An automatic ebb drying device for laver culture, a culture device and a tidal range automatic ebb drying method

A technology for laver and tidal range, applied in the field of self-drying devices for laver cultivation, can solve the problems of long operation time, easy rollover or tilt, unstable force on floating rafts, etc., to improve quality and output, and strengthen wind and wave resistance The effect of reducing the cost of breeding

Active Publication Date: 2015-11-25
LIANYUNGANG HAIZHILIN COMPOUND MATERIALS +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the length and strength of the struts must be limited, which cannot meet the needs of deeper sea areas.
[0003] The existing methods of fully floating raft culture laver include a "U" type full floating raft drying method, a tripod type full floating raft drying method and a flipping full floating raft drying method, and these methods have the following Defects in several aspects: first, the above-mentioned breeding methods all require manual operation, which is labor-intensive and difficult to operate at sea.
The manually operated drying device is only fixed on the buoy in the laver cultivation area. As the laver field floats as a whole, there is no connection and fixed control between itself and the seabed. Therefore, the impact load on the root cable of the laver field is heavy, and the resistance to wind and waves is poor. , the floating raft made by manual operation, when supporting the net curtain, only supports the two end points of the net curtain. The force on the two points of the floating raft is unstable, and it is easy to roll over or tilt under the impact of wind and waves. It ...

Method used

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  • An automatic ebb drying device for laver culture, a culture device and a tidal range automatic ebb drying method
  • An automatic ebb drying device for laver culture, a culture device and a tidal range automatic ebb drying method
  • An automatic ebb drying device for laver culture, a culture device and a tidal range automatic ebb drying method

Examples

Experimental program
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Embodiment 1

[0022] Embodiment 1, with reference to figure 1 and figure 2 , a self-drying device for laver cultivation, comprising a hollow pick rod 6 and a floating rod 8, one end of the hollow pick rod 6 is vertically fixedly connected to the middle part of the float rod 8, and the other end of the hollow pick rod 6 is uniformly arranged along the circumference of the rod body There are several empennages 15 for stabilizing the hollow poles 6, and the hollow poles 6 between the empennage 15 and the floating poles 8 are covered with large floats 7, and oblique stay ropes 12 are arranged between the large floats 7 and the two ends of the floating poles 8. The hollow pick rod 6 is threaded along the axis of the rod body with a dry root cable 10 that cooperates with the large float 7 to stir up the floating rod 8 .

Embodiment 2

[0023] Embodiment 2, in the self-drying device for laver cultivation described in Embodiment 1: the rod body of the hollow pick rod 6 is composed of a plastic inner tube and a composite material outer tube compounded outside the plastic inner tube. A foam layer is arranged between the composite material outer pipes, and pipe plugs 17 with through holes are arranged at both ends of the hollow pole.

Embodiment 3

[0024] Embodiment 3, in the self-drying device for laver cultivation described in Embodiment 1: the hollow pick rod 6 at the outer end of the tail wing 15 is provided with a first fastening clip for clamping the tail of the hollow pick rod 6 and the tail wing 15 The hoop 16 is provided with the second fastening hoop 9 for clamping the floating rod 8 and the head of the hollow rod 6 on the hollow rod 6 on both sides of the floating rod 8 .

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Abstract

The invention provides an automatic ebb drying device for laver culture, a culture device and a method. The automatic ebb drying device for laver culture comprises a hollow lifting rod and a floating rod. One end of the hollow lifting rod is vertically and fixedly connected to the middle portion of the floating rod and the other end of the hollow lifting rod is provided with a plurality of tail wings used for stabilizing the hollow lifting rod in the circumferential direction of the rod body uniformly. The hollow lifting rod is sleeved with a large floater between the tail wings and the floating rod. Stay ropes are arranged between the large floater and the two ends of the floating rod. An ebb drying root cable used for lifting the floating rod together with the large floater penetrates through the inside of the hollow lifting rod along the axis of the rod body. With the automatic ebb drying device, automatic ebb drying and water falling of curtain nets can be realized, the ebb drying workload is reduced and the quality of lavers is improved; the tail wings and the stay ropes can improve the balance of the lifting rod. Contraction and release ropes are arranged, so that the ebb drying can be performed manually; ebb drying root cables and culture net field root cables are arranged, so that the wind and wave resistance of the whole culture device is improved; automatic ebb drying of laver culture net fields is realized by fully utilizing natural tides, so that the culture cost is reduced; mechanical harvesting is realized and the culture device can be used for deep sea culture and open sea culture.

Description

technical field [0001] The invention relates to a laver cultivation technology, in particular to a laver cultivation self-drying device, a cultivation device and a tidal range self-drying method. Background technique [0002] As coastal pollution continues to increase and expand, farming intensity continues to increase, nutrients are increasingly lacking, and laver blights are increasing. Coupled with the need for seaport construction, offshore farming has become increasingly impossible. From semi-floating seaweed cultivation in the intertidal zone, it has developed to pole-inserted laver cultivation; from the initial use of a pole of 7-8 meters, it has grown to 16-17 meters. However, the length and strength of the strut must be limited, which cannot meet the needs of deeper sea areas. [0003] The existing methods of fully floating raft culture laver include a "U" type full floating raft drying method, a tripod type full floating raft drying method and a flipping full floa...

Claims

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Application Information

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IPC IPC(8): A01G33/02
CPCA01G33/00F26B3/28
Inventor 陈百尧张祖禹薛学坤高希星龚占成伏光辉龚琪本唐兴本安健孙苗苗王绪春
Owner LIANYUNGANG HAIZHILIN COMPOUND MATERIALS
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