-A-2015-84742 discloses a cage on which a soft net fabric is stretched.
JP-A-2016-54679 discloses an aquarium facility in which a capturing cloth can be moved and cleaned. This capturing cloth is spread out on a bottom surface of an aquarium to collect remaining baits and droppings.
Patent Document 1: JP-A-2015-84742
Patent Document 2: JP-A-2016-54679
Cleaning the remaining baits and the droppings in the conventional cage was hard. Therefore, a cage that allows easily cleaning the remaining baits and the droppings is desired.
The present invention is basically based on knowledge that a peripheral area part constituting a cage is formed of a net and the net can be supplied to ensure easily making the cage that becomes dirty with remaining baits and droppings clean.
The present invention relates to a fish breeding cage. This fish breeding cage is a fish breeding cage that includes a frame 3, a first net 11, and a second net 17. The frame 3 constitutes sides of a rectangular parallelepiped. The first net 11 covers a right-side surface 5, a bottom surface 7, and a left-side surface 9 of the frame 3. The second net 17 covers a front surface 13, the bottom surface 7, and a back surface 15 of the frame 3.
This fish breeding cage further includes a first net supply unit 19 configured to supply the first net 11 and a second net supply unit 21 configured to supply the second net 17.
When the first net 11 and the second net 17 in use become dirty, the dirty nets are collected and the first net 11 and a second net 17 are supplied from the first net supply unit 19 and the second net supply unit 21, respectively, thus constituting new wall surfaces. This allows collecting the dirty net and keeping the cage clean.
This fish breeding cage is preferably configured as follows. When a length required to cover the right-side surface 5, the bottom surface 7, and the left-side surface 9 of the frame 3 is defined as L1 [m], the first net 11 has a length of 2L1 [m] or more. The first net 11 has a part housed in a roll shape by the first net supply unit 19. When a length required to cover the front surface 13, the bottom surface 7, and the back surface 15 of the frame 3 is defined as L2 [m], the second net 17 has a length of 2L2 [m] or more. The second net 17 has a part housed in a roll shape by the second net supply unit 21.
In this case, pulling the first net 11 and the second net 17 supplies the first net 11 and the second net 17 from the first net supply unit 19 and the second net supply unit 21, respectively. Thus, the net can be easily re-covered.
This fish breeding cage is preferably configured as follows. The frame 3 has four first L-shaped frames 31, 33, 35, 37 extending from the bottom surface 7 in a direction toward a top surface 23. This fish breeding cage preferably further has four outer frames 41, 43, 45, 47 that are capable of covering the four first L-shaped frames 31, 33, 35, 37.
In a state where the four outer frames 41, 43, 45, 47 are brought into close contact with the four first L-shaped frames 31, 33, 35, 37, with the first net 11 and the second net 17 interposed, covering the four first L-shaped frames 31, 33, 35, 37 fixes the first net 11 and the second net 17 to the four first L-shaped frames 31, 33, 35, 37.
Meanwhile, in a state where the four outer frames 41, 43, 45, 47 are released from the four first L-shaped frames 31, 33, 35, 37, the first net 11 and the second net 17 are released from the four first L-shaped frames 31, 33, 35, 37, and then by supplying the first net 11 from the first net supply unit 19, the first net 11 is capable of being renewed, and by supplying the second net 17 from the second net supply unit 21, the second net 17 is capable of being renewed.
This fish breeding cage is preferably used for breeding fry young fishes.
The present invention allows providing the cage that can be easily cleaned.
The following describes configurations to embody the present invention using the drawings. The present invention is not limited to the configurations described below but includes configurations that are appropriately modified within a range obvious by those skilled in the art from the following configurations.
The present invention relates to a fish breeding cage. This cage is mainly installed in a growing environment of fishes, such as a housing container or a housing tank wider than the cage, a breeding facility, a pond, or a sea. Breeding water can be exchanged between the growing environment and the cage, and the fishes inside the cage do not escape or are difficult to escape to the growing environment. Examples of the fish include Anguilliformes fishes (for example, eels and larvae of Anguilliformes). This cage is preferably applied to breeding of juvenile fishes.
The frame may be controlled such that a metal required to grow the fishes is dissolved. An example of the metal is an iron component. A frame including a coating layer containing a divalent iron ion source, such as ferrous sulfate and ferrous chloride, is a preferred aspect of the present invention. The frame with the coating allows stably supplying the divalent iron ions and allows removing excessive phosphorus ions as a precipitate.
A material of the net and a size of meshes of the net only need to be appropriately adjusted according to the fishes to be bred. For example, the size of the mesh of the net is 10 μm or more and 5 mm or less, may be 50 μm or more and 1 mm or less, may be 50 μm or more and 200 μm or less, or may be 200 μm or more and 1 mm or less. A material having a required physical property may be applied over the net. The first net 11 and the second net 17 preferably contact the frame 3 with tension (tensile force) to avoid a gap and a warp. This net is preferably sandwiched by L-shaped frames described later so as to contact the frame with tensile force.
This fish breeding cage further includes a first net supply unit 19 configured to supply the first net 11 and a second net supply unit 21 configured to supply the second net 17. When the first net 11 and the second net 17 in use become dirty, the dirty nets are collected and the first net 11 and the second net 17 are suppled from the first net supply unit 19 and the second net supply unit 21, respectively, thus constituting new wall surfaces. This allows collecting the dirty net and keeping the cage clean.
In this case, pulling the first net 11 and the second net 17 supplies the first net 11 and the second net 17 from the first net supply unit 19 and the second net supply unit 21, respectively. Thus, the net can be easily re-covered.
This fish breeding cage is preferably configured as follows. The frame 3 has four first L-shaped frames 31, 33, 35, 37 extending from the bottom surface 7 in a direction of a top surface 23. As illustrated in
This fish breeding cage preferably further has four outer frames 41, 43, 45, 47 that can cover the four first L-shaped frames 31, 33, 35, 37. The first outer frame 41, for example, is openably/closably mounted via one positioned on the bottom surface of the right-side surface 5 in the frame 3 and a hinge. Therefore, the first outer frame 41 can cover and release the parts of the two L-shaped frames positioned on the right-side surface 5. Note that it is only necessary that the first sheet passes through between the one positioned on the bottom surface of the right-side surface 5 in the frame 3 and the hinge. This allows the first sheet to move while the outer frame is released. Such a mechanism is similar to the second to fourth outer frames 43, 45, 47.
Then, in a state where the four outer frames 41, 43, 45, 47 are brought into close contact with the four first L-shaped frames 31, 33, 35, 37 (a state where the outer frames and the L-shaped frames are closed), with the first net 11 and the second net 17 interposed, covering the four first L-shaped frames 31, 33, 35, 37 fixes the first net 11 and the second net 17 to the four first L-shaped frames 31, 33, 35, 37.
Meanwhile, in a state where the four outer frames 41, 43, 45, 47 are released from the four first L-shaped frames 31, 33, 35, 37 (a state where the outer frames and the L-shaped frames are open), the first net 11 and the second net 17 are released from the four first L-shaped frames 31, 33, 35, 37, and then by supplying the first net 11 from the first net supply unit 19, the first net 11 is allowed to be renewed or by supplying the second net 17 from the second net supply unit 21, the second net 17 is allowed to be renewed.
Next, an example of using the fish breeding cage of the present invention will be described. This example is the fish breeding cage that includes the two net supply units 19 and 21 and also has the four L-shaped frames 31, 33, 35, 37 and the four outer frames 41, 43, 45, 47.
First, the four outer frames 41, 43, 45, 47 are set to the open state, and the outer frames 41, 43, 45, 47 are released from the left and right-side surfaces 5, 9, the front surface 13, and the back surface 15 of the frame.
The completed fish breeding cage is installed in a breeding environment system (for example, a large-sized aquarium and a sea). The fishes to be bred are put into the fish breeding cage for breeding. After breeding, after an elapse of a predetermined period or when the fish breeding cage becomes dirty, for example, the first and second outer frames are set to the open state while the fish breeding cage is put into the breeding environment system, and after the first sheet is renewed, the first and second outer frame are set to the closed state. The same applies to the second net. Thus, the net of the cage is replaced on the spot.
Fish Breeding Cage
The present invention relates to a cage and is usable in the aquaculture industry and the aquarium fish industry.
3 Frame
5 Right-side surface
7 Bottom surface
9 Left-side surface
11 First net
13 Front surface
15 Back surface
17 Second net
19 First net supply unit
21 Second net supply unit
Number | Date | Country | Kind |
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2018-003880 | Jan 2018 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2019/000460 | 1/10/2019 | WO | 00 |