CN212099274U - Corbicula fluminea fishing transportation production workboat - Google Patents

Corbicula fluminea fishing transportation production workboat Download PDF

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Publication number
CN212099274U
CN212099274U CN202020677941.XU CN202020677941U CN212099274U CN 212099274 U CN212099274 U CN 212099274U CN 202020677941 U CN202020677941 U CN 202020677941U CN 212099274 U CN212099274 U CN 212099274U
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China
Prior art keywords
pair
box
cabins
ship
ship body
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Expired - Fee Related
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CN202020677941.XU
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Chinese (zh)
Inventor
王峰
陈一硕
于欣
袁丹
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Xinfeng Shipbuilding Factory In Dandong Border Economic Cooperation Zone
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Xinfeng Shipbuilding Factory In Dandong Border Economic Cooperation Zone
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Priority to CN202020677941.XU priority Critical patent/CN212099274U/en
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Publication of CN212099274U publication Critical patent/CN212099274U/en
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Abstract

The utility model discloses a clam living fish transport production operation ship, which comprises a ship body and a pair of box cabins with the same structure, wherein a pair of storage cabins with the same structure are respectively arranged in the ship body, a pair of box cabins are respectively arranged in the storage cabins, a quantitative transfer structure is arranged on the ship body, and a cooling and heat-insulating structure is arranged in the storage cabins, the utility model relates to the technical field of clam living and transport, two storage cabins with the same structure are arranged in the ship body, box cabins are respectively arranged in the storage cabins, the ship body is provided with the quantitative transfer structure, the caught clam living in can be respectively loaded in the two box cabins, and the cooling and heat-insulating structure arranged in the storage cabins is matched to store the caught clam living rate at constant temperature, so as to improve the economic benefit, and the box cabins can be hung on the shore after the ship is leaned on the shore, the transfer link is reduced, and the damage rate of the corbicula is reduced.

Description

Corbicula fluminea fishing transportation production workboat
Technical Field
The utility model relates to a clam is caught and is transported technical field, specifically is a clam catches transportation production operation ship.
Background
Fishery refers to a social production department that catches and breeds fish and other aquatic animals and marine algae and other aquatic plants to obtain aquatic products, the fishery can provide food and industrial raw materials for people's life and national construction, and the collection of various aquatic animals and plants with economic value is an important component of generalized agriculture and can be divided into marine fishery and fresh water fishery according to water areas; the method is divided into breeding industry and fishing industry according to production characteristics, and the generalized fishing industry also comprises the following steps: direct fishery production front department, fishing boat, fishing gear, fishing instrument, fishing machine and other fishery production data production and supply department; the direct fishery rear door comprises: departments of storage, processing, transportation, sale and the like of aquatic products.
The prior fishing and transporting operation flow mainly comprises two parts, namely a ship and a shore, wherein after the fishing ship arrives at a culture area, a cage is put down for hauling operation, after a rear bag net is filled with clams, the net is pulled up, the clams are respectively stacked on a middle deck and a rear deck, then the clams are manually bagged and stacked in order, the fishing process is repeated until bagged clams are fully stacked on the deck, the clams return to a discharging dock, the clams are conveyed to a transport vehicle one by one through a conveyor belt, then the transport vehicle transports the bagged clams to a processing plant, workers carry the bagged clams to a processing equipment feeding table, the bags are cut by a knife, and the clams are poured into a feeding port, the operation mode takes labor and trouble, the transportation and production of the clams are subjected to bagging once, bag discharging once and carrying process for four times in the whole process, so that the damage rate of the clams is high, the working efficiency is reduced, and the economic cost is increased, in view of the above, the present invention has been made in view of the above problems.
SUMMERY OF THE UTILITY MODEL
The utility model provides a not enough to prior art, the utility model provides a clam is catched transportation production operation ship has solved current clam transportation production and has experienced bagging-off once in whole in-process, once unloads the bag, quartic handling for clam's breakage rate is higher, has reduced work efficiency simultaneously, has increased economic cost's problem.
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes: a corbicula fluminea fishing transportation production operation ship comprises a ship body and a pair of box cabins with the same structure, wherein a pair of storage cabins with the same structure are arranged in the ship body respectively;
the quantitative transfer structure includes: the fixed frame is arranged on the ship body, the quantitative loading part is arranged on the fixed frame, and the transferring and moving part is arranged on the ship body and is positioned below the quantitative loading part;
the cooling insulation structure includes: the temperature detection part is arranged in the storage bin and is attached to the bin, and the temperature regulation part is arranged in the storage bin and is connected with the temperature detection part.
Preferably, the quantitative loading section includes: a pair of retractable conveyer belt that the structure is the same, temporary storage hopper and baffle box, it is a pair of retractable conveyer belt all ann in on the hull, and be located a pair of respectively case cabin one side, temporary storage hopper install in on the hull, and be located a pair of between the retractable conveyer belt, the baffle box is installed in temporary storage hopper downside, and be located the transportation removes the portion top.
Preferably, the transfer moving section includes: the guide device comprises a straight pin screw rod module, a pair of guide rails with the same structure, a connecting plate, a scraper conveyor and a pair of guide hoppers with the same structure, wherein the straight pin screw rod module is arranged on the ship body, the guide rails are arranged on the ship body and are respectively positioned on two sides of the straight pin screw rod module, two sides of the connecting plate are sleeved on the guide rails and are connected with the movable ends of the straight pin screw rod module, the scraper conveyor is arranged on the connecting plate, and the guide hoppers are respectively arranged on two ends of the scraper conveyor.
Preferably, the temperature detection unit includes: the temperature sensor is arranged on the side wall of the storage bin, the humidity sensor is arranged on one side of the temperature sensor, and the controller is arranged on one side of the humidity sensor.
Preferably, the temperature adjusting part includes: cooling water tank, semiconductor refrigeration piece, temperature probe, circulating pump and cooling tube, cooling water tank install in on the hull, and be located storage bin one side, the refrigeration face of semiconductor refrigeration piece attached in on the cooling water tank lateral wall, temperature probe install in the cooling water tank, and one end stretch into coolant liquid level below, the circulating pump install in on the cooling water tank, and intake the end with cooling water tank is linked together, set up flutedly on the storage bin lateral wall, the cooling tube inlay adorn in the recess, and both ends respectively with the play water end of cooling water tank and circulating pump is linked together.
Preferably, the box cabin is a rectangular uncovered box body, and two pairs of lifting lugs with the same structure are arranged on the side wall of the box cabin and used for transferring the box cabin.
Advantageous effects
The utility model provides a clam fishing, transporting and producing workboat. The method has the following beneficial effects: this clam is catched transportation production operation ship, through set up two storage storehouses that the structure is the same in the ship on the hull, be provided with the case cabin respectively in the storage storehouse, set up quantitative transport structure on the hull, the clam that catches and come can load to two case under-deck respectively, the cooling insulation construction that sets up simultaneously the cooperation storage storehouse carries out constant temperature to the clam that catches and stores, improve the survival rate of clam, improve economic benefits, and the ship is leaned on the shore after, the case cabin can the hoist and mount ashore, reduce the transportation link, reduce the damage rate of clam, the bagging-off of going through in whole in-process is once gone up in the transportation production of current clam, once unload the bag, quartic handling, make the damage rate of clam higher, and simultaneously the work efficiency is reduced, economic cost's problem has been increased.
Drawings
Fig. 1 is a schematic view of the structure of a corbicula fluminea fishing and transporting ship.
Fig. 2 is a side view schematic diagram of a clam fishing transportation production workboat.
Fig. 3 is the structure schematic diagram of a local overlooking of a clam fishing and transporting production workboat.
Fig. 4 is the utility model discloses a clam is catched transportation production workboat's local enlarged structure schematic diagram.
Fig. 5 is a schematic view showing a partial enlarged structure of a position a of the clam catching, transporting and producing ship of fig. 4 according to the present invention.
In the figure: 1, a ship body; 2-a box cabin; 3-storage of the bin; 4-a fixing frame; 5-a telescopic conveyer belt; 6-temporary storage hopper; 7-a material guide groove; 8-straight pin screw rod module; 9-a guide rail; 10-a connecting plate; 11-a scraper conveyor; 12-a material guide hopper; 13-a temperature sensor; 14-a humidity sensor; 15-a controller; 16-a cooling water tank; 17-semiconductor refrigerating sheets; 18-a temperature probe; 19-a circulation pump; 20-a cooling pipe; 21-lifting lug.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
All the electrical components in the present application are connected with the power supply adapted to the electrical components through the wires, and an appropriate controller should be selected according to actual conditions to meet the control requirements, and specific connection and control sequences should be obtained.
Referring to fig. 1-5, the present invention provides a clam living fish transport and production ship:
example (b): as can be known from the attached drawings 1-3 of the specification, the scheme comprises a ship body 1 and a pair of box cabins 2 with the same structure, a pair of storage cabins 3 with the same structure are respectively arranged in the ship body 1, the pair of box cabins 2 are respectively arranged in the pair of storage cabins 3, a quantitative transfer structure is arranged on the ship body 1, a cooling and heat-insulating structure is arranged in the storage cabins 3, and the quantitative transfer structure comprises: mount 4, ration loading portion and transportation removal portion, its positional relationship and relation of connection are as follows, and mount 4 is installed on hull 1, and ration loading portion installs on mount 4, and transportation removal portion installs on hull 1, and is located ration loading portion below, and above-mentioned cooling insulation construction includes: the temperature detection part is arranged in the storage bin 3 and is attached to the box cabin 2, the temperature regulation part is arranged in the storage bin 3 and is connected with the temperature detection part, when the device is used, the caught clams are thrown into the quantitative transfer structure on the ship body 1 through the hoisting machinery on the ship body 1 and are transferred into the box cabin 2 in the storage bin 3 through the quantitative transfer structure, when one box cabin 2 is full, the position and the discharge direction of the quantitative transfer structure are adjusted, the clams are transferred into the other box cabin 2, meanwhile, the temperature and the humidity in the inner space of the storage bin 3 are detected and regulated through the cooling and heat insulation structure on the inner wall of the storage bin 3, the caught clams are stored at constant temperature, the survival rate of the clams is improved, the economic benefit is improved, and after a ship is near the bank, the box cabin 2 can be hoisted to the bank, the transfer link is reduced, and the damage rate of the corbicula is reduced.
As can be seen from fig. 1 to 3 of the specification, in the implementation process, as a preferred arrangement, the quantitative loading part includes: a pair of telescopic conveyer belts 5, a temporary storage hopper 6 and a material guiding chute 7 with the same structure, the position relation and the connection relation are as follows, the pair of telescopic conveyer belts 5 are all arranged on the ship body 1 and are respectively positioned at one side of the pair of box cabins 2, the temporary storage hopper 6 is arranged on the ship body 1 and is positioned between the pair of telescopic conveyer belts 5, the material guiding chute 7 is arranged at the lower side of the temporary storage hopper 6 and is positioned above the transferring and moving part, when in use, caught clams are put into the temporary storage hopper 6 for temporary placement, the clams are led out to the telescopic conveyer belts 5 through the lower part of the temporary storage hopper 6 by the material guiding chute 7 and are conveyed to the box cabins 2 for storage by the telescopic conveyer belts 5, wherein, the important point is that, in the concrete implementation process, the telescopic conveyer belts 5 refer to the telescopic conveyer produced by the Fukufu conveyer factory, the length is adjustable, which is convenient for filling the whole cabin 2.
As can be seen from fig. 1 to 3 of the specification, in the implementation process, as a preferred arrangement, the transfer moving part includes: a straight pin screw rod module 8, a pair of guide rails 9 with the same structure, a connecting plate 10, a scraper conveyor 11 and a pair of guide hoppers 12 with the same structure, the position relation and the connection relation are as follows, the straight pin screw rod module 8 is arranged on the ship body 1, the pair of guide rails 9 are arranged on the ship body 1 and are respectively positioned at two sides of the straight pin screw rod module 8, two sides of the connecting plate 10 are sleeved on the pair of guide rails 9 and are connected with the movable end of the straight pin screw rod module 8, the scraper conveyor 11 is arranged on the connecting plate 10, the pair of guide hoppers 12 are respectively arranged at two ends of the scraper conveyor 11, when in use, when the left box cabin 2 shown in figure 2 is filled, the temporary storage hopper 6 is stopped to be fed, the movable end of the straight pin screw rod module 8 is controlled to move towards the right side, the connecting plate 10 at the movable end of the straight pin screw rod module 8 is pulled to move towards the right side under the limit action, thereby realize that 11 looks right sides of scraper conveyor on the connecting plate 10 remove, and then make guide hopper 12 on the scraper conveyor 11 right-hand member just to the retractable conveyer belt 5 of opposite side, control scraper conveyor 11 simultaneously and rotate the feed to the right side, thereby can realize loading another case cabin 2, wherein need point out importantly, scraper conveyor 11 refers to the variable frequency adjustable speed scraper conveyor 11 of Ningjin county Fengda net chain factory production, can realize frequency conversion and bidirectional regulation, load different case cabins 2.
As can be seen from fig. 1 to 5 of the specification, in the implementation process, as a preferred arrangement, the temperature detecting portion includes: the temperature sensor 13, the humidity sensor 14 and the controller 15, the temperature sensor 13 is installed on the side wall of the storage bin 3, the humidity sensor 14 is installed on one side of the temperature sensor 13, the controller 15 is installed on one side of the humidity sensor 14, when in use, the temperature in the storage bin 3 is monitored through the temperature sensor 13, the monitoring result is sent to the controller 15, the humidity in the storage bin 3 is monitored through the humidity sensor 14, the monitoring result is sent to the controller 15, the controller 15 judges according to the set temperature and humidity indexes, the temperature adjusting part is controlled, the temperature in the storage bin 3 is adjusted to be kept constant, the survival rate of clams is improved, and the economic benefit is improved.
As can be seen from fig. 1 to 5 of the specification, in the implementation process, as a preferred arrangement, the temperature adjusting part includes: the cooling water tank 16, the semiconductor refrigeration piece 17, the temperature probe 18, the circulating pump 19 and the cooling pipe 20 are arranged in the following position relation and connection relation, the cooling water tank 16 is arranged on the ship body 1 and is positioned at one side of the storage bin 3, the refrigeration surface of the semiconductor refrigeration piece 17 is attached to the side wall of the cooling water tank 16, the temperature probe 18 is arranged in the cooling water tank 16, one end of the temperature probe extends below the liquid level of the cooling liquid, the circulating pump 19 is arranged on the cooling water tank 16, the water inlet end of the circulating pump 19 is communicated with the cooling water tank 16, the side wall of the storage bin 3 is provided with a groove, the cooling pipe 20 is embedded in the groove, the two ends of the cooling pipe are respectively communicated with the cooling water tank 16 and the water outlet end of the circulating pump 19, when the temperature in the storage bin 3 rises to exceed a set value, the controller 15 controls the semiconductor refrigeration piece 17 on the side wall of the cooling, the temperature of the cooling liquid is monitored by a temperature probe 18, when the temperature of the cooling liquid is reduced to a set value, a circulating pump 19 is started to pump out the cooling liquid in the cooling box and fill the cooling liquid into a cooling pipe 20 to cool the temperature in the storage bin 3, so as to realize the temperature regulation in the storage bin 3, wherein the important points are that a temperature sensor 13 refers to a DS18B20 series temperature measurement module produced by TELESKY, a humidity sensor 14 refers to a TH10S series humidity sensing module produced by Miao, a semiconductor refrigeration sheet 17 refers to a TEC1-12705 semiconductor refrigerator produced by Australian refrigeration equipment Co., Ltd, the semiconductor refrigeration sheet 17 is a cooling device composed of semiconductors, and when direct current passes through two different semiconductor materials which are connected in series, the Peltier effect of the semiconductor materials is utilized, heat can be absorbed and released at two ends of a galvanic couple respectively, the purpose of refrigeration can be realized. The refrigerating technology which generates negative thermal resistance is characterized by no moving parts and higher reliability.
As can be seen from fig. 1 to 5 in the description, in the specific implementation process, as an optimal setting, the box 2 is a rectangular uncovered box, and two pairs of lifting lugs 21 with the same structure are installed on the side wall of the box 2, so as to fix the box 2 and facilitate the lifting and transporting of the box 2.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation. The use of the phrase "comprising one of the elements does not exclude the presence of other like elements in the process, method, article, or apparatus that comprises the element.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. A corbicula fluminea fishing transportation production operation ship comprises a ship body (1) and a pair of box cabins (2) with the same structure, and is characterized in that a pair of storage cabins (3) with the same structure are arranged in the ship body (1) respectively, the pair of box cabins (2) are arranged in the pair of storage cabins (3) respectively, a quantitative transfer structure is arranged on the ship body (1), and a cooling and heat-insulating structure is arranged in the storage cabins (3);
the quantitative transfer structure includes: the device comprises a fixed frame (4), a quantitative loading part and a transferring and moving part, wherein the fixed frame (4) is arranged on the ship body (1), the quantitative loading part is arranged on the fixed frame (4), and the transferring and moving part is arranged on the ship body (1) and is positioned below the quantitative loading part;
the cooling insulation structure includes: the temperature detection part is arranged in the storage bin (3) and attached to the box cabin (2), and the temperature adjusting part is arranged in the storage bin (3) and connected with the temperature detection part.
2. The ship for transporting clam fishing and production according to claim 1, wherein the quantitative loading part comprises: a pair of retractable conveyer belt (5) that the structure is the same, temporary storage hopper (6) and baffle box (7), it is a pair of retractable conveyer belt (5) all ann in on hull (1), and be located a pair of respectively case cabin (2) one side, temporary storage hopper (6) install in on hull (1), and be located a pair of between retractable conveyer belt (5), baffle box (7) install in temporary storage hopper (6) downside, and be located the transportation removes portion top.
3. The clam fishing transport production work ship according to claim 2, wherein the transfer moving portion includes: the guide rail structure comprises a straight pin screw rod module (8), a pair of guide rails (9) with the same structure, a connecting plate (10), a scraper conveyor (11) and a pair of guide hoppers (12) with the same structure, wherein the straight pin screw rod module (8) is installed on the ship body (1), the guide rails (9) are installed on the ship body (1) and are respectively located on two sides of the straight pin screw rod module (8), two sides of the connecting plate (10) are sleeved on the guide rails (9) in a pair and are connected with the movable ends of the straight pin screw rod module (8), the scraper conveyor (11) is installed on the connecting plate (10), and the guide hoppers (12) are respectively installed on two ends of the scraper conveyor (11).
4. The ship for transporting and producing clam according to claim 1, wherein the temperature detecting unit includes: temperature sensor (13), humidity transducer (14) and controller (15), temperature sensor (13) install on storage storehouse (3) lateral wall, humidity transducer (14) install in temperature sensor (13) one side, controller (15) install in humidity transducer (14) one side.
5. The ship for transporting clam catching and producing according to claim 4, wherein the temperature adjusting part comprises: cooling water tank (16), semiconductor refrigeration piece (17), temperature probe (18), circulating pump (19) and cooling tube (20), cooling water tank (16) install in on hull (1), and be located storage bin (3) one side, the refrigeration face of semiconductor refrigeration piece (17) attached in on cooling water tank (16) lateral wall, temperature probe (18) install in cooling water tank (16) in and one end stretch into coolant liquid level below, circulating pump (19) install in on cooling water tank (16) and the end of intaking with cooling water tank (16) are linked together, set up flutedly on storage bin (3) lateral wall, cooling tube (20) inlay dress in the recess, and both ends respectively with the play water end of cooling water tank (16) and circulating pump (19) is linked together.
6. The clam fishing, transporting and producing workboat according to claim 1, wherein the box compartment (2) is a rectangular uncovered box body, and two pairs of lifting lugs (21) with the same structure are arranged on the side wall of the box compartment (2) and used for transferring the box compartment (2).
CN202020677941.XU 2020-04-28 2020-04-28 Corbicula fluminea fishing transportation production workboat Expired - Fee Related CN212099274U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020677941.XU CN212099274U (en) 2020-04-28 2020-04-28 Corbicula fluminea fishing transportation production workboat

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020677941.XU CN212099274U (en) 2020-04-28 2020-04-28 Corbicula fluminea fishing transportation production workboat

Publications (1)

Publication Number Publication Date
CN212099274U true CN212099274U (en) 2020-12-08

Family

ID=73619651

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020677941.XU Expired - Fee Related CN212099274U (en) 2020-04-28 2020-04-28 Corbicula fluminea fishing transportation production workboat

Country Status (1)

Country Link
CN (1) CN212099274U (en)

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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20201208

Termination date: 20210428

CF01 Termination of patent right due to non-payment of annual fee