• 제목/요약/키워드: Squid Jigging Boat

검색결과 8건 처리시간 0.028초

소형 오징어 채낚기 어선의 낚시 깊이별 조획량과 수중 조도 (Relationship between the Catch of Squid, Todarodes pacificus STEENSTRUP, According to the Jigging Depth of Hooks and Underwater Illumination in Squid Jigging Boat)

  • 최석진;황천구행
    • 한국수산과학회지
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    • 제34권6호
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    • pp.624-631
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    • 2001
  • 오징어 채낚기 어선의 집어등을 점등한 상태에서의 오징어 군을 어군 탐지기에 의해 관찰하고, 어선 양현의 조획기에 설치된 낚시의 도달 심도를 달리하여 광원 출력 조건별로 조획 시험을 실시하여 어군의 분포 심도를 추정하는 한편 수심별 수중 조도를 측정함으로써 어군이 밀집하여 분포하고 있는 조획 심도에서의 광 환경에 대해서 검토하였다 집어등 점등시 어군 탐지기에 나타난 어군은 낚시 어구 주위를 중심으로 수심 50m까지의 얕은 곳에서 높은 밀도의 반응을 보였으나, 시간이 경과함에 따라 어군 층은 침하하여 수심 $60\~80m$사이에서 안정되었다. 어선의 각 현별 낚시 최선단의 도달 심도를 변화시킨 경우의 조획량은 심도를 90m로 설정한 현측이 60m로 설정한 현보다 많았으나, 조획이 적어진 해뜰 무렵에 광원 출력을 할로겐등 24kW로 절환하여 조업한 후에는 60m 충에서 조획 증가 경향이 현저하게 나타났다. 어군 탐지기와 조획 시험에서 추정된 오징어의 중요한 조획층으로 사료되는 수심 $60\~80m$에서의 수중 조도는 각 광원 출력별 평균 $3.0\times10^{-2}\sim\;3.4\times10^{-2}lx$의 범위에서 분포하였다.

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일본 소형 오징어 채낚기 어선의 톤수 및 집어등 광원 출력과 어획량과의 관계 (Relationship Between the Boat Sizes, tight Source Output for Fishing Lamps and the Catch of Squid, Todarodes pacificus STEENSTRUP, in Coastal Squid Jigging Fishery of Japan)

  • 최석진
    • 한국수산과학회지
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    • 제35권6호
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    • pp.644-653
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    • 2002
  • 일본 홋카이도 하코다테, 니이가타현 사도 ,이시카와현 노토마치 및 나가사키현쯔시마 지역에서 소형 오징어 채낚기 어선의 톤수와 집어등 광원 출력 및 각 어선의 일별 연간 어획량 자료를 수집하여, 어선의 톤수와 집어등 광원 출력이 단위 노력당 어획량에 미치는 영향에 대해서 검토하였다. 어선이 설비하고 있는 집어등 광원 출력은 어선의 톤수가 증가함에 따라 증가하는 경향을 보였다 어선의 집어등 광원 출력 계급별 어획량 및 어선의 톤수 계급별 어획량은 집어등 광원 출력과 어선의 톤수계급이 증가함에 따라 단위 노력당 어획량도 증가하였으며, 어선의 어획 효율은 11$\~$15톤급 어선이 100-200kw의 집어등 광원 출력 조건을 갖는 경우가 좋은 결과를 나타내었다. 이것은 소형 오징어 채낚기 어선의 경우, 집어등 광원 출력을 200kw, 어선의 톤수를 15톤까지 증가시키는 범위 내에서 어획 효율의 증가를 기대할 수 있다는 것을 의미한다. 이상의 소형 오징어 채낚기 어선의 톤수 $(GT) x_1$와 집어등 광원출력 (kW) x,이 단위 노력당 어획량 (box/machine/day) y에 미치고 있는 관계를 다중 회귀 정규 방정식을 이용하여 표현하면 다음과 같은 관계식으로 정리할 수 있다.

한국 오징어 채낚기의 기존 녹색 낚시와 은백색 낚시의 어획성능 비교 (Comparison of the catch performance between traditional green jig and silver-white jig of squid jigging in Korea)

  • 안영일
    • 수산해양기술연구
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    • 제53권3호
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    • pp.211-218
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    • 2017
  • The catch performance of the silver-white jig for automatic jigging machine, developed to improve the effectiveness of LED fishing lamp in catching squid, was compared to that of the conventional green jig. The vessels used in this investigation were Haesong-ho (A-vessel), a training vessel of Gangwon State University and Haengbok-ho (B-vessel), a commercial fishing boat. In the case of the A-vessel, five to eight automatic jigging machines were used in the fishing operation with a 31.3 kW LED fishing lamp in summer. As for the B-vessel, fourteen automatic jigging machines were used with a 43.2 kW LED fishing lamp in autumn and winter. The results showed that the catch performance of the silver-white jig was similar to that of the green jig in the case of the A-vessel (p>0.05). However, in the case of the B-vessel, the catch performance of the silver-white jig was superior to that of the green jig in both winter (p<0.05) and autumn (P<0.001). Based on the catch performance results regarding the B-vessel in autumn, it is expected that the annual income increase that can be earned by using the silver-white jig will be KRW 26,385,000.

오징어채낚기용 은백색 유인체 개발과 어획성능 (Development of the silver-white decoy for squid automatic jigging machine and fishing performance)

  • 안영일;장웅정
    • 수산해양기술연구
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    • 제49권3호
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    • pp.208-217
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    • 2013
  • Decoys for automatic jigging machines, the body part of a squid hook, have been developed in small and existing sizes in consideration of squid food, color blindness, and retinomotor responses and in utilization of pearl pigment, PP of high transparency, and combined mixture. In comparison of the developed silver-white decoy and existing decoys, the optical characteristics were examined, and the fishing performance of small size silver-white squid hooks was assessed in application of 4 fishing boats with the squid automatic jigging machine and metal halide fishing lamp in July, 2012. The luminances of the three squid hook colors-green, dark green and silver-white-increased as the intensity of illumination increased. Among these, the increase of silver-white was particularly distinguished. As to the average contrast of squid hooks, that of silver-white was 10.33, which was the highest, and then green 1.86 and dark green -0.10 in the order. As to the fishing performance of the silver-white hook, that of the 202 Geumyeong-ho and 101Yongjin-ho which caught squids were similar to that of the existing green hook and was relatively low in the case of the Dongbu-ho. However, that of the Haengbok-ho which caught relatively small squids whose average length was 19.9cm and installed silver-white hook in all automatic jigging machines was significantly excellent. In order to enhance the fishing performance of small size silver-white hooks, therefore, it would be effective to install in every automatic jigging machines of fishing boat and to start fishing before July by which small squids are caught.

채낚기 집어등 어선 주변에 유집된 살오징어, Todarodes pacificus의 분포 패턴 (Distribution patterns of the Japanese common squid, Todarodes pacificus attracted around the luring lamp on the jigging boat)

  • 배재현;이경훈;조현정
    • 수산해양기술연구
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    • 제52권3호
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    • pp.276-280
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    • 2016
  • This study investigated luring distributions by water layer of common squid which were targeted by angling fishing vessels equipped with LED and metal-halide lamps using a scientific echosounder with a 120 kHz frequency in order to develop energy-effective underwater fish aggregation devices. In the analysis, angles of a transducer were changed from $0^{\circ}$ to $45^{\circ}$ and were rotated every $10^{\circ}$ horizontally. It was shown that common squid were densely distributed from the surface to 40 m and they were also distributed in directions of $10^{\circ}{\sim}+30^{\circ}$, $-30^{\circ}{\sim}-60^{\circ}$, and $-120^{\circ}{\sim}-130^{\circ}$with the head of vessel as the center. Comparative results of angles of transducer on acoustical densities of common squid distributing in 21~40 m water depth showed an average $101.8m^2/nm^2$ in vertical direction of $0^{\circ}$, $12.3m^2/nm^2$ in angle of $30^{\circ}$, and $42.4m^2/nm^2$ in angle of $45^{\circ}$, respectively. It implied that more considerations on acoustic scattering strength by incidence angle direction of the transducer and swimming oriental angle direction of common squid would be required.

채낚기 어선용 수랭식 LED 집어시스템의 설계 및 성능평가 (Design and performance estimation of fish-luring system using the water cooling typed LED lamp)

  • 배봉성;안희춘;권기진;박성욱;박창두;이경훈
    • 수산해양기술연구
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    • 제47권2호
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    • pp.79-87
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    • 2011
  • A fishing lamp is fishing gear to gather fish in the night. But the cost of oil which is used to a light fishing lamp, goes significantly up to almost one hundred million won for 50 tonnage vessels and forty million won in case of vessels less than 10 tonnages. This cost has almost taken 30.40% of total fishing costs. As oil price increases, the business condition of the fishery gets worse and worse. Therefore, it is very urgent to develop an economical fishing lamp, to solve the problem of fishery's business difficulty. This research aims at developing a fishing lamp for squid jigging fishery and hairtail angling fishery using the LED, which has excellent efficiency and durability. One fishing lamp has about 160Watt capacity and five fishing lamps are installed one aluminium panel in which sea water flows to emit generated heat from LED to outside. Developed fishing lamp lights to an effective direction of jigging and angling operation. This fishing lamp can be controlled to light the direction of fish shoal because the aluminium panel can be controlled to up and down direction. The wave length of fishing lamp has white and blue color. White color light is to gather fish shoal of horizontal direction and blue color light is to gather fish shoal of vertical direction. After development of this fishing lamp, 60.110 units are established on the boat, and operated fishing. Consequently, in the case of squid jigging, spent energy was reduced to 39%, in the case of hairtail angling, 68% of spent energy was reduced. And the catch was more than another boat.

오징어 채낚기 어선의 추진기 개선을 통한 성능향상 (Improving of propulsion performance of 24 ton class squid jigging vessel)

  • 정성재;안희춘;김인옥;차봉진;구명성;이경훈
    • 수산해양기술연구
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    • 제52권4호
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    • pp.347-355
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    • 2016
  • In this study, a new designed propeller was applied on 24 ton class squid jigging vessel to reduce of fuel consumption. The selected squid jigging boat was under construction at the shipyard to determine the resistance of the hull through the model experiment. The propeller design was carried out by using the experimental data and ITTC procedures. Sea trials were performed by measuring the speed and the horsepower required by the condition of five power levels of engine load, namely 70%, 80%, 90%, MCR and maximum engine power. The speed and delivered horse power were compared between the conventional propeller and the new design propeller. Delivered horse power by installing the new propeller takes 90% engine load at start-up conducted by decreased 9.06%. The measuring speed is increased up to the 0.6 knots in the low-speed range to high range. This study showed that only the design and installation of a new propeller can improve the propulsion efficiency of the boats; furthermore, reduce fuel costs can be achieved at the same time by improving the increased cruising speed.

채낚기 어선용 공랭식 LED 집어시스템의 설계 및 성능평가 (Design and performance evaluation of fish-luring system using the air-cooled LED lamp for jigging and angling boat)

  • 배봉성;박병재;정의철;양용수;박해훈;전영열;장대수
    • 수산해양기술연구
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    • 제45권2호
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    • pp.85-95
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    • 2009
  • The fishing lamp is a fishing gear that gathers fish at night. But the cost of oil, which is used to light fishing lamp, has been risen significantly up to 30-40% of total fishing costs. Therefore it is very urgent to develop an energy economical fishing lamp in order to solve the business difficulties of fisheries. Under this background, this research aims at developing a fishing lamp for squid jigging and hairtail angling fishery using the LED, which has excellent energy efficiency and durability. The LED fishing lamp developed can be controlled to fix a fit direction of fish shoal deep because a fishing lamp can be adjustable up and down directions. One unit of fishing lamp has about an 80Watt capacity and the frame of fishing lamp is made of aluminium to emit generated heat of LED to outside. The LED lamp developed was highly durable, only 5.7% of emitting efficiency decreased for 18 months. The illuminance of a unit LED lamp was 2,070lux at 1m and 21lux at 10 m distance, and the intensity of LED lamp system emitted 2,580lux and 400lux at the respective distances. After development of this fishing lamp, 100 units are installed on operating fishing vessels. Experimental results show that energy consumption of squid jigging and hairtail angling was reduced by 40% and 87%, respectively. In conclusion, our methods showed elevated fishing power, compared with traditional fishing method: 37.7% for squid jigging and 24.5% for hairtail angling.