AU619476B2 - Mollusc growing system and method - Google Patents

Mollusc growing system and method Download PDF

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Publication number
AU619476B2
AU619476B2 AU19656/88A AU1965688A AU619476B2 AU 619476 B2 AU619476 B2 AU 619476B2 AU 19656/88 A AU19656/88 A AU 19656/88A AU 1965688 A AU1965688 A AU 1965688A AU 619476 B2 AU619476 B2 AU 619476B2
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AU
Australia
Prior art keywords
air
molluscs
water
platform
mollusc
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
AU19656/88A
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AU1965688A (en
Inventor
Toatsu Chemicals Inc. Mitsui
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Mitsui Toatsu Chemicals Inc
Original Assignee
Mitsui Toatsu Chemicals Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mitsui Toatsu Chemicals Inc filed Critical Mitsui Toatsu Chemicals Inc
Priority to AU19656/88A priority Critical patent/AU619476B2/en
Priority claimed from PCT/AU1988/000197 external-priority patent/WO1989000004A1/en
Publication of AU1965688A publication Critical patent/AU1965688A/en
Application granted granted Critical
Publication of AU619476B2 publication Critical patent/AU619476B2/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K61/00Culture of aquatic animals
    • A01K61/50Culture of aquatic animals of shellfish
    • A01K61/54Culture of aquatic animals of shellfish of bivalves, e.g. oysters or mussels
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/80Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in fisheries management
    • Y02A40/81Aquaculture, e.g. of fish

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Marine Sciences & Fisheries (AREA)
  • Zoology (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Farming Of Fish And Shellfish (AREA)

Description

AU-Al -19656/88 P09I7 1ST111,ITi't PAO J4I INTERNATIONAL APPLICATION PUBLISI-113D UNDER THlE PATENT COOPERATION TREATY (PCT) (51) International P~atent Classification 4 (II)1 n, Alj P blicR1t N4a 9 00 AO IK 61/009,80/00 ru l (.i3 )at* uary 1989 (12-01.89) (21) International Application Number: PCT/AU88/00197Pulse (22) Inlerealios I Filing Date% 22 June 1988 (22,06,88) With International search report, (31) Priority Application Number; P1 2766 (32) Priority Date: 29 June 1987 (29,06,87) (33) Priority Country.:A (71X72) Applicant and Inventor: LARDNER, Lawrence, John IAU/AUJ;, 53 Croston Road, Engadine, NSW 2233 (AU).
(74) Agent: F.D. RICE 28A Montague Street, Bal. ~~8 main, NSW 2041 A ,3P l (81) Designated States: AT (European patent), AU, BE (European patcnt), CH (Europcan patent), DE (European
ASRLA
patent), FR (European patent), GB (European pa- UTRLA tent), IT (European patent), JI1, KR, LU (European patent), NL (European patent), SE (European patent), 3 0 JAN 1989 Us, PATENT OFFICE (54)Title., MOLLUSC GROWING SYSTEM AND METHOD "MOLTJT1C CQROWTN( SYSTRM AND MIETHOD"l This invention relates to a system f~or the cultivation of molluscs in particular oysters, B~ar, round Art Oysters are grown in many parts of the world and generally in the same manner. Large tanks are erected in relatively shallow water at a height between high and low tide depths. This system has disadvantages in that the oysters are only grown at one level thus inefficiently using water depth. Furthermore, the oysters are easily stolen or eaten by birds at low tide. Another problem associated with this method of cultivation is loss through j :~.:extremes of temperature, for example high summer daytime i *~:.temperatures coinciding with low tide.
The present invention provides an alternative method of cultivating molluscs with a view to ameliorating at least some of the disadvantages of the prior art.
Li Summary of the Invention Accordingly, in one broad form, the present invention 20 may be said to provide a mollusc cultivating system comprising a mollusc support including a plurality of racks securely stacked one atop the other and a rigid platform upon which the plurality of racks are secured for securing growing molluscs in a three dimensional array, 25 the support adapted ior submersion in water; buoyancy means attached to an underside of said platform and including a plurality of buoyancy tanks, or pairs of linked buoyancy tanks, each including a respective air line connection entering a respective tank and extending proximate a normally upper region thereof and through holes in a wall of the tank proximate a normally low region thereof so as to allow controlled flooding and evacuation of water from the buoyancy tanks by the forced ingress or controlled escape of air through the respective air lines so as to controllably raise or lower the moll~usc support relative to the water surface; and an anchor means so as to maintain the system substantially fixed in one location.
Normally the apparatus is lowered to the water bed and in this case the negative buoyancy may be used as the anchor moans. Some mollusc varieties feod best in the upper 1 metre or so of the water where their plankton food is plentiful and for such molluscs, or for other roasons foot off#* 099
S..
of6 4.
6 44 4 I C- )9/00004 P I /A L8/009 2.
where applicable (deep water cultivation), the flotation means can further include surface floats normally partially submerged. These surface floats maintain the racks at the desired depth irrespective of tidal movement, This height maintenance can also be effected by using pins or other stops in vertical poles sunk into the water bed. Such rigid poles can advantageously be used as anchor means, although moorings and flexible lines (rope, chain, cable) can also be used for this purpose.
By way of further explanation of the utility of the invention preferred features not necessarily essential to the invention, will now be described.
A main advantage of the invention is that the cultivating system allows the growing oysters to be in the water and feeding most of the time. Oysters feed by filtering material from the water and thus in the conventional system, where they are out of the water for approximately half their life, grow much more slowly than oysters submerged for the majority of their life.
Thus there is provided a plurality of stackable racks adapted to be secured one to the other and, while stacked one atop the other, to accept a layer of oysters in each rack. The stacking of the racks also provides security for the oysters against attack by marine predators such as bream. Also the stacked racks may be locked together to prevent theft of oysters.
The bottom rack of the stack fits atop a platform having inflatable buoyancy devices being either Icollapsible or rigid. The buoyancy devices can well be integral with the platform or attached thereto.
Further provided is a controllable compressed air source such as a petrol motor driven compressor, or tanked compressed air, which is carried in the oyster grower's punt and attachable by airline to the buoyancy devices.
Introduction of the compressed air into the buoyancy \0 89/00004 PCI/A. 88/0017 devices will displace water and allow the stack of oyster racks to be raised. By release of the air from the buoyancy devices the racks can likewise be controllably lowered.
There can also be provided surface buoyancy devices designed to float partially submerged at the water surface. The surface devices maintain the racks at the desired feeding depth.
Anchoring means can be provided in the form of a framework in which the stacked racks can vertically move.
The framework is anchored in the desired location by driving vertical frame work members into the bottom.
The preferred system also includes a specially adapted barge. A petrol driven air compressor and associated manifold with a plurality of air connections is carried in the barge. Individual air lines are permanently connected to their respective buoyancy tanks (or each line might feed a number of linked tanks) and include at their free ends other connections suitable for connection to the air manifold. The barge includes an area to carry a number of stacks of oyster racks already coupled together and a suitable crane so they can be lifted from the barge onto the platform before the buoyancy device is flooded and the racks submerged.
Unloading of the racks is accomplished by the reverse procedure.
Although not frequently required the system can also include temperature sensing devices and a programmed "AI control unit so that if the oysters are above the water level and their temperature is above a predetermined cLitical level, then the racks will be lowered, by buoyancy adjustment, into the water thus submerging the oysters to a predetermined depth. Further, the controller can raise the oysters out of the water if the temperature probe determines that the water temperature is below some WO $9/00004 89QQ. PiA 8/009"Y predetermined value while the air temperature io warmer, Pressure or wave sensors can also be used to lower the racks below the influence of rough surface conditions.
Clearly in this embodiment the buoyancy devices are permanently connected to a pressured air source.
The control unit of the above described embodiment will also lift the oysters out of the water for the minimum period necessary for healthy growth, regular service or as required by the oyster grower The emergence of the oysters obviously does not have to coincide with tidal movements and can therefore be conducted during periods of minimal exposure to predators and theft, or in accordance with favourable weather conditions.
The exact performance of the system and therefore its degree of complexity will be best judged after considering the environmental details of its intended location.
Further exemplary features of the invention will now be described with reference to a preferred embodiment shown in the drawings which include: Brief Description of the Drawings Fig. I showing a perspective view of a device adapted to carry stacked oyster racks in accordance with the invention; Fig. 2 showing a schematic plan view of the device of Fig. 1; and Fig. 3 showing an air manifold and compressor used in conjunction with the device of Fig. 1.
Description of Preferred Embodiment The exemplary apparatus includes a platform 1 sixteen buoyancy tanks 2 attached to its underside. A bundle of eight air lines extends from respective pairs of linked buoyancy tanks 2 to a plate 4 which has respective air connections 5 rigidly attached thereto, there being one air connection 5 for each of the linked pairs of buoyancy I- 0V() 89/0000 PC] IA~ L'8/OO ;9 tanks 2, A framework 6 is attached to the upper side of the platform 1 and encloses a volume dimensioned to fit a predetermined number of stackable oyster racks (not shown). The framework 6 includes convenient clamping meians (not shown) for holding the stack of oyster racks firmly on the platform 1.
Extending from the corners of the platform 1 are respective guides 7 which fit over respective guideposts 8. The guideposts 8 are driven into the water bed at the location where the oysters are to be grown. The platform is positioned with each of the guides 7 encircling its respective guidepost 8. The platform 1 is then free to move vertically up and down relative to the guideposts 8 while it is restrained from any lateral movement. By this manner a number of platforms 1 may be positioned in a given area so long as there is left sufficient room to move the oyster growers barge alongside each of the platforms 1.
Although not employed in this embodiment, some of the buoyancy tanks 2 may have an end extending outwardly from the platform 1 so as to present a bow shaped leading point and a generally catamaran type hull allowing the device to be easily towed behind the oyster growers barge.
Once the platform 1 has been positioned relative to each guideposts 8 it is firstly maintained buoyant by sealing off the air connectors 5 while the buoyancy tanks 2 are substantially full of air. A barge carrying already Sstacked oyster racks filled with young oysters is brought alongside the platform 1. A crane aboard the barge is used to load onto the platform 1 the stacked oyster racks which are then secured to the framework 6.
The air connectors 5 attached to the plate 4 can be uncapped and linked to an air manifold 10 held on the barge and itself connected to a portable air compressor 11.
\VO 89/00004 'PC' I/AI 88/0019- The air manifold has bleed valves 12 or similar so as to let air bleed at a controllable rate from the buoyancy tanks 2. where necessary selected ones of the buoyancy tanks 2 can be bled at a modified rate so as to maintain equilibrium in the attitude of platform 1. The buoyancy tanks 2 are equipped with perforations along their bottom edge so as to allow the ingrcss of water, and the air lines extend to a point at the top of the respective tanks thereby providing the controlled flooding of the buoyancy tanks 2 in response to the bleeding of air through the air connectors 5 and the attached air manifold 10. Once the platform has been submerged the air manifold 10 is disconnected from the air connectors 5 which are recapped to prevent the escape of further air, thuu maintaining a slight negative buoyancy and minimum weight on post brackets as well as preventing ingress of debris into the bundled air lines 3. The plate 4 and air connectors 5 are then lowered into the water and positioned so as to be easily retrievable at a later time by use of a conventional boat hook or similar grappling device.
When desired to do so the platform 1 is raised by bringing the oyster barge alongside the guideposts 8 and retrieving the plate 4 with its air connectors 5. The air connectors 5 are uncapped and connected to the air manifold 10 on the barge. The air compressor on the barge is then started and compressed air forced into the buoyancy tanks 2 through the bundled air lines 3.
Bleeding of air from selected air lines through bleed valves 12 can be used in order to maintain a level attitude of the platform 1 as it begins to rise up the guideposts 8. When the platform 1 has been brought to'the surface the stacked oyster racks can be disconnected from the framework 6 and loaded onto the barge by use of its crane. Fresh racks with oysters can be then loaded on to the platform 1, or it might be left empty, before wO 89/l00004 1 /A I 88/00 (1 .7.
proceeding to another platform or returning to a suitable shed or wharf equipped to unload the oyster racks from the barge.
Under some circumstances the oysters might benefit from being raised clear of the water during their normal growing life while in the racks attached to the apparatus. For instance if mud worm is prevalent in a particular location, it might be found, by trial and error, that the effect of the mud worm can be greatly reduced by periodically raising the platform 1 to the t surface and thus uncovering the growing oysters for some predetermined length of time.
Another problem sometimes encountered in growing preferred species of oysters, such as the Sydney Rock Oyster, is the infiltration of lower quality species, such as the Pacific Oyster, which can grow over and kill the commercial oyster. However the Pacific Oyster for example has a short life out of water and therefore can be eradicated by bringing the platform 1 'o the surface for some days if the Pacific Oyster is known or thought to be intruding into the oyster growing area.
Other problems known to the experienced oyster grower such as Winter mortality and marine growth can also be ameliorated by appropriate use of this system.
Under circumstances where for example a large number of platforms 1 are being used some distance from the unloading shed or wharf, as the case may be, it might be desired to tow the required number of platforms 1 already loaded with the stacked oysters to the growing area. The platforms 1 can then be disconnected from the "train" and attached to their respective guideposts 8 before being submerged in the normal manner. When harvesting the oysters the reverse procedure could be used.

Claims (8)

1. A mollusc cultivating system comprising a mollusc support including a plurality of racks securely stacked one atop the other and a rigid platform upon which the plurality of racks are secured for securing growing molluscs in a three dimensional array, the support adapted for submersion in water; buoyancy means attached to an underside of said platform and including a plurality of buoyancy tanks, or pairs of linked buoyancy tanks, each including a respective air line connection entering a respective tank and extending proximate a normally upper region thereof and through holes in a wall of the tank proximate a normally low region thereof so as to allow controlled flooding and evacuation of water from the 15 buoyancy tanks by the forced ingress or controlled escape .I of air through the respective air lines so as to controllably raise or lower the mollusc support relative to the water surface; and an anchor means so as to maintain the system substantially fixed in one location.
2. A mollusc cultivating system as defined in claim 1 wherein the anchor means comprises a plurality of C 4substantially vertical posts anchored relative to the 'water bed and a respective guide associated with each anchor post being rigidly connected relative to the buoyancy means and being slidable along the respective post.
3. A mollusc cultivating system as defined in claim 2 j *wherein the posts include rigid supports defining the submerged height of the platform above the water bed.
4. A mollusc cultivating system as defined in any one of claims 1-3 further including at free ends of the respective air lines a plurality of air connectors adapted to sealingly connect with correspondsing connectors in an air manifold connected to a controlled pressured air supply.
S. A Mollusc cultivating system As defined in claim 4 wherein the air manifold includes controllable air bleed devices and wherein the pressured air supply is a portable air compressor.
6. A method of cultivating molluscs by inserting young molluscs within a plurality of stacked racks, securing tho racks to a platform including a plurality of buoyancy tanks, or pairs of linked buoyancy tanks, each including a respective air line connection entering a respective tank and extending proximate a normally upper region thereof and through holes in a wall of the tank proximate a too* normally low region thereof so as to allow controlled flooding and evacuation of water from the buoyancy tanks the forced ingress or controlled escape of air through respective air lines and attached to an underside of the platform, flooding the tanks by controlled escape of through the air lines so as to submerge the molluscs and anchoring the platform fixably in one location whereby the molluscs are retrieved by compressing air into the tanks through the air lines so as to buoyantly raise the S*:Poo: molluscs out of the water.
S7. A method of cultivating molluscs as defined in to 0 claim 6 wherein the molluscs are buoyantly raised clear oi the water at predetermined time intervals or at asses: 25 predetermined occasions corresponding to preselected circumstances.
8. A method of cultivating molluscs as defined in claim 7 wherein the predetermined circumstances include t the occurrence of mud worm infestation, an alteration in water temperature 6~r salinity, adverse wave action, marine growth, and/or the occurrence of unwanted species of molluscs.
AU19656/88A 1987-06-29 1988-06-22 Mollusc growing system and method Ceased AU619476B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AU19656/88A AU619476B2 (en) 1987-06-29 1988-06-22 Mollusc growing system and method

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
AUPI276687 1987-06-29
AUPI2766 1987-06-29
PCT/AU1988/000197 WO1989000004A1 (en) 1987-06-29 1988-06-22 Mollusc growing system and method
AU19656/88A AU619476B2 (en) 1987-06-29 1988-06-22 Mollusc growing system and method

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AU1965688A AU1965688A (en) 1989-01-30
AU619476B2 true AU619476B2 (en) 1992-01-30

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU1659776A (en) * 1975-08-09 1978-02-09 Yamakawa K An ignition system for an internal combustion engine
US4335680A (en) * 1977-03-28 1982-06-22 Kipping Vernon L System for method for production of marine food using submerged platforms
US4395970A (en) * 1981-02-25 1983-08-02 Kunkle Arthur N Open clean habitat for shell fish

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU1659776A (en) * 1975-08-09 1978-02-09 Yamakawa K An ignition system for an internal combustion engine
US4335680A (en) * 1977-03-28 1982-06-22 Kipping Vernon L System for method for production of marine food using submerged platforms
US4395970A (en) * 1981-02-25 1983-08-02 Kunkle Arthur N Open clean habitat for shell fish

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AU1965688A (en) 1989-01-30

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