CN210796456U - Guiding bubble removing device for spirulina track type culture pond - Google Patents
Guiding bubble removing device for spirulina track type culture pond Download PDFInfo
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- CN210796456U CN210796456U CN201921667178.6U CN201921667178U CN210796456U CN 210796456 U CN210796456 U CN 210796456U CN 201921667178 U CN201921667178 U CN 201921667178U CN 210796456 U CN210796456 U CN 210796456U
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Abstract
The utility model discloses a spirulina track type culture pond guiding defoaming device, which comprises a foam baffle arranged above the liquid level of a track type culture pond, wherein one side of the foam baffle is attached to a middle baffle of the track type culture pond, and the other side of the foam baffle is arranged above the edge of the track type culture pond; the top end of the foam baffle is obliquely arranged along the water flow direction of the runway type culture pond; one side of the foam baffle close to the edge of the pool is obliquely arranged along the water flow direction of the runway type culture pool; the bottom of the foam baffle is provided with a floating ball, and the bottom surface of the foam baffle above the edge of the pool is correspondingly attached to the top surface of the edge of the pool; the foam baffle is provided with a foam removing device. Has the advantages that: the method effectively removes foam on the liquid surface of the runway culture pond by utilizing the flowing of culture liquid and adopting a physical mode, so that the spirulina is fully subjected to photosynthesis, and the yield of the spirulina is improved.
Description
The technical field is as follows:
the utility model relates to a spirulina breed the field, especially relate to pond direction bubble removal device is bred to spirulina runway formula.
Background art:
during the culture process of spirulina, mechanical damage to spirulina is caused when a stirrer stirs spirulina or death of spirulina bodies is caused when power failure and production failure occur, the dead spirulina releases organic matters to form foam on the liquid surface of culture solution, the foam reflects part of sunlight, the absorption of the spirulina to illumination is weakened, and therefore yield and quality are affected.
The utility model has the following contents:
an object of the utility model is to provide an adopt the mode of physics effectively to get rid of the foam on the runway formula pond liquid level of breeding, make spirulina fully carry out photosynthesis, the spirulina runway formula breed pond direction remove bubble device.
The utility model discloses by following technical scheme implement: the spirulina track type culture pond guiding defoaming device comprises a foam baffle plate arranged above the liquid level of a track type culture pond, wherein one side of the foam baffle plate is attached to a middle baffle plate of the track type culture pond, and the other side of the foam baffle plate is arranged above the edge of the side of the track type culture pond; the top end of the foam baffle is obliquely arranged along the water flow direction of the runway type culture pond; one side of the foam baffle close to the edge of the pool edge is obliquely arranged along the water flow direction of the runway type culture pool; a floating ball is arranged at the bottom of the foam baffle, and the bottom surface of the foam baffle above the edge of the pool is correspondingly attached to the top surface of the edge of the pool; and a defoaming device is arranged on the foam baffle.
Preferably, the defoaming device is flow guide grooves or bulges which are uniformly and transversely arranged on the surface of the foam baffle plate facing to the water flow direction; the diversion trench or the bulge is arranged in a way that the diversion trench or the bulge is downwards inclined from the middle baffle plate to the edge direction of the pool.
The utility model has the advantages that: simple structure, convenient to use, easy to maintain, low cost, energy-concerving and environment-protective, utilize the flow of breeding the liquid, adopt the mode of physics effectively to get rid of the foam on the runway formula pond liquid level, make the spirulina fully carry out photosynthesis, improve spirulina output.
Description of the drawings:
FIG. 1 is a plan view of example 1.
Fig. 2 is a schematic sectional view taken along line a-a of fig. 1.
Fig. 3 is a partially enlarged view of part B of fig. 1.
Fig. 4 is a side view of embodiment 1.
Fig. 5 is a partially enlarged view of a portion C of fig. 4.
FIG. 6 is a plan view of example 2.
Fig. 7 is a schematic cross-sectional view taken along line D-D of fig. 6.
Fig. 8 is a partially enlarged view of a portion E of fig. 6.
FIG. 9 is a side view of example 3.
Fig. 10 is a partially enlarged view of portion F of fig. 9.
The device comprises a runway type culture pond 1, a middle baffle 11, a culture runway 12, a stirrer 13, stirring blades 131, a speed reduction motor 132, a stirring shaft 133, a pond edge 14, a foam baffle 2, a floating ball 3, a support 4, a defoaming device 5, a diversion trench 51 and a protrusion 52.
The specific implementation mode is as follows:
example 1: as shown in fig. 1 to 5, the spirulina track type cultivation pond guiding defoaming device comprises a foam baffle 2 arranged above the liquid level of spirulina liquid in a track type cultivation pond 1, the track type cultivation pond 1 comprises an annular cultivation track 12 formed by dividing a middle baffle 11, spirulina liquid injected into the cultivation track 12 and two stirrers 13 for stirring the spirulina liquid in the cultivation track 12, the two stirrers 13 are arranged at two ends of the middle baffle 11 in a staggered manner, and a stirring blade 131 of each stirrer 13 is arranged in the spirulina liquid in the cultivation track 12; the stirrer 13 comprises a speed reducing motor 132, a stirring shaft 133 and stirring blades 131, wherein the speed reducing motor 132 is arranged at the edge 14 of the runway type culture pond 1, the output shaft of the speed reducing motor 132 is the stirring shaft 133, and the stirring blades 131 are arranged on the stirring shaft 133; the middle baffle 11 is transversely and vertically arranged on the bottom of the runway type culture pond 1; the stirring blades 131 of the two stirrers 13 rotate clockwise to stir the spirulina liquid, so that the spirulina liquid flows clockwise along the cultivation runway 12; one side of the foam baffle 2 is attached to the middle baffle 11 of the runway type culture pond 1, and the other side of the foam baffle 2 is arranged above the edge 14 of the runway type culture pond 1; the top end of the foam baffle 2 is obliquely arranged along the water flow direction of the runway type culture pond 1; one side of the foam baffle 2 close to the edge 14 of the pool edge is obliquely arranged along the water flow direction of the runway type culture pool 1; the bottom of the foam baffle 2 is provided with a floating ball 3, and the floating ball 3 provides buoyancy for the foam baffle 2, so that the bottom of the foam baffle 2 is arranged below the liquid level of the spirulina liquid; the bottom surface of the foam baffle 2 above the pool edge 14 is correspondingly attached to the top surface of the pool edge 14; the surface of the foam baffle plate 2, which is back to the water flow direction, is provided with a bracket 4, and the bracket 4 plays a role in supporting the foam baffle plate 2; the foam baffle 12 is provided with a foam removing device 5, the foam removing device 5 is a diversion trench 51 which is uniformly and transversely arranged on the surface of the foam baffle 2 facing to the water flow direction, and the diversion trench 51 is arranged from the middle baffle 11 to the pool edge 14 in a downward inclined mode.
Instructions for use: the foam baffle 2 is arranged on the spirulina liquid in a floating mode, and the bottom of the foam baffle 2 is arranged below the liquid level of the spirulina liquid; when the spirulina liquid flows, the floating foam above the liquid level is accumulated on the plate surface of the foam baffle plate 2 towards the water flow direction, the diversion trench 51 on the plate surface of the foam baffle plate 2 towards the water flow direction enables the accumulated foam on the plate surface to flow to the upper side of the pool edge 14 at an accelerated speed, so that the foam on the spirulina liquid level of the runway culture pool is effectively removed in a physical mode, the spirulina is fully subjected to photosynthesis, and the spirulina yield is improved.
Example 2: as shown in fig. 6 to 10, the spirulina track type cultivation pond guiding defoaming device comprises a foam baffle 2 arranged above the liquid level of spirulina liquid in a track type cultivation pond 1, the track type cultivation pond 1 comprises an annular cultivation track 12 formed by dividing a middle baffle 11, spirulina liquid filled in the cultivation track 12 and two stirrers 13 for stirring the spirulina liquid in the cultivation track 12, the two stirrers 13 are arranged at two ends of the middle baffle 11 in a staggered manner, and a stirring blade 131 of each stirrer 13 is arranged in the spirulina liquid in the cultivation track 12; the stirrer 13 comprises a speed reducing motor 132, a stirring shaft 133 and stirring blades 131, wherein the speed reducing motor 132 is arranged at the edge 14 of the runway type culture pond 1, the output shaft of the speed reducing motor 132 is the stirring shaft 133, and the stirring blades 131 are arranged on the stirring shaft 133; the middle baffle 11 is transversely and vertically arranged on the bottom of the runway type culture pond 1; the stirring blades 131 of the two stirrers 13 rotate clockwise to stir the spirulina liquid, so that the spirulina liquid flows clockwise along the cultivation runway 12; one side of the foam baffle 2 is attached to the middle baffle 11 of the runway type culture pond 1, and the other side of the foam baffle 2 is arranged above the edge 14 of the runway type culture pond 1; the top end of the foam baffle 2 is obliquely arranged along the water flow direction of the runway type culture pond 1; one side of the foam baffle 2 close to the edge 14 of the pool edge is obliquely arranged along the water flow direction of the runway type culture pool 1; the bottom of the foam baffle 2 is provided with a floating ball 3, and the floating ball 3 provides buoyancy for the foam baffle 2, so that the bottom of the foam baffle 2 is arranged below the liquid level of the spirulina liquid; the bottom surface of the foam baffle 2 above the pool edge 14 is correspondingly attached to the top surface of the pool edge 14; the foam baffle 12 is provided with a foam removing device 5, the foam removing device 5 is a bulge 52 which is uniformly and transversely arranged on the surface of the foam baffle 2 facing to the water flow direction, and the bulge 52 is downwards inclined from the middle baffle 11 to the pool edge 14; the support 4 is arranged on the surface of the foam baffle 2 back to the water flow direction, and the support 4 plays a role in supporting the foam baffle 2.
Instructions for use: the foam baffle 2 is arranged on the spirulina liquid in a floating mode, and the bottom of the foam baffle 2 is arranged below the liquid level of the spirulina liquid; when the spirulina liquid flows, the floating foam above the liquid level is accumulated on the plate surface of the foam baffle plate 2 towards the water flow direction, the foam baffle plate 2 is protruded 52 towards the water flow direction plate surface to enable the accumulated foam on the plate surface to flow to the upper side of the pool edge 14 at an accelerated speed, the foam on the spirulina liquid level of the runway type culture pool is effectively removed in a physical mode, the spirulina is fully subjected to photosynthesis, and the spirulina yield is improved.
Claims (2)
1. The spirulina track type culture pond guiding defoaming device is characterized by comprising a foam baffle plate arranged above the liquid level of a track type culture pond, wherein one side of the foam baffle plate is attached to a middle baffle plate of the track type culture pond, and the other side of the foam baffle plate is arranged above the edge of the side of the track type culture pond; the top end of the foam baffle is obliquely arranged along the water flow direction of the runway type culture pond; one side of the foam baffle close to the edge of the pool edge is obliquely arranged along the water flow direction of the runway type culture pool; a floating ball is arranged at the bottom of the foam baffle, and the bottom surface of the foam baffle above the edge of the pool is correspondingly attached to the top surface of the edge of the pool; and a defoaming device is arranged on the foam baffle.
2. The spirulina track-type culture pond guiding and defoaming device as claimed in claim 1, wherein the defoaming device is a flow guide groove or a protrusion which is uniformly and transversely arranged on the surface of the foam baffle plate facing to the water flow direction; the diversion trench or the bulge is arranged in a way that the diversion trench or the bulge is downwards inclined from the middle baffle plate to the edge direction of the pool.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921667178.6U CN210796456U (en) | 2019-09-30 | 2019-09-30 | Guiding bubble removing device for spirulina track type culture pond |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921667178.6U CN210796456U (en) | 2019-09-30 | 2019-09-30 | Guiding bubble removing device for spirulina track type culture pond |
Publications (1)
Publication Number | Publication Date |
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CN210796456U true CN210796456U (en) | 2020-06-19 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201921667178.6U Active CN210796456U (en) | 2019-09-30 | 2019-09-30 | Guiding bubble removing device for spirulina track type culture pond |
Country Status (1)
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CN (1) | CN210796456U (en) |
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2019
- 2019-09-30 CN CN201921667178.6U patent/CN210796456U/en active Active
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