WO2016133359A2 - Installation d'élevage de crevettes continental utilisant une structure variable de film multi-couche et un système de gestion d'installation d'élevage de crevettes - Google Patents

Installation d'élevage de crevettes continental utilisant une structure variable de film multi-couche et un système de gestion d'installation d'élevage de crevettes Download PDF

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Publication number
WO2016133359A2
WO2016133359A2 PCT/KR2016/001595 KR2016001595W WO2016133359A2 WO 2016133359 A2 WO2016133359 A2 WO 2016133359A2 KR 2016001595 W KR2016001595 W KR 2016001595W WO 2016133359 A2 WO2016133359 A2 WO 2016133359A2
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WO
WIPO (PCT)
Prior art keywords
variable structure
aquaculture
information
shrimp
facility
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PCT/KR2016/001595
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English (en)
Korean (ko)
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WO2016133359A3 (fr
Inventor
김기영
Original Assignee
농업회사법인 주식회사 홀인원
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Publication of WO2016133359A2 publication Critical patent/WO2016133359A2/fr
Publication of WO2016133359A3 publication Critical patent/WO2016133359A3/fr

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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; CARE OF BIRDS, FISHES, INSECTS; 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
    • A01K61/59Culture of aquatic animals of shellfish of crustaceans, e.g. lobsters or shrimps
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; CARE OF BIRDS, FISHES, INSECTS; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K61/00Culture of aquatic animals
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Systems or methods specially adapted for specific business sectors, e.g. utilities or tourism
    • G06Q50/02Agriculture; Fishing; Mining
    • 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

Definitions

  • the present invention relates to an inland shrimp farming facility and a shrimp farming facility management system to which a multi-film variable structure is applied, and more particularly, by applying a farming facility to be farmed in an inland area by using a variable structure sealed with multiple films.
  • Inland area that keeps the desired temperature inside the variable structure to grow shrimp
  • inland area with multi-film variable structure that provides aquaculture facilities for farming organisms such as microorganism, fry, sea fish or shellfish in addition to shrimp
  • the Shrimp Farming Facility andshrimp Farming Facility Management System is provided to farming organisms such as microorganism, fry, sea fish or shellfish.
  • the present invention is to solve the above problems, to provide a shrimp farming system inland, and in some cases, to provide a system capable of farming not only shrimp but also organisms such as microorganisms, fry, sea fish or shellfish.
  • shrimp, microorganisms, and fry should be maintained at room temperature above 25 °C.
  • multiple films with an air layer formed in the middle are applied. It aims to maximize energy efficiency and solve economic problems by grafting up and down variable structure.
  • the automation of shrimp farming facilities can save labor costs by reducing the manager through the automation control, and aims to protect the structure from natural disasters and energy saving by lifting and lowering the variable structure.
  • the present invention for achieving the above object is applied to a multi-film variable structure having an air layer and shrimp farming facility (10) consisting of a bio-floc (Biofloc) technology that does not need to change the sea water inland;
  • the aquaculture facility (10) is a culture tank (100) provided to form a groove on the ground (20) to grow shrimp;
  • the aquaculture tank 100 is formed between the aquaculture tank 100 when a plurality of formed in the longitudinal direction or the width direction side work passage 120 is formed to enable the passage of the worker;
  • the aquaculture drive unit 130 is provided to one side of the aquaculture tank 100 to control the drive device for farming shrimp in the aquaculture tank 100;
  • Shrimp 110 is formed on the upper surface of the culture tank 100 for the safety of foreign substances or workers in the tank, without leaving the outside;
  • the weir 110 is characterized in that it can be made by selecting any one of a concrete weir or sandbags or concrete blocks.
  • the water temperature and the water level sensor 150 which is provided to measure the water temperature and the water level in the culture tank 100 to one side of the upper bank (110); And a fixing member 140 on the upper surface of the weir 110 to fix the water temperature and the water level sensor 150.
  • the sludge discharge pipe 161 is provided to be discharged to the upper through the side surface 20 from the bottom surface of the culture tank 100 to discharge the sludge remaining inside when the culture tank 100 is washed;
  • a sludge pump 160 having a sludge discharge pipe 161 connected to one side of the variable structure 200 so as to suction and discharge the sludge through the sludge discharge pipe 161. It characterized in that it further comprises.
  • the support member 210 is embedded in the ground 20 to the outer periphery of the culture tank 100, the support member 210 is formed in a rectangular frame, the rectangular frame of the multi-film cell 300 Fixed frame 220 is provided to be attached; And a moving frame 230 provided outside the fixed frame 220 so that the moving frame 230 is moved up and down about the fixed frame 220. 300 is attached, the movable frame 230 is provided with a roof frame 240, the opening and closing frame 250 is provided above the roof frame 240, the opening and closing frame 250 is two stages It is characterized in that the folding or sliding is made possible.
  • a fan 260 provided to ventilate the inside of the variable structure 200 to one side of the roof frame 240;
  • a temperature-humidity sensor 280 provided to measure temperature-humidity in both sides of the variable structure 200 in the width direction; It characterized in that it further comprises.
  • the multi-film cell 300 is attached to the cell fixing frame formed on the fixed frame 220, the moving frame 230, the roof frame 240 of the variable structure 200;
  • the multi-film cell 300 is formed of a plurality of PO film 320, the pad attached to the multi-film cell 300 or the fixed frame 220, the moving frame 230, the roof frame 240 ( PO film 320 through the 330 is characterized in that the attachment using the spring (310).
  • aquaculture system for managing the aquaculture facility 10 using the smart phone 500, the smart phone assembly 500G including a plurality of smart phones (500); Aquaculture facility assembly 600G including a plurality of farming facilities 10, smartphone-based control device assembly including a plurality of smartphone-based control device 600 management server 450 and management web server through a mobile communication network
  • aquaculture facility management system for providing a smart phone notification for transmitting and receiving signals and data (450a), the management server 450, the internal configuration of the transmission and reception unit 451, the control unit 452, and the DB 453 And a management web server 450a externally, wherein the controller 452 makes an ID search request including ID information from each smartphone 500 constituting the smartphone assembly 500G.
  • the smart phone based control device 600 In response to the control command received from the management web server 450a, the smart phone based control device 600 matching the smart phone 500 that made the ID search request from the smart phone 500 that made the ID search request.
  • the ID information and ID search providing module 452a for controlling the transceiver unit 451 to be implemented by generating state information on the matching aquaculture facility 10 as user interface screen information and transmitting the ID search request to a smart phone 500.
  • the control command may include control of column height, roof angle, and aquaculture facility operation corresponding to the variable structure 200 of the aquaculture facility 10 matching the ID information.
  • control unit 452 the variable of the aquaculture facility 10 is transmitted to the smart phone-based control device 600 matching the ID from the smart phone 500 to the ID search request via the mobile communication network 400
  • the structure 200 is controlled by the DB construction module 452f after controlling the transceiver 451 to receive a falling control command or a rising control command together with distance information from the top of the ground.
  • the height information of the column about the structure 200 is extracted from the DB 453 and used as the total length information to calculate the falling movement distance for performing the falling control command to the corresponding distance or the height extracted in the case of the rising control command.
  • control unit 452 is transmitted from the smart phone 500 that has made the ID search request through the mobile communication network 400 to the smart phone-based control device 600 matched with that of the aquaculture facility 10
  • the DB building module Angular information about the vertices facing each other when the opening / closing frame 250 for the variable structure 200 constructed by 452e is closed, and the length information of each of the sealing frames 250 having the same size
  • a roof opening / closing implementation module 452c that extracts from the DB 453 and calculates an angle between a base end of a vertex and a horizontal line facing each opening and closing frame 250 in a distance information state; It characterized in that it further comprises.
  • control unit 452 is variable in the aquaculture facility 10 that is transmitted from the smart phone 500 that has made the ID search request through the mobile communication network 400 to the smart phone-based control device 600 matched thereto.
  • the transmission and reception unit 451 After controlling the transmission and reception unit 451 to receive the operation command for the form formed in the structure 200, by the time of farming or shrimp growth of the aquaculture facility 10 built by the DB building module 452f Aquaculture facility operation calculation implementation module 452d for extracting operation information from the DB 453; It characterized in that it further comprises.
  • control unit 452 for the aquaculture facility 10 is transmitted to the smart phone-based control device 600 matched with the smart phone 500 that has made the ID search request through the mobile communication network 400
  • the mode implementation module 452e may include a preset humidity matched to shrimp information farmed in the variable structure 200 constructed by the DB construction module 452f when the summer protection mode request command is received. After extracting the temperature threshold information from the DB 453, and controls the smart phone 500 that has made the ID search request through the mobile communication network 400, and matched with the smart phone 500 that made the ID search request It characterized in that the control for the variable structure 200 is performed by the smartphone-based control device 600.
  • the mode implementation module 452e faces the opening / closing frame 250 of the variable structure 200 constructed by the DB building module 452f when the winter protection mode request command is received. After extracting the length information of the opening and closing frame 250 is formed in the same size as the angle information and the length information about the vertices of the touched point, and after receiving the current snowfall amount to the external server (not shown), And extracting critical pressure classification information that the opening / closing frame 250 and the roof frame 240 corresponding to the correlation information between the angle and the length information and the current snowfall amount of the snow can withstand as much as possible from the DB 453. do.
  • the mode implementation module 452e upon receiving the sludge processing mode request command, preset sludge processing information matching the sludge processing information in the culture tank 100 constructed by the DB construction module 452f.
  • the smartphone having made the ID search request by controlling the transceiver 451 to transmit the extracted preset information to the smartphone-based control device 600 through the mobile communication network 400
  • Control based on the sludge treatment is performed by the smartphone-based control device 600 is matched with the smart phone-based control device 600 is matched with the smart phone 500 that has made the ID search request, form tank (
  • the sludge treatment is controlled according to a preset time by information matching the sludge throughput in 100).
  • each of the smart phone-based control device 600 has a structure connected through the matching facility 10 and the input and output interface, and the smart phone 500 and the signal matched through the mobile communication network 400 and A wireless transmitter / receiver 620 for performing data transmission and reception;
  • the storage unit 630 for storing data for processing the collected state information according to the control command received from the matching smart phone 500.
  • a control module 610 for performing control including performing with respect to; Characterized in that it comprises a.
  • control module 610 so that the variable structure 200 of the aquaculture facility 10 from the matching smart phone 500 through the mobile communication network 400 to receive the distance information from the top of the ground to match
  • Aquaculture facility operation means (610c) for controlling the aquaculture unit 130 to control the radio transmitter and receiver to receive aquaculture information for creating an environment of shrimp cultured in the aquaculture tank 100; Characterized in that it comprises a.
  • control module 610 after controlling the wireless transmitter and receiver 620 to receive a request for the summer protection mode operation from the matching smart phone 500 through the mobile communication network 400, Summer protection means (610d) to perform the internal temperature and humidity of the variable structure according to the set information; To control the wireless transmitter and receiver 620 to receive a request for the winter protection mode operation from the matching smart phone 500 through the mobile communication network 400, and to perform according to the opening and closing information of the opening and closing frame 250 Winter protection means 610e; After controlling the wireless transmitter / receiver 620 to receive a request for the sludge processing mode operation from the matching smart phone 500 through the mobile communication network 400, the amount of sludge in the matching culture tank 100 Sludge treatment means (610f) to perform according to the information on the; It characterized in that it further comprises.
  • shrimp, microorganisms, and fry should be maintained at room temperature above 25 °C.
  • multiple films with an air layer formed in the middle are applied. It is possible to maximize energy efficiency and solve economic problems by incorporating vertically variable structures.
  • variable structure formed of multiple films can be completely sealed to maintain the internal temperature from the outside, and the structure of the structure inside the structure by protecting the structure from natural disasters by raising and lowering the roof and opening and closing of the variable structure Has
  • 1 is a cross-sectional view of aquaculture facilities for inland shrimp farming facility and shrimp farming facility management system to which the present invention multi-film variable structure is applied.
  • Figure 2 is a plan view of aquaculture facilities for inland shrimp farming facility and shrimp farming facility management system to which the present invention multi-film variable structure is applied.
  • Figure 3 is a perspective view of a culture tank for inland shrimp farming facility and shrimp farming facility management system to which the present invention multi-film variable structure is applied.
  • Figure 4 is a variable structure lifting state diagram for the inland area shrimp farming facility and shrimp farming facility management system to which the present invention multi-film variable structure is applied.
  • variable structure multi-film attachment to the inland shrimp farming facility and shrimp farming facility management system to which the present invention multi-film variable structure is applied.
  • FIG. 6 is a perspective view of a farming facility for the inland shrimp farming facility and shrimp farming facility management system to which the present invention multi-film variable structure is applied.
  • FIG. 7 is a view showing a case where a single smartphone for the inland shrimp farming facility and shrimp farming facility management system to which the present invention multi-film variable structure is applied.
  • FIG. 8 is a view showing the structure of the management server for the shrimp farming facility and shrimp farming facility management system inland applied to the multi-film variable structure of the present invention.
  • FIG. 9 is a view showing a case of a plurality of smartphones as a smart phone assembly for the shrimp farming facility and shrimp farming facility management system to apply the multi-film variable structure of the present invention.
  • FIG. 10 is a view illustrating in more detail an internal configuration of a smartphone-based control device of an inland shrimp farming facility and shrimp farming facility management system to which the present invention is applied to the multi-film variable structure.
  • FIG. 1 is a cross-sectional view of the aquaculture facility for the present invention
  • Figure 2 is a plan view of the aquaculture facility
  • Figure 3 is a perspective view of the aquaculture tank
  • Figure 4 is a state diagram of the lifting and lowering of the variable structure for the aquaculture facility of the present invention
  • 5 is a perspective view of the multi-film attachment of the variable structure
  • Figure 6 is a perspective view of aquaculture facilities.
  • FIG. 7 is a diagram illustrating a case where the smartphone of the management system for aquaculture facilities is a singular individual
  • FIG. 8 is a diagram illustrating a management server structure of the management system
  • FIG. 9 is a diagram illustrating a case where there are a plurality of smartphones.
  • 10 is a view for examining the internal configuration of the smart phone-based control device according to the present invention.
  • the present invention is a shrimp farming facility, grafting up and down variable structure applying a multi-film formed in the middle of the air to solve the problem of not operating due to energy costs, economics, pollution, etc. depending on the cold region or season In order to maintain the temperature above 25 °C by reducing the internal volume by raising and lowering the structure, maximize the energy efficiency and solve the economic problems to provide aquaculture facilities for shrimp farming.
  • the shrimp farming facility of the present invention is a biofloc (Biofloc) technology that does not need to change the seawater by using the seawater in the inland area.
  • the aquaculture facility of the present invention is characterized in that not only shrimp, but also microorganisms and fry, sea fish, fish and shellfish can be farmed.
  • the aquaculture facility 10 of the present invention is provided with a culture tank 100 to form a groove on the ground 20 to culture the shrimp, in the case of the culture tank 100 oval Is made in the form of.
  • a working passage 120 is formed to enable the passage of the worker between the aquaculture tank 100.
  • the aquaculture driving unit 130 is provided on one side of the aquaculture tank 100 to control the driving device for aquaculture shrimp in the aquaculture tank 100, various operations through a control unit inside the aquaculture driving unit 130 The device is provided.
  • variable structure 200 is provided to form a shrimp farming environment and temperature and humidity during shrimp farming.
  • the shrimp tank is not separated to the outside of the culture tank 100, the dam 110 is formed in the tank from the outside for the safety of foreign objects or workers, the weir 110 is Made of concrete or made of sandbags or concrete blocks.
  • the water temperature and the water level sensor 150 is provided on the upper side of the weir 110, the fixing member 140 is provided on the upper surface of the weir 110 to fix the water temperature and the water level sensor 150. It consists of
  • the sludge discharge pipe 161 is provided to be discharged to the upper through the ground 20 from the side to the bottom surface of the culture tank 100 in order to discharge the sludge remaining in the inside during the cleaning of the culture tank 100
  • the sludge pump 160 is provided on one side of the variable structure 200 to suck and discharge the sludge through the sludge discharge pipe 161.
  • the support member 210 is embedded in the ground to the outer periphery of the aquaculture tank 100, is formed in a rectangular frame to the upper support member 210, formed to be attached to the cell in the left and right front and back A fixed frame 220 is provided, and the movable frame 230 is provided above the fixed frame 220.
  • the moving frame 230 is moved up and down about the fixed frame 220, and the cell is formed to be attached to the left and right, front and rear sides of the moving frame 230 as well.
  • the roof frame 240 is provided above the movable frame 230, and the opening and closing frame 250 is provided above the roof frame 240 to completely open or slide open or close the two-stage folding or roof frame 240. Is made possible.
  • the opening and closing method of the opening and closing frame 250 is selected and installed according to the local environment.
  • a ventilator 260 is provided to ventilate the inside of the variable structure 200 to one side of the roof frame 240, and the door 270 is provided to allow the worker to enter and exit the one side of the variable structure 200.
  • the temperature and humidity sensor 280 is provided to measure the temperature and humidity in both sides of the variable structure 200 in the width direction.
  • each sensor such as a wind pressure sensor for measuring wind pressure, a pressure line for preparing for heavy snow, is configured to be provided in the variable structure 200.
  • a cell fixing frame is formed on the fixed frame 220, the moving frame 230, the roof frame 240, the opening and closing frame 250 of the variable structure 200, the cell fixing frame in multiple The multiple film cell 300 is attached.
  • the multi-film cell 300 is made of a plurality of PO film 320, it is made of a removable cell form.
  • the pad 330 is attached to the fixed frame 220, the moving frame 230, the roof frame 240, the opening and closing frame 250 to attach the PO film 320 through the spring 310 May also be used.
  • aquaculture system for managing the aquaculture facility 10 of the present invention using a smart phone 500, smart phone assembly 500G including a plurality of smart phones (500) It consists of, aquaculture facility assembly 600G including a plurality of aquaculture facilities (10) is made.
  • a smart phone-based control device assembly including a plurality of smart phone-based control device 600 is a smart that performs the signal and data transmission and reception with the management server 450 and the management web server 450a through the mobile communication network 400
  • the management server 450 includes a transmission and reception unit 451, a control unit 452, and a DB 453 in an internal configuration, the management web to the outside A server 450a is provided, and the controller 452 receives an ID search request including ID information from each smart phone 500 constituting the smart phone assembly 500G from the management web server 450a.
  • the ID information is matched with the ID information when the control command is completed.
  • Status information on aquaculture facilities 10
  • the control command includes control of column height, roof angle, and aquaculture operation corresponding to the variable structure 200 of the aquaculture facility 10 matching the ID information.
  • control unit 452 the variable of the aquaculture facility 10 is transmitted to the smart phone-based control device 600 matching the ID from the smart phone 500 to the ID search request via the mobile communication network 400
  • the structure 200 is controlled by the DB construction module 452f after controlling the transceiver 451 to receive a falling control command or a rising control command together with distance information from the top of the ground.
  • the height information of the column about the structure 200 is extracted from the DB 453 and used as the total length information to calculate the falling movement distance for performing the falling control command to the corresponding distance or the height extracted in the case of the rising control command.
  • control unit 452 is transmitted from the smart phone 500 that has made the ID search request through the mobile communication network 400 to the smart phone-based control device 600 matched with that of the aquaculture facility 10
  • the DB building module Angular information about the vertices facing each other when the opening / closing frame 250 for the variable structure 200 constructed by 452e is closed, and the length information of each of the sealing frames 250 having the same size
  • a roof opening / closing implementation module 452c that extracts from the DB 453 and calculates an angle between a base end of a vertex and a horizontal line facing each opening and closing frame 250 in a distance information state; This is made to include more.
  • control unit 452 is variable in the aquaculture facility 10 that is transmitted from the smart phone 500 that has made the ID search request through the mobile communication network 400 to the smart phone-based control device 600 matched thereto.
  • the transmission and reception unit 451 After controlling the transmission and reception unit 451 to receive the operation command for the form formed in the structure 200, by the time of farming or shrimp growth of the aquaculture facility 10 built by the DB building module 452f Aquaculture facility operation calculation implementation module 452d for extracting operation information from the DB 453; This is made to include more.
  • control unit 452 for the aquaculture facility 10 is transmitted to the smart phone-based control device 600 matched with the smart phone 500 that has made the ID search request through the mobile communication network 400
  • the mode implementation module 452e may include a preset humidity matched to shrimp information farmed in the variable structure 200 constructed by the DB construction module 452f when the summer protection mode request command is received. After extracting the temperature threshold information from the DB 453, and controls the smart phone 500 that has made the ID search request through the mobile communication network 400, and matched with the smart phone 500 that made the ID search request The control of the variable structure 200 is performed by the smartphone-based control device 600.
  • the mode implementation module 452e faces the opening / closing frame 250 of the variable structure 200 constructed by the DB building module 452f when the winter protection mode request command is received.
  • the length information of the opening and closing frame 250 is formed in the same size as the angle information and the length information about the vertices of the touched point, and after receiving the current snowfall amount to the external server (not shown).
  • the critical pressure classification information that the opening / closing frame 250 and the roof frame 240 corresponding to the correlation information between the angle and the length information and the current snow amount of snow can withstand as much as possible is extracted from the DB 453.
  • the mode implementation module 452e upon receiving the sludge processing mode request command, preset sludge processing information matching the sludge processing information in the culture tank 100 constructed by the DB construction module 452f.
  • the smartphone having made the ID search request by controlling the transceiver 451 to transmit the extracted preset information to the smartphone-based control device 600 through the mobile communication network 400
  • Control based on the sludge treatment is performed by the smartphone-based control device 600 is matched with the smart phone-based control device 600 is matched with the smart phone 500 that has made the ID search request, form tank (
  • the sludge treatment is controlled according to a predetermined time by information matching the sludge throughput in 100).
  • each of the smart phone-based control device 600 has a structure connected through the matching facility 10 and the input and output interface, and the smart phone 500 and the signal matched through the mobile communication network 400 and A wireless transmitter / receiver 620 for performing data transmission and reception;
  • the storage unit 630 for storing data for processing the collected state information according to the control command received from the matching smart phone 500.
  • control module 610 so that the variable structure 200 of the aquaculture facility 10 from the matching smart phone 500 through the mobile communication network 400 to receive the distance information from the top of the ground to match
  • Aquaculture facility operation means (610c) for controlling the aquaculture unit 130 to control the radio transmitter and receiver to receive aquaculture information for creating an environment of shrimp cultured in the aquaculture tank 100; It consists of including.
  • control module 610 after controlling the wireless transmitter and receiver 620 to receive a request for the summer protection mode operation from the matching smart phone 500 through the mobile communication network 400, Summer protection means (610d) to perform the internal temperature and humidity of the variable structure according to the set information; To control the wireless transmitter and receiver 620 to receive a request for the winter protection mode operation from the matching smart phone 500 through the mobile communication network 400, and to perform according to the opening and closing information of the opening and closing frame 250 Winter protection means 610e; After controlling the wireless transmitter / receiver 620 to receive a request for the sludge processing mode operation from the matching smart phone 500 through the mobile communication network 400, the amount of sludge in the matching culture tank 100 Sludge treatment means (610f) to perform according to the information on the; It further comprises.

Abstract

La présente invention concerne une installation d'élevage de crevettes continental utilisant une structure variable de film multi-couche et un système de gestion d'installation d'élevage de crevettes, l'installation d'élevage de crevettes continental étant établie pour élever des crevettes grâce au maintien d'une température interne souhaitée en raison de la structure variable, à l'utilisation de la structure variable scellée à l'aide d'un film multi-couche de sorte que l'installation d'élevage soit utilisée pour permettre l'élevage dans une zone continentale, et l'installation d'élevage permettant d'élever des organismes tels que des micro-organismes, des poissons juvéniles, des poissons ou des coquillages de mer, en plus des crevettes. La présente invention concerne une installation d'élevage de crevettes (10), qui utilise la structure variable de film multi-couche ayant une couche d'air et formée à partir d'une technique de biofloculation qui permet de ne pas avoir à changer l'eau de mer dans la zone continentale, l'installation d'élevage (10) comprenant : un réservoir d'eau d'élevage (100) ayant une rainure formée au sol (20) et prévue pour élever les crevettes ; et un chemin de travail (120) formé parmi une pluralité de réservoirs d'eau d'élevage (100) de manière à permettre le passage d'un ouvrier lorsque la pluralité de réservoirs d'eau d'élevage (100) est formée dans la direction longitudinale ou la direction de la largeur ; et la structure variable (200) étant fixée au sol (20) vers le haut des réservoirs d'eau d'élevage (100), et étant prévue pour former l'environnement d'élevage des crevettes en maintenant une température ambiante de 25 °C à 28 °C lors de l'élevage des crevettes.
PCT/KR2016/001595 2015-02-17 2016-02-17 Installation d'élevage de crevettes continental utilisant une structure variable de film multi-couche et un système de gestion d'installation d'élevage de crevettes WO2016133359A2 (fr)

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KR1020150024093A KR101724545B1 (ko) 2015-02-17 2015-02-17 다중 필름 가변 구조물을 적용한 내륙지역 새우 양식시설 관리시스템
KR10-2015-0024093 2015-02-17

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WO2016133359A2 true WO2016133359A2 (fr) 2016-08-25
WO2016133359A3 WO2016133359A3 (fr) 2016-10-13

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